WO2015115362A1 - Photovoltaic panel installation stand for freight container - Google Patents

Photovoltaic panel installation stand for freight container Download PDF

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Publication number
WO2015115362A1
WO2015115362A1 PCT/JP2015/052015 JP2015052015W WO2015115362A1 WO 2015115362 A1 WO2015115362 A1 WO 2015115362A1 JP 2015052015 W JP2015052015 W JP 2015052015W WO 2015115362 A1 WO2015115362 A1 WO 2015115362A1
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WO
WIPO (PCT)
Prior art keywords
container
panel installation
power generation
cargo
solar power
Prior art date
Application number
PCT/JP2015/052015
Other languages
French (fr)
Japanese (ja)
Inventor
孝昌 武蔵
Original Assignee
菱和テクノサービス株式会社
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 菱和テクノサービス株式会社 filed Critical 菱和テクノサービス株式会社
Publication of WO2015115362A1 publication Critical patent/WO2015115362A1/en

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D90/00Component parts, details or accessories for large containers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D90/00Component parts, details or accessories for large containers
    • B65D90/0026Corner fittings characterised by shape, configuration or number of openings
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24SSOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
    • F24S25/00Arrangement of stationary mountings or supports for solar heat collector modules
    • F24S25/60Fixation means, e.g. fasteners, specially adapted for supporting solar heat collector modules
    • F24S25/63Fixation means, e.g. fasteners, specially adapted for supporting solar heat collector modules for fixing modules or their peripheral frames to supporting elements
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02SGENERATION OF ELECTRIC POWER BY CONVERSION OF INFRARED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, e.g. USING PHOTOVOLTAIC [PV] MODULES
    • H02S20/00Supporting structures for PV modules
    • H02S20/20Supporting structures directly fixed to an immovable object
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02SGENERATION OF ELECTRIC POWER BY CONVERSION OF INFRARED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, e.g. USING PHOTOVOLTAIC [PV] MODULES
    • H02S30/00Structural details of PV modules other than those related to light conversion
    • H02S30/10Frame structures
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02SGENERATION OF ELECTRIC POWER BY CONVERSION OF INFRARED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, e.g. USING PHOTOVOLTAIC [PV] MODULES
    • H02S40/00Components or accessories in combination with PV modules, not provided for in groups H02S10/00 - H02S30/00
    • H02S40/30Electrical components
    • H02S40/36Electrical components characterised by special electrical interconnection means between two or more PV modules, e.g. electrical module-to-module connection
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D90/00Component parts, details or accessories for large containers
    • B65D90/0006Coupling devices between containers, e.g. ISO-containers
    • B65D90/0013Twist lock
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B10/00Integration of renewable energy sources in buildings
    • Y02B10/10Photovoltaic [PV]
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B10/00Integration of renewable energy sources in buildings
    • Y02B10/20Solar thermal
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/40Solar thermal energy, e.g. solar towers
    • Y02E10/47Mountings or tracking
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy

Definitions

  • the present invention relates to a freight container, and more particularly to a solar power panel installation table for a freight container that conforms to ISO (International Organization for Standardization).
  • ISO International Organization for Standardization
  • a freight container that conforms to ISO is a container whose height and width are internationally standardized for transportation efficiency, etc., and is 20 feet long (6,096mm). ) And 40 feet (12,192 mm), which are standardized to 8 feet (2,438 mm) and 8 feet 6 inches (2,591 mm) in height.
  • What is characteristic is that, as shown in FIG. 8, horizontally long (rectangular) openings (corner pockets) for container fixing metal fittings are provided at the four corners of the upper and lower surfaces of the container (top plate and bottom plate).
  • FIG. 8 is a diagram showing an outline of an ISO standard 20-foot container. In FIG.
  • reference numeral 100 is a freight container, 101 is a top plate (roof), and 102 is four corners of the top plate (roof) 101.
  • This is a horizontally long opening (corner pocket).
  • the horizontally long openings (corner pockets) 102 are provided at the four corners of the top plate (roof) 101 of the ISO standard cargo container 100, and when the cargo container 100 is transported, 30 tons using a special cargo handling device called a gantry crane or country crane equipped with a special device called a spreader that can insert a lock pin into the four corner openings (corner pockets) 102 and grasp a container.
  • the possible freight container 100 can be loaded and unloaded quickly and reliably.
  • Japanese Patent Application Laid-Open No. 2006-273413 As a case where a photovoltaic power generation panel is installed in a freight container, for example, one disclosed in Japanese Patent Application Laid-Open No. 2006-273413 is known.
  • the disclosure of Japanese Patent Application Laid-Open No. 2006-273413 relates to the invention name “Transport Container and Cement Raw Fuel Transport Method Using the Same”, “Efficiently removes gas containing odor components etc. accumulated inside the container.
  • a transportation container and a cement raw fuel transportation method that can keep the surrounding environment good without diffusing odor components etc. to the outside (see paragraph number 0007 of the publication).
  • a container body configured to be able to load a load therein, an intake pipe having an intake port at a gas retention position generated from the load inside the container body, and the gas sucked from the intake pipe
  • a discharge pipe for discharging to the outside of the container through a discharge port; and disposed between the intake pipe and the discharge pipe disposed inside the container body and from the intake port
  • An exhaust fan that causes the flow of the gas toward the outlet, an adsorption device that is arranged inside the container body and adsorbs the sucked gas, and a battery that is arranged inside the container body and drives the exhaust fan;
  • a solar power generation device installed on the outer wall surface of the container main body for charging the battery (by claim 3).
  • the underline is attached to the applicant of the present application), “It is possible to forcibly exhaust to the outside by an exhaust fan while adsorbing the gas accumulated in the container, The working environment can be improved, and in the state where gas has accumulated inside the container and the pressure inside the container has risen, due to sudden circumstances such as vibration It is possible to prevent a large amount of collected gas from being exhausted to the outside and prevent the environment of the station, cargo terminal, etc. from deteriorating, and since the exhaust fan, adsorption device and battery are arranged inside the container body, However, the battery inside the container can be appropriately charged by an external power source, etc. Therefore, it is possible to transport the highway by truck for trucks, ships, railways, etc. It is possible to promote a modal shift to switch to transportation that combines the above and the like. ”(See paragraph number 0011 of the publication).
  • the container disclosed in Japanese Patent Application Laid-Open No. 2006-273413 is to install a solar power generation device on the outer wall surface of the container itself, which may be convenient for all cargo containers. It is not essential for the whole.
  • the invention of the present application has devised a solar power generation panel installation stand for a cargo container that can be installed or removed on the top (roof) of the cargo container, not just having a solar power generation device on the outer wall surface of the cargo container.
  • a freight container is for loading freight transported into a container and transporting it to a destination. Loading and unloading operations including so-called loading and unloading operations are essential. However, such cargo handling is not carried out without delay, and as a matter of fact, when cargo is loaded into a container, the cargo container loaded with the cargo is used as a container ship or wagon.
  • the invention of the present application installs and removes cargo containers to be kept in a container yard or the like on a top plate of a container that is exposed to sunlight during the kept period. It is intended to provide a solar power panel installation stand for cargo containers that can be used.
  • the applicant of the present application has already described “Solar power generation installation stand (Utility Model Registration No. 3186568)” and “Solar power generation calculation device for small-scale power generation of solar power generation panel (special Application No. 2012-164106) ”is proposed, and the present invention is installed on the roof of a freight container that is stopped for a certain period of time on land of a predetermined area or a freight container that is exposed to sunlight during the transportation period.
  • a solar power generation panel that can be freely detached is installed, and is intended to be applied to the small-lot power sales.
  • the invention according to claim 1 of the present application is directed to a solar power generation panel installation base for a cargo container, wherein the horizontal opening corresponding to the horizontal opening provided at the four corners of the top plate of the ISO standard cargo container It is provided at the four corners of the plate.
  • the invention according to claim 2 of the present application is the freight container photovoltaic panel installation table according to claim 1, wherein the cargo container photovoltaic panel installation table has ISO standard cargo containers at the four corners of the top plate. This is characterized in that the same horizontally long openings as the horizontally long openings provided at the four corners of the top plate are provided.
  • the invention according to claim 3 of the present application is the freight container photovoltaic panel installation base according to claim 1 or 2, wherein the horizontally long openings provided at the four corners of the bottom base plate are interposed by twist lock fixtures. It is fixed.
  • the invention which concerns on this-application Claim 4 is a solar power generation panel installation stand for freight containers concerning the said claim 1 or 2, The said solar power generation panel installation stand for freight containers is for the small-lot sale of generated electric power. It is characterized by having a power conditioner.
  • the invention according to claim 5 of the present application is the freight container solar power generation panel according to any one of claims 1 to 4, wherein the freight container solar power generation panel installation base is a freight container top plate.
  • the invention according to claim 6 of the present application is the freight container photovoltaic panel installation table according to claim 5, wherein the cargo container photovoltaic panel installation table is covered with a cover member that inclines the periphery. It is characterized by being.
  • a solar power generation panel installation base that can be installed and removed freely on a roof of a cargo container that is stopped for a certain period of time under sunlight on a land of a predetermined size or a container ship, It is possible to provide a solar power generation panel installation table that can be freely installed and removed from the roof. This installation table enables solar power generation using containers that are left for a predetermined period of time, and the efficiency of the generated power. Power sales.
  • FIG. 1 is a schematic view of Example 1 of a freight container photovoltaic panel installation base, which is an embodiment for implementing a freight container photovoltaic panel installation base according to the present invention.
  • FIG. 2 is a diagram showing an overall schematic configuration of the freight container photovoltaic panel installation base 1 according to the first embodiment shown in FIG.
  • FIG. 3 is a diagram illustrating a part of an outline of the internal framework structure of the freight container photovoltaic panel installation base 1 according to the first embodiment.
  • FIG. 4 is a view showing an outline of a TAIYO fixing bracket (twist lock: N-1L-50).
  • FIG. 1 is a schematic view of Example 1 of a freight container photovoltaic panel installation base, which is an embodiment for implementing a freight container photovoltaic panel installation base according to the present invention.
  • FIG. 2 is a diagram showing an overall schematic configuration of the freight container photovoltaic panel installation base 1 according to the first embodiment shown in FIG.
  • FIG. 3 is a diagram illustrating a part
  • FIG. 5 is a diagram schematically illustrating the engagement state of the four corners of the ISO standard freight container with respect to the freight container photovoltaic panel installation base 1 according to the first embodiment.
  • FIG. 6 is a diagram illustrating an outline of a state in which the photovoltaic power generation panel installation table 1 for the cargo container according to the first embodiment is installed on the roof of the cargo container and the photovoltaic power generation is performed.
  • FIG. 7 is a diagram illustrating an outline of a photovoltaic power generation panel installation base 40 for a cargo container according to the second embodiment.
  • FIG. 8 is a diagram showing an outline of an ISO standard 20-foot container.
  • FIG. 9 is an exploded perspective view showing an outline of a freight container photovoltaic panel installation base according to Embodiment 3 of the present invention.
  • FIG. 10 is a rear end cross-sectional view including the rear inclined cover of the cargo photovoltaic power generation panel installation base according to the third embodiment of the present invention.
  • FIG. 11 is a front end sectional view
  • FIG. 1 is a schematic view of Example 1 of a freight container photovoltaic panel installation base, which is an embodiment for implementing a freight container photovoltaic panel installation base according to the present invention.
  • 1 is a solar power generation panel installation base for cargo containers according to the first embodiment
  • 2 is a base plate, 3, 3, 3,... Are solar power generation panels
  • 4 is a cover, 5, 5,... Are intermediate covers, and 15, 15, 15, and 15 are hanging holes.
  • FIG. 2 is a diagram illustrating an overall schematic configuration of the freight container photovoltaic panel installation base 1 according to the first embodiment illustrated in FIG. 1, and FIG. 3 illustrates the freight container solar power according to the first embodiment. It is a figure which shows a part of outline of the internal framework structure of the photovoltaic power generation panel installation stand 1, and the said cover 4 is abbreviate
  • reference numerals 1, 2, 3, 4, and 5 denote the freight container photovoltaic panel installation base 1, the base plate 2, the photovoltaic panels 3, 3, 3,. .., cover 4, cover 5, 5, 5..., Suspension holes 15, 15, 15, 15. (Corner pockets), 7 and 7 are channel mounts, 8, 8, 8...
  • the freight container photovoltaic panel installation base 1 is, for example, 20 feet long (6096 mm ⁇ 8 feet wide (2438 mm) conforming to the ISO standard shown in FIG. 8. It is assumed that seven photovoltaic power generation panels 3, 3,... With a size of 1,657 mm ⁇ 858 mm are used for a cargo container having a size of).
  • the container-installed photovoltaic power generation panel installation stand 1 for example, a 20-foot-long (6096 mm ⁇ 8-foot-wide (2438 mm) long cargo container with a size of 20-foot-long (6096 mm ⁇ 8-foot-wide (2438 mm)).
  • the base plate 2 is used.
  • the support metal fittings 16, 16, 16, 16 are arranged on the base plate 2 at a predetermined position with an adhesive or the like, and the channel mounts 7, 7 having a predetermined length are fixed on the base plate 2 at predetermined width intervals.
  • the eight solar panels 3, 3,... Corresponding to the size of the freight container solar panel installation base 1 according to the first embodiment are disposed.
  • Horizontal support fittings 8, 8, 8... Are fixedly arranged at right angles, and as shown in FIG. 3, the fixture 9 having an inverted L-shaped cross section is placed at an appropriate position on the channel mounts 7, 7.
  • the fixture 9 is arranged at a predetermined position according to the width dimension.
  • the channel mount 7 is placed on the support bracket 16 disposed at a predetermined interval on the base plate 2, and a plurality of the lateral support brackets 8 are disposed thereon.
  • the photovoltaic power generation panels 3 and 3 are arranged.
  • one side bottom portion of the lateral support fitting 8 is engaged with the inverted L-shaped gap of the fixture 9, and then the opposite direction of the lateral support fixture 8 is reversed by the sliding fixture 10.
  • the bottom of one side is sandwiched and fixed to the lateral support fitting 8.
  • the side protruding portions 11 of the photovoltaic power generation panel 3 are inserted and a predetermined number (seven) of photovoltaic power generation panels 3, 3,.
  • the cover 5 is disposed between the photovoltaic power generation panels 3 and 3, and is fixed with the bolt material 13 between the support bracket 12 inserted between the lateral support brackets 8.
  • the ISO standard freight container shown in FIG. 8 is provided with horizontally long openings (corner pockets) for container fixing metal fittings at the four corners of the upper and lower surfaces of the container.
  • this is called a gantry crane or country crane equipped with a special device called a spreader that can hold and hold a lock pin (not shown) in these four corner openings (corner pockets).
  • a gantry crane or country crane equipped with a special device called a spreader that can hold and hold a lock pin (not shown) in these four corner openings (corner pockets). It is possible to load and unload freight containers quickly and reliably using special handling equipment that is used, and with an opening (corner pocket) that fixes several containers stacked in the height direction or arranged side by side
  • a fixing metal fitting tilt lock
  • FIG. 4 is a diagram showing an outline of a TAIYO fixing bracket (twist lock: N-1L-50).
  • 20 is a fixture (twist lock)
  • 21 is the horizontally long opening (corner).
  • 22 is the lower pin having a square shape in plan view corresponding to the horizontally long opening (corner pocket)
  • 23 is a handle
  • 24 is a base material.
  • the pin 21 and the lower pin 22 penetrate through the horizontally long openings (corner pockets) opened at the four corners of the bottom plate of the upper cargo container and the top plate of the lower container, and the upper and lower surfaces of the base material 24 are upper and lower containers. It abuts on the bottom plate and the top plate.
  • the rectangular shape is formed in the horizontally long openings (corner pockets) at the four corners of the lower cargo container while the handle 23 is unlocked.
  • the lower pin 22 is inserted to place the fixing device (twist lock) 20 at the four corners of the cargo container.
  • the fixing device is inserted into the horizontally long opening (corner pocket) of the bottom plate of the cargo container stacked on the upper stage.
  • the upper pin 21 having a square shape in a plan view of 20 is inserted, and the handle 23 is moved to the locked state.
  • the upper pin 21 and the lower pin 22 are rotated with the rotation of the handle 23, the upper pin 21 and the lower pin 22 are rotated at a right angle, and cannot be removed from the horizontally long opening (corner pocket).
  • the upper and lower cargo containers are secured without falling out or sliding down.
  • the solar power generation panel installation stand 1 for cargo containers according to the first embodiment has horizontal openings (corner pockets) having the same size and shape as the four horizontal openings (corner pockets) at the four corners of the top plate of the ISO standard cargo container.
  • the opening (corner pocket) 6 can be used to easily install the solar power generation panel installation table 1 for the cargo container according to the first embodiment on the roof of the cargo container.
  • FIG. 5 is a diagram showing an outline of the engagement state of the four corners of the ISO standard freight container with the freight container photovoltaic panel installation stand 1 according to the first embodiment, and a left-side fixture (twist lock) 20 is shown in FIG.
  • the fixing tool (twist lock) 20 on the upper right side shows the fixed state in which it is mounted.
  • solar power generation panel installation stand 1 for cargo containers According to the solar power generation panel installation stand 1 for cargo containers according to the first embodiment, solar power generation can be easily performed by using the roof space of the cargo container that is retained for a predetermined period such as a container yard during container handling. And can be easily installed and removed according to the cargo handling operation.
  • FIG. 6 is a diagram showing an outline of a state in which the solar power generation panel installation table 1 for the cargo container according to the first embodiment is installed on the roof of the cargo container, and the solar power generation is performed.
  • reference numeral 1 denotes a freight container solar power generation panel installation table according to the first embodiment
  • 30 is a vending machine
  • 31 is a power lead-in line
  • 32 is a solar power generation power lead-in line
  • 33 is
  • surplus power is sold from a nearby power pole 33 through a conventional lead-in line 31.
  • the freight container photovoltaic panel installation base 1 according to the first embodiment is provided with a power conditioner that can cope with small sale.
  • the suspension holes 15, 15, 15, 15, having a predetermined shape are formed at predetermined positions of the cover 4. 15 is provided, and a rope or a wire or the like is hung from the suspension holes 15, 15, 15, 15 to the channel mounts 7, 7, and the installation table 1 is suspended by a crane or the like.
  • a crane or the like such operations as hanging or hanging such a rope or wire through an opening are inconvenient because an operator has to work up to a considerable height and requires a work process.
  • FIG. 7 is a diagram illustrating an outline of a solar power generation panel installation table 40 for a cargo container according to the second embodiment.
  • the solar power generation panel installation base 40 for a cargo container according to the second embodiment has a length and a width. The height is the same as that of the freight container photovoltaic panel installation base 1 according to the first embodiment.
  • the solar power generation panel installation base 40 for the cargo container according to the second embodiment is not provided with the cover 4 inclined to the periphery, and the upper surface thereof is structurally made of a strong material similar to that of the cargo container, It is flat like a top plate of a normal cargo container, and is further provided with a horizontally long opening (corner pocket) for spreaders at four corners.
  • the suspending lock pin (not shown) of the spreader is attached to the opening (not shown) by a gantry crane or a country crane equipped with a spreader.
  • the cargo container solar power generation panel installation table 40 according to the second embodiment is suspended from the corner pocket).
  • the semi-automatic fixing for manually rotating the handle 23 shown in FIG. Although the example of the tool (twist lock) 20 has been described, a fully automatic fixing tool that can be rotated by its own weight such as a container may be used.
  • the freight container solar power panel installation stand 1 according to the first embodiment and the freight container solar power panel installation base 40 according to the second embodiment are also installed on a container roof of ISO 20 foot (6,096 mm) standard. However, this may be installed in a container of 40 feet (12,192mm) standard, and it does not necessarily use the entire container ceiling, but it is half a half size. Etc., not limited to size. If it installs in the ceiling part of a cargo container, it will not be limited to the difference in a size or a structure.
  • a photovoltaic power generation panel installation stand for a cargo container has a structure in which the surface of the photovoltaic power generation panel is inclined in a predetermined direction, wind blows from a side located at a high position, and the wind blows from there. There is a risk that the power generation panel is turned up, and there is a problem that rust or the like is generated in the part or other part due to blowing wind and rain from the part or other part.
  • the solar power generation panel installation table for cargo containers has a structure in which the surface of the solar power generation panel is inclined in a predetermined direction, and the entire circumference around the solar power generation panel installation table for cargo containers.
  • the structure is covered with a sheet metal that avoids the blowing of wind and rain having an angle at which rainwater or the like flows down.
  • FIG. 9 is an exploded perspective view showing an outline of a freight container photovoltaic panel installation base according to Embodiment 3 of the present invention.
  • reference numerals 3, 3, 3, 3, 3, 3 are solar power generation panels used conventionally, and 100 is the above-mentioned ISO standard freight container.
  • 100 is the above-mentioned ISO standard freight container.
  • Reference numeral 101 denotes a top plate (roof) of the cargo container 100
  • 102 denotes container suspension / fixing openings (corner pockets) provided at four corners of the top plate 101.
  • Reference numeral 20 denotes a fixture (twist lock) for fixing the upper and lower cargo containers 100 when the cargo containers 100 are stacked, which is the same as already described.
  • Reference numeral 50 denotes a freight container solar power generation panel installation base according to the third embodiment
  • 52 denotes a base plate having the same size as the top board (roof) 101 of the ISO standard freight container 100
  • 53, 53, 53 and 53 are opened at the four corners of the base plate 52 and provided at the same positions as the container suspension openings (corner pockets) provided at the four corner positions of the top plate (roof) 101 of the ISO standard cargo container 100. It is an opening (corner pocket) for a fixture.
  • Reference numerals 54, 54, 54, 54 are channel bases fixedly arranged on the base plate 52, 55, 55, 55, 55 are rear end pillars, 56, 56, 56, 56 are front end edges.
  • Columns 57a and 57b are rear transverse members made of steel square pipe
  • 58 is the front transverse member
  • 59, 59, 59 and 59 are inclined support fittings
  • 60 is an intermediate sealing member
  • 61 and 61 Is a side sealant
  • 62 and 62 are panel pressing members
  • 63a is a front inclined cover
  • 63b is a rear inclined cover
  • 64 and 64 are side covers
  • 65, 65 are openings opened at the ends of the inclined covers 63a and 63b and open at positions corresponding to the positions of the fixture openings 53, 53, 53 and 53.
  • 66, 66,... Are openings opened at the ends of the side covers 64, 64 and opened to positions corresponding to the positions of the fixture openings 53, 53, 53, 53.
  • the freight container photovoltaic panel installation base 50 according to the third embodiment is similar to the freight container photovoltaic panel installation base according to the first and second embodiments described above. It is assumed that lock pins (not shown) are inserted into the openings (corner pockets) 53, 53, 53, 53 that open at the four corners of the top plate 101 of the container 100, and are fixed and lifted.
  • the solar battery panels 3, 3, 3, 3, 3, and 3 assumed to be used in the freight container photovoltaic power generation panel installation base 50 according to the third embodiment are UL-300P-72 solar power manufactured by Ulicalicsolar. Assume the use of battery modules. This is because the UL-300P-72 solar cell module manufactured by the same company has an outer dimension of 1953 ⁇ 997 mm, and the solar cell is mounted on the top plate (6096 ⁇ 2438 mm) of the ISO 20-foot container. This is because when six modules are used, a margin of about 100 mm is generated around the module, and the module openings 53, 53, 53, and 53 can be left without being provided.
  • FIG. 10 is a rear end sectional view including the rear inclined cover 63b of the cargo photovoltaic power generation panel installation base 50 according to the third embodiment
  • FIG. 11 is a front end sectional view of the same.
  • the new reference numeral 67 is a rear backup material
  • 68 is a rear T-shaped backup material
  • 69 is a rear support bracket
  • 70 is a rear sealing material
  • 71 is a front T-shaped backup material
  • 72 is a front support fitting
  • 73 is a front sealing material
  • 74 is a front backup material
  • other members such as the solar cell panel 3 are denoted by the same reference numerals used in FIG.
  • the solar cell panel 3 constituting the solar cell module is composed of the rear support bracket 69 and the front portion. It is sandwiched between the support fittings 72 and installed. At the time of installation, each of the upper surfaces is sealed with the rear sealing material 70, the front sealing material 73, and the like, so that rainwater does not enter. Therefore, it is possible to prevent rust and the like from being generated in the structure of the installation table 50 due to the intrusion of rainwater.
  • the side covers 64, 64, the front inclined cover 63a, and the rear inclined cover 63b cover the upper end of the cargo container 100 from the solar panels 3, 3,... With a predetermined inclination angle. Because of the structure, the solar cell panels 3, 3,... In the solar power generation panel installation table 50 for cargo containers according to the third embodiment having an inclined surface, even if a strong wind blows, the solar cell panel 3 No wind blows into the lower part of 3... And there is no danger that the solar cell panels 3, 3.
  • the rear backup material 67, the rear T-shaped backup material 68, the front T-shaped backup material 71, and the front backup material 74 are arranged such that the rear inclined cover 63b and the front inclined cover 63a are connected to the rear portion. It is a member that is fixed to the transverse members 57a, 57b and the inclined support fittings 59, 59, 59, 59.
  • the openings 65, 65,... are always open openings 65, 65,... In the freight container photovoltaic panel installation base 50 according to the third embodiment.
  • a sliding opening (not shown) that opens and closes along the covers 63a and 63b is opened. When the solar power generation panel installation base 50 for the cargo container is installed or removed, the sliding opening is used. It is good also as a structure which closes a slide so that may not enter.
  • the freight container photovoltaic panel installation base 50 is arranged such that one end of the long side of the installation base is arranged upward from the other end. Since the solar cell module 3 installed on the solar cell module 3 is inclined and installed, the solar cell module 3 can be installed so as to enable efficient solar power generation according to the direction of the sun.
  • the solar power generation panel installation stand 50 for cargo containers according to the third embodiment is similar to that described in the first and second embodiments, such as waiting for a ship in a container yard or the like, waiting for a freight car or waiting for a customs inspection. Even for a short time, it can be easily installed on the top top plate 101 of the cargo container 100, and can be installed easily with a gantry crane or country crane equipped with a spreader for loading and unloading the cargo container 100. -It can be removed, and these waiting times can be used effectively. And when installing these, by operating a gantry crane or a country crane equipped with a spreader for loading and unloading the object container 100, the worker can automatically install it without climbing on the cargo container 100. Therefore, labor saving is possible, and the work efficiency is remarkably improved.
  • the top plate (roof) and the base plate are respectively provided at the four corners.
  • Interstitial space member shown in the figure
  • the outer By interposing the outer, even when the freight container photovoltaic panel installation base 50 according to the third embodiment is not used, it can be stacked without requiring a large storage space.
  • the present invention is used as a solar power generation panel installation table for a cargo container that can be installed and removed freely on the top plate of an ISO standard cargo container.
  • Support bracket 20 Fixing tool (twist lock) DESCRIPTION OF SYMBOLS 21 Upper pin 22 Lower pin 23 Handle 24 Base material 30 Vending machine 31 Electric power draw-in line 32 Photovoltaic power draw-in line 33 Utility pole 40 Cargo container solar power generation panel installation stand which concerns on Example 2 50 Cargo which concerns on Example 3 Solar power generation panel installation base for containers 52 Base plate 53, 53, 53, 53 Opening for fixture (corner pocket) 54, 54, 54, 54 Channel mount 55, 55, 55, 55 Rear end column 56, 56, 56, 56 Front end column 57a, 57b Rear cross member 58 Front cross member 59, 59, 59, 59 Inclined support bracket 60 Intermediate sealing material 61, 61 Side sealing material 62, 62 Panel presser 63a Front inclined cover 63b Rear inclined cover 64, 64 Side cover 65, 65, ...
  • Rear backup material 68
  • Rear T-shaped backup material 69
  • Rear support bracket 70
  • Rear sealing material 71
  • Front T-shaped backup material 72
  • Front support bracket 73
  • Front sealing material 74
  • Front backup material 100
  • Cargo container 101
  • Top plate (roof) 102

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  • Photovoltaic Devices (AREA)

Abstract

A purpose of the present invention is to provide a photovoltaic panel installation stand for a freight container that can be removably installed on a roof plate of a freight container stored for a fixed time period in a container yard or the like. In this photovoltaic panel installation stand for a freight container, the four corners of a floor base plate (2) are provided with oblong openings (6) corresponding to oblong openings (102) provided to the four corners of a roof plate of an ISO standard freight container (100).

Description

貨物コンテナ用太陽光発電パネル設置台Solar power panel installation stand for cargo containers
 本発明は、貨物コンテナ、特に、ISO(国際標準化機構:International Organization for Standardization)に適合する貨物コンテナ用太陽光発電パネル設置台に関する。 The present invention relates to a freight container, and more particularly to a solar power panel installation table for a freight container that conforms to ISO (International Organization for Standardization).
 ISO(国際標準化機構:International Organization for Standardization)に適合する貨物コンテナとは、輸送効率等のため、その縦横高さの寸法が国際的に規格化されたコンテナをいい、長さ20フィート (6,096mm)、40フィート (12,192mm) の2種類で、幅は8フィート (2,438mm)、高さは8フィート6インチ (2,591mm)に規格化されたものが普及している。そして、特徴的なのは、コンテナ上下面(天板及び底板)の四隅には図8に示すように、コンテナ固定金具用の横長(長方形状)の開口(コーナーポケット)が施されている。図8は、ISO規格の20フィートコンテナの概略を示す図であり、図8において、符号100は、貨物コンテナ、101は、天板(屋根)、102は、前記天板(屋根)101の四隅に設けられる横長の開口(コーナーポケット)である。図8に示されるように、ISO規格の貨物コンテナ100の前記天板(屋根)101の四隅には、横長の前記開口(コーナーポケット)102が設けられれ、当該貨物コンテナ100を輸送する場合に、上記四隅の開口(コーナーポケット)102にロックピンを挿入してコンテナを掴むことができるスプレッダという専用の装置を備えたガントリークレーンやカントリークレーンと称される特殊な荷役装置を用いて30トンにもなりうる貨物コンテナ100を迅速・確実に積み込み・積み降ろしを可能とするものである。 A freight container that conforms to ISO (International Organization for Standardization) is a container whose height and width are internationally standardized for transportation efficiency, etc., and is 20 feet long (6,096mm). ) And 40 feet (12,192 mm), which are standardized to 8 feet (2,438 mm) and 8 feet 6 inches (2,591 mm) in height. What is characteristic is that, as shown in FIG. 8, horizontally long (rectangular) openings (corner pockets) for container fixing metal fittings are provided at the four corners of the upper and lower surfaces of the container (top plate and bottom plate). FIG. 8 is a diagram showing an outline of an ISO standard 20-foot container. In FIG. 8, reference numeral 100 is a freight container, 101 is a top plate (roof), and 102 is four corners of the top plate (roof) 101. This is a horizontally long opening (corner pocket). As shown in FIG. 8, the horizontally long openings (corner pockets) 102 are provided at the four corners of the top plate (roof) 101 of the ISO standard cargo container 100, and when the cargo container 100 is transported, 30 tons using a special cargo handling device called a gantry crane or country crane equipped with a special device called a spreader that can insert a lock pin into the four corner openings (corner pockets) 102 and grasp a container. The possible freight container 100 can be loaded and unloaded quickly and reliably.
 また、貨物コンテナに太陽光発電パネルが設置されたものとしては、例えば、特開2006-273413号公報に開示のものが知られている。特開2006-273413号公報の開示は、発明名称「輸送用コンテナ、及びこれを用いたセメント原燃料輸送方法」に係り、「コンテナ内部に溜まった臭気成分等を含むガスを効率的に除去し、しかも臭気成分等を外部に拡散させずに周囲の環境を良好に保つことができる輸送用コンテナ及びセメント原燃料輸送方法を提供する」ことの目的において(同公報明細書段落番号0007参照)、「内部に積載物を積載可能に構成されたコンテナ本体と、前記コンテナ本体の内部において前記積載物から生じる気体の滞留箇所に吸気口を有する吸気管と、前記吸気管から吸気された前記気体を排出口を介して前記コンテナの外部に排出する排出管と、前記コンテナ本体内部に配置され前記吸気管と前記排出管の間に配置され前記吸気口から前記排出口に向かう前記気体の流動を生じさせる排気ファンと、前記コンテナ本体内部に配置され吸気された前記気体を吸着する吸着装置と、前記コンテナ本体内部に配置され前記排気ファンを駆動するためのバッテリと、前記バッテリを充電するため前記コンテナ本体の外壁面に設置された太陽光発電装置とを備えたことを特徴とする輸送用コンテナ(請求項3)」とする構成により(同公報特許請求の範囲の記載参照:下線は本願出願人において付した)、「コンテナ内部に溜まった気体を吸着しながら排気ファンにより外部へ強制的に排気することができ、積載物積み降ろし作業時の処理場等の作業環境を良好にすることが出来ると共に、コンテナ内部に気体が溜まってコンテナ内部の圧力が上昇した状態において、振動等の突発的な事情により溜まった大量のガスが外部に排気され、駅や貨物ターミナル等の環境が悪化することを防止することができる。また、排気ファン、吸着装置及びバッテリがコンテナ本体内部に配置されるため、輸送手段に拘わらず、気体の排出を行うことが可能になる。加えて、コンテナ内部のバッテリは、外部電源等により適宜充電することができる。このため、トラックによる幹線道路輸送を、トラック、船舶、鉄道等を組み合わせた輸送に切り替えるモーダルシフトを促進することができる。」等の効果を奏するものである(同公報明細書段落番号0011参照)。 Further, as a case where a photovoltaic power generation panel is installed in a freight container, for example, one disclosed in Japanese Patent Application Laid-Open No. 2006-273413 is known. The disclosure of Japanese Patent Application Laid-Open No. 2006-273413 relates to the invention name “Transport Container and Cement Raw Fuel Transport Method Using the Same”, “Efficiently removes gas containing odor components etc. accumulated inside the container. In addition, for the purpose of providing a transportation container and a cement raw fuel transportation method that can keep the surrounding environment good without diffusing odor components etc. to the outside (see paragraph number 0007 of the publication). “A container body configured to be able to load a load therein, an intake pipe having an intake port at a gas retention position generated from the load inside the container body, and the gas sucked from the intake pipe A discharge pipe for discharging to the outside of the container through a discharge port; and disposed between the intake pipe and the discharge pipe disposed inside the container body and from the intake port An exhaust fan that causes the flow of the gas toward the outlet, an adsorption device that is arranged inside the container body and adsorbs the sucked gas, and a battery that is arranged inside the container body and drives the exhaust fan; And a solar power generation device installed on the outer wall surface of the container main body for charging the battery (by claim 3). The underline is attached to the applicant of the present application), “It is possible to forcibly exhaust to the outside by an exhaust fan while adsorbing the gas accumulated in the container, The working environment can be improved, and in the state where gas has accumulated inside the container and the pressure inside the container has risen, due to sudden circumstances such as vibration It is possible to prevent a large amount of collected gas from being exhausted to the outside and prevent the environment of the station, cargo terminal, etc. from deteriorating, and since the exhaust fan, adsorption device and battery are arranged inside the container body, However, the battery inside the container can be appropriately charged by an external power source, etc. Therefore, it is possible to transport the highway by truck for trucks, ships, railways, etc. It is possible to promote a modal shift to switch to transportation that combines the above and the like. ”(See paragraph number 0011 of the publication).
 しかしながら、特開2006-273413号公報に開示のコンテナは、コンテナそれ自体の外壁面に太陽光発電装置を設置するというものであり、それはそれで便宜なものであるかも知れないが、全ての貨物コンテナ全般に必須なものではない。 However, the container disclosed in Japanese Patent Application Laid-Open No. 2006-273413 is to install a solar power generation device on the outer wall surface of the container itself, which may be convenient for all cargo containers. It is not essential for the whole.
 本願発明は、単に、貨物コンテナ外壁面に太陽光発電装置を具備するだけに止まらず、貨物コンテナの天板(屋根)に設置又は取り外し自由な貨物コンテナ用太陽光発電パネル設置台を案出したことにある。すなわち、貨物コンテナは、コンテナ内に輸送する貨物を積載して目的地まで運ぶためのものであるが、貨物コンテナを利用する貨物の輸送には、貨物コンテナ内に輸送貨物を積み込み、目的地で積み下ろす、いわゆる積み込み、積み降ろし作業を含む荷役作業が必須である。しかしながら、このような積載貨物の荷役については、荷役作業が滞りなく行われることはなく、実際問題として、コンテナ内に貨物を積み込む際に、また、貨物が積み込まれた貨物コンテナをコンテナ船や貨車、貨物自動車等に積み込み又は積み降ろしの際等の、いわゆる船待ち、貨車待ちの際には、一定の時間を要するし、また、輸出入に関する通関等の手続などの場合にも一定の時間を要することは避けられない。このような一定の期間、貨物コンテナはコンテナヤードと称される所定の集積地に積み置かれることが多い。 The invention of the present application has devised a solar power generation panel installation stand for a cargo container that can be installed or removed on the top (roof) of the cargo container, not just having a solar power generation device on the outer wall surface of the cargo container. There is. In other words, a freight container is for loading freight transported into a container and transporting it to a destination. Loading and unloading operations including so-called loading and unloading operations are essential. However, such cargo handling is not carried out without delay, and as a matter of fact, when cargo is loaded into a container, the cargo container loaded with the cargo is used as a container ship or wagon. It takes a certain amount of time to wait for so-called ships and freight cars, such as when loading or unloading cargo trucks, etc., and also for certain procedures such as customs clearance related to import / export. It is unavoidable. During such a certain period, cargo containers are often stacked in a predetermined accumulation place called a container yard.
特開2006-273413号公報JP 2006-273413 A
 本願発明は、このような貨物コンテナの取扱事情に鑑み、これら一定期間コンテナヤード等に留め置かれる貨物コンテナについて、その留め置かれる期間中の太陽光に晒されるコンテナの天板上に設置及び取り外しが可能な貨物コンテナ用太陽光発電パネル設置台を提供せんとするものである。
 また、本願出願人は、既に、ビル屋上に設置する太陽光発電パネルについて、「太陽光発電設置台(実用新案登録第3186568号)」及び「太陽光発電パネルの小口売電額算定装置(特願2012-164106号)」を提案しており、本願発明は、このような所定の広さの土地に一定期間止め置かれる貨物コンテナや輸送期間中の太陽光に晒される貨物コンテナの屋根に設置及び取り外しが自由な太陽光発電パネルを設置し、上記小口売電にも応用しようとするものである。
In view of the handling circumstances of such cargo containers, the invention of the present application installs and removes cargo containers to be kept in a container yard or the like on a top plate of a container that is exposed to sunlight during the kept period. It is intended to provide a solar power panel installation stand for cargo containers that can be used.
In addition, the applicant of the present application has already described “Solar power generation installation stand (Utility Model Registration No. 3186568)” and “Solar power generation calculation device for small-scale power generation of solar power generation panel (special Application No. 2012-164106) ”is proposed, and the present invention is installed on the roof of a freight container that is stopped for a certain period of time on land of a predetermined area or a freight container that is exposed to sunlight during the transportation period. In addition, a solar power generation panel that can be freely detached is installed, and is intended to be applied to the small-lot power sales.
 上記課題解決のため、本願請求項1に係る発明は、貨物コンテナ用太陽光発電パネル設置台において、ISO規格の貨物コンテナの天板の四隅に設けられる横長の開口に対応する横長開口を底部ベース板四隅に設けたことを特徴とする。
 また、本願請求項2に係る発明は、前記請求項1に係る貨物コンテナ用太陽光発電パネル設置台において、前記貨物コンテナ用太陽光発電パネル設置台は、その天板四隅にISO規格の貨物コンテナの天板の四隅に設けられる横長の開口と同じ横長開口を設けたことを特徴とする。
 さらに、本願請求項3に係る発明は、前記請求項1又は2に係る貨物コンテナ用太陽光発電パネル設置台において、前記底部ベース板四隅に設けられる横長開口は、ツイストロック固定具が介在して固定されることを特徴とする。
 そして、本願請求項4に係る発明は、前記請求項1又は2に係る貨物コンテナ用太陽光発電パネル設置台において、前記貨物コンテナ用太陽光発電パネル設置台は、発電電力の小口売電のためのパワーコンディショナーを備えたことを特徴とする。
 また、本願請求項5に係る発明は、前記請求項1ないし請求項4のいずれかに係る貨物コンテナ用太陽光発電パネルにおいて、前記貨物コンテナ用太陽光発電パネル設置台は、貨物コンテナ天板の長辺の一端が他端より高く形成され、その間に設置される太陽光発電パネル表面が傾斜して形成されることを特徴とする。
 そして、本願請求項6に係る発明は、前記請求項5に係る貨物コンテナ用太陽光発電パネル設置台において、前記貨物コンテナ用太陽光発電パネル設置台は、周囲を傾斜するカバー部材で覆われていることを特徴とする。
In order to solve the above-mentioned problem, the invention according to claim 1 of the present application is directed to a solar power generation panel installation base for a cargo container, wherein the horizontal opening corresponding to the horizontal opening provided at the four corners of the top plate of the ISO standard cargo container It is provided at the four corners of the plate.
The invention according to claim 2 of the present application is the freight container photovoltaic panel installation table according to claim 1, wherein the cargo container photovoltaic panel installation table has ISO standard cargo containers at the four corners of the top plate. This is characterized in that the same horizontally long openings as the horizontally long openings provided at the four corners of the top plate are provided.
Furthermore, the invention according to claim 3 of the present application is the freight container photovoltaic panel installation base according to claim 1 or 2, wherein the horizontally long openings provided at the four corners of the bottom base plate are interposed by twist lock fixtures. It is fixed.
And the invention which concerns on this-application Claim 4 is a solar power generation panel installation stand for freight containers concerning the said claim 1 or 2, The said solar power generation panel installation stand for freight containers is for the small-lot sale of generated electric power. It is characterized by having a power conditioner.
Further, the invention according to claim 5 of the present application is the freight container solar power generation panel according to any one of claims 1 to 4, wherein the freight container solar power generation panel installation base is a freight container top plate. One end of the long side is formed higher than the other end, and the surface of the photovoltaic power generation panel installed therebetween is formed to be inclined.
The invention according to claim 6 of the present application is the freight container photovoltaic panel installation table according to claim 5, wherein the cargo container photovoltaic panel installation table is covered with a cover member that inclines the periphery. It is characterized by being.
 本願発明によれば、所定の広さの土地やコンテナ船上に太陽光下で一定期間止め置かれる貨物コンテナの屋根に設置及び取り外しが自在な太陽光発電パネル設置台とすることにより、貨物コンテナの屋根に設置及び取り外しが自由な太陽光発電パネル設置台を提供することができ、同設置台により、所定期間放置されるコンテナを利用した太陽光発電を可能とし、さらには、発電した電力の効率的売電を可能とするものである。 According to the invention of the present application, a solar power generation panel installation base that can be installed and removed freely on a roof of a cargo container that is stopped for a certain period of time under sunlight on a land of a predetermined size or a container ship, It is possible to provide a solar power generation panel installation table that can be freely installed and removed from the roof. This installation table enables solar power generation using containers that are left for a predetermined period of time, and the efficiency of the generated power. Power sales.
図1は、本発明に係る貨物コンテナ用太陽光発電パネル設置台を実施するための一実施例である貨物コンテナ用太陽光発電パネル設置台の実施例1の概略図である。FIG. 1 is a schematic view of Example 1 of a freight container photovoltaic panel installation base, which is an embodiment for implementing a freight container photovoltaic panel installation base according to the present invention. 図2は、図1に示した本実施例1に係る貨物コンテナ用太陽光発電パネル設置台1の全体の概略構成を示す図である。FIG. 2 is a diagram showing an overall schematic configuration of the freight container photovoltaic panel installation base 1 according to the first embodiment shown in FIG. 図3は、本実施例1に係る貨物コンテナ用太陽光発電パネル設置台1の内部骨組構造の概略の一部分を示す図である。FIG. 3 is a diagram illustrating a part of an outline of the internal framework structure of the freight container photovoltaic panel installation base 1 according to the first embodiment. 図4は、TAIYO社製固定金具(ツイストロック:N-1L-50)の概略を示す図である。FIG. 4 is a view showing an outline of a TAIYO fixing bracket (twist lock: N-1L-50). 図5は、本実施例1に係る貨物コンテナ用太陽光発電パネル設置台1をISO規格の貨物コンテナの四隅の係合状態の概略を示す図である。FIG. 5 is a diagram schematically illustrating the engagement state of the four corners of the ISO standard freight container with respect to the freight container photovoltaic panel installation base 1 according to the first embodiment. 図6は、貨物コンテナの屋根に本実施例1に係る貨物コンテナ用太陽光発電パネル設置台1を設置して太陽光発電を実施する状態の概略を示す図である。FIG. 6 is a diagram illustrating an outline of a state in which the photovoltaic power generation panel installation table 1 for the cargo container according to the first embodiment is installed on the roof of the cargo container and the photovoltaic power generation is performed. 図7は、本実施例2に係る貨物コンテナ用の太陽光発電パネル設置台40の概略を示す図である。FIG. 7 is a diagram illustrating an outline of a photovoltaic power generation panel installation base 40 for a cargo container according to the second embodiment. 図8は、ISO規格の20フィートコンテナの概略を示す図である。FIG. 8 is a diagram showing an outline of an ISO standard 20-foot container. 図9は、本発明の実施例3に係る貨物コンテナ用太陽光発電パネル設置台の概略を示す分解斜視図である。FIG. 9 is an exploded perspective view showing an outline of a freight container photovoltaic panel installation base according to Embodiment 3 of the present invention. 図10は、本発明の実施例3に係る貨物用太陽光発電パネル設置台の後部傾斜カバーを含む後部端断面図である。FIG. 10 is a rear end cross-sectional view including the rear inclined cover of the cargo photovoltaic power generation panel installation base according to the third embodiment of the present invention. 図11は、同前部端断面図である。FIG. 11 is a front end sectional view of the same.
 本発明に係る貨物コンテナ用太陽光発電パネル設置台を実施するための形態として一実施例を示す図面に基づき詳細に説明する。 DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS A detailed description will be given based on a drawing showing an embodiment as a mode for carrying out a solar power generation panel installation stand for a cargo container according to the present invention.
 図1は、本発明に係る貨物コンテナ用太陽光発電パネル設置台を実施するための一実施例である貨物コンテナ用太陽光発電パネル設置台の実施例1の概略図である。
 図1において、1は、本実施例1に係る貨物コンテナ用太陽光発電パネル設置台、2は、ベース板、3、3、3・・・は、太陽光発電パネル、4は、カバー、5,5,5、・・・は、間カバー、15、15、15、15は、吊り下げ孔である。
FIG. 1 is a schematic view of Example 1 of a freight container photovoltaic panel installation base, which is an embodiment for implementing a freight container photovoltaic panel installation base according to the present invention.
In FIG. 1, 1 is a solar power generation panel installation base for cargo containers according to the first embodiment, 2 is a base plate, 3, 3, 3,... Are solar power generation panels, 4 is a cover, 5, 5,... Are intermediate covers, and 15, 15, 15, and 15 are hanging holes.
 図2は、図1に示した本実施例1に係る貨物コンテナ用太陽光発電パネル設置台1の全体の概略構成を示す図であり、図3は、本実施例1に係る貨物コンテナ用太陽光発電パネル設置台1の内部骨組構造の概略の一部分を示す図であり、前記カバー4を省略して描いている。図2、図3において、符号1、2、3、4、5は、それぞれ図1に示す貨物コンテナ用太陽光発電パネル設置台1、ベース板2、太陽光発電パネル3、3、3・・・、カバー4、間カバー5、5、5・・・、吊り下げ孔15、15、15、15であり、その余の6、6、6、6は、前記ベース板の四隅に設けられる開口(コーナーポケット)、7,7は、チャネル架台、8、8、8・・・は、横支持金具、9は、当該横支持金具8を係止する固定具、10は、摺動固定具、11は、前記太陽光発電パネル3の側部突出部、12は、支持金具、13は、ボルト材、14は、ナット材、16は、支持金具である。 FIG. 2 is a diagram illustrating an overall schematic configuration of the freight container photovoltaic panel installation base 1 according to the first embodiment illustrated in FIG. 1, and FIG. 3 illustrates the freight container solar power according to the first embodiment. It is a figure which shows a part of outline of the internal framework structure of the photovoltaic power generation panel installation stand 1, and the said cover 4 is abbreviate | omitted and drawn. 2 and 3, reference numerals 1, 2, 3, 4, and 5 denote the freight container photovoltaic panel installation base 1, the base plate 2, the photovoltaic panels 3, 3, 3,. .., cover 4, cover 5, 5, 5..., Suspension holes 15, 15, 15, 15. (Corner pockets), 7 and 7 are channel mounts, 8, 8, 8... Are horizontal support fittings, 9 is a fixture for locking the horizontal support fitting 8, and 10 is a sliding fixture. 11 is a side protrusion of the photovoltaic power generation panel 3, 12 is a support fitting, 13 is a bolt material, 14 is a nut material, and 16 is a support fitting.
 図2から明らかなように、本実施例1に係る貨物コンテナ用太陽光発電パネル設置台1は、例えば、図8に示したISO規格に適合する長さ20フィート (6096mm×幅8フィート (2438mm)の大きさの貨物コンテナに対し、1,657mm×858mmの大きさの太陽光発電パネル3、3・・・を7枚使用することを想定している。したがって、本実施例1に係る貨物コンテナ用太陽光発電パネル設置台1においては、長さ20フィート (6096mm×幅8フィート (2438mm)の大きさの貨物コンテナに対し、例えば、長さ20フィート (6096mm×幅8フィート (2438mm)の前記ベース板2が使用される。 As apparent from FIG. 2, the freight container photovoltaic panel installation base 1 according to the first embodiment is, for example, 20 feet long (6096 mm × 8 feet wide (2438 mm) conforming to the ISO standard shown in FIG. 8. It is assumed that seven photovoltaic power generation panels 3, 3,... With a size of 1,657 mm × 858 mm are used for a cargo container having a size of). In the container-installed photovoltaic power generation panel installation stand 1, for example, a 20-foot-long (6096 mm × 8-foot-wide (2438 mm) long cargo container with a size of 20-foot-long (6096 mm × 8-foot-wide (2438 mm)). The base plate 2 is used.
 そして、このベース板2上に所定の位置に接着剤等で前記支持金具16、16、16、16を配置し、その上に所定長の前記チャネル架台7、7を所定の幅間隔で固定裁置する。そして、その上に、本実施例1に係る貨物コンテナ用太陽光発電パネル設置台1の広さに対応する7枚の太陽光発電パネル3、3・・を裁置するための8本の前記横支持金具8、8、8・・・が直角に固定配置され、図3に示されるように、前記チャネル架台7、7上の適宜の位置に、断面逆L字形状の前記固定具9を配置し、前記チャネル架台7、7の所定位置、例えば、1,657mm×858mmの大きさの太陽光発電パネル3、3・・・が7枚使用される太陽光発電パネル3、3・・の幅寸法に合わせた所定位置に前記固定具9を配置する。 Then, the support metal fittings 16, 16, 16, 16 are arranged on the base plate 2 at a predetermined position with an adhesive or the like, and the channel mounts 7, 7 having a predetermined length are fixed on the base plate 2 at predetermined width intervals. Put. Further, on the top of the above, the eight solar panels 3, 3,... Corresponding to the size of the freight container solar panel installation base 1 according to the first embodiment are disposed. Horizontal support fittings 8, 8, 8... Are fixedly arranged at right angles, and as shown in FIG. 3, the fixture 9 having an inverted L-shaped cross section is placed at an appropriate position on the channel mounts 7, 7. Of the solar panels 3, 3,... In which seven of the solar panels 3, 3,... Having a size of 1,657 mm × 858 mm are used. The fixture 9 is arranged at a predetermined position according to the width dimension.
 図3から明らかなように、前記ベース板2上に所定の間隔で配置される前記支持金具16の上に前記チャネル架台7が裁置され、その上に、前記横支持金具8を複数配置し、その間に前記太陽光発電パネル3、3が配置されるようにしたものである。
 そして、前記固定具9の逆L字形状の隙間には、前記横支持金具8の片側底部を係合し、しかる後、同横支持金具8の反対側から前記摺動固定具10で同反対側片側底部を挟み込み前記横支持金具8に固定する。
 当該横支持金具8には、前記太陽光発電パネル3の側部突出部11が間挿裁置され、所定枚数(7枚)の太陽光発電パネル3、3、・・・が設置される。太陽光発電パネル3,3の間には、前記間カバー5が配置され、前記横支持金具8の間に挿入される支持金具12との間で前記ボルト材13で固定する。
As is clear from FIG. 3, the channel mount 7 is placed on the support bracket 16 disposed at a predetermined interval on the base plate 2, and a plurality of the lateral support brackets 8 are disposed thereon. In the meantime, the photovoltaic power generation panels 3 and 3 are arranged.
Then, one side bottom portion of the lateral support fitting 8 is engaged with the inverted L-shaped gap of the fixture 9, and then the opposite direction of the lateral support fixture 8 is reversed by the sliding fixture 10. The bottom of one side is sandwiched and fixed to the lateral support fitting 8.
In the lateral support fitting 8, the side protruding portions 11 of the photovoltaic power generation panel 3 are inserted and a predetermined number (seven) of photovoltaic power generation panels 3, 3,. The cover 5 is disposed between the photovoltaic power generation panels 3 and 3, and is fixed with the bolt material 13 between the support bracket 12 inserted between the lateral support brackets 8.
 次に、本実施例1に係る貨物コンテナ用太陽光発電パネル設置台1を貨物コンテナへの設置について説明する。
 前述するように、図8に示すISO規格の貨物コンテナには、コンテナ上下面の四隅にはコンテナ固定金具用の横長の開口(コーナーポケット)が施されている。これは前述してきたように、この四隅の開口(コーナーポケット)にロックピン(図示外)を挿入し固定してコンテナを掴むことができるスプレッダという専用の装置を備えたガントリークレーンやカントリークレーンと称される特殊な荷役装置を用いて貨物コンテナを迅速・確実に積み込み・積み降ろしを可能とし、さらには、数個のコンテナを高さ方向に重ね又は横方向に並べて固定する開口(コーナーポケット)であり、貨物コンテナの固定には、図4に示すような固定金具(ツイストロック)が使用される。
Next, installation of the freight container solar power generation panel installation table 1 according to the first embodiment on a freight container will be described.
As described above, the ISO standard freight container shown in FIG. 8 is provided with horizontally long openings (corner pockets) for container fixing metal fittings at the four corners of the upper and lower surfaces of the container. As mentioned above, this is called a gantry crane or country crane equipped with a special device called a spreader that can hold and hold a lock pin (not shown) in these four corner openings (corner pockets). It is possible to load and unload freight containers quickly and reliably using special handling equipment that is used, and with an opening (corner pocket) that fixes several containers stacked in the height direction or arranged side by side There is a fixing metal fitting (twist lock) as shown in FIG. 4 for fixing the cargo container.
 図4は、TAIYO社製固定金具(ツイストロック:N-1L-50)の概略を示す図であり、図4において、20は、固定具(ツイストロック)、21は、前記横長の開口(コーナーポケット)に対応する平面視方形形状の上部ピン、22は、前記横長の開口(コーナーポケット)に対応する平面視方形形状の下部ピン、23は、ハンドル、24は、ベース材であり、前記上部ピン21及び前記下部ピン22は、上段の前記貨物コンテナの底板及び下段のコンテナの天板の四隅開けられた横長の開口(コーナーポケット)を突き抜け、前記ベース材24の上下面が上下のコンテナの底板及び天板に当接される。 FIG. 4 is a diagram showing an outline of a TAIYO fixing bracket (twist lock: N-1L-50). In FIG. 4, 20 is a fixture (twist lock), and 21 is the horizontally long opening (corner). The upper pin having a rectangular shape in plan view corresponding to the pocket), 22 is the lower pin having a square shape in plan view corresponding to the horizontally long opening (corner pocket), 23 is a handle, and 24 is a base material. The pin 21 and the lower pin 22 penetrate through the horizontally long openings (corner pockets) opened at the four corners of the bottom plate of the upper cargo container and the top plate of the lower container, and the upper and lower surfaces of the base material 24 are upper and lower containers. It abuts on the bottom plate and the top plate.
 当該固定具(ツイストロック)20を用いて貨物コンテナを上下に積み重ね固定するには、前記ハンドル23をアンロック状態のまま下段の貨物コンテナの四隅の横長の開口(コーナーポケット)に方形形状の前記下部ピン22を挿入させて貨物コンテナの四隅に当該固定具(ツイストロック)20を裁置し、さらに、この状態で、上段に積み重ねる貨物コンテナの底板の横長の開口(コーナーポケット)に前記固定具(ツイストロック)20の平面視方形形状の前記上部ピン21を挿通させ、前記ハンドル23をロック状態に移動させる。そうすると、前記ハンドル23の回転に伴って前記上部ピン21及び下部ピン22が回動し、前記上部ピン21及び前記下部ピン22が直角に回動し、前記横長開口(コーナーポケット)から抜けなくなり、上下の貨物コンテナが抜けたり、ずり落ちたりすることなく固定される。 In order to stack and fix the cargo container up and down using the fixing device (twist lock) 20, the rectangular shape is formed in the horizontally long openings (corner pockets) at the four corners of the lower cargo container while the handle 23 is unlocked. The lower pin 22 is inserted to place the fixing device (twist lock) 20 at the four corners of the cargo container. In this state, the fixing device is inserted into the horizontally long opening (corner pocket) of the bottom plate of the cargo container stacked on the upper stage. (Twist lock) The upper pin 21 having a square shape in a plan view of 20 is inserted, and the handle 23 is moved to the locked state. Then, the upper pin 21 and the lower pin 22 are rotated with the rotation of the handle 23, the upper pin 21 and the lower pin 22 are rotated at a right angle, and cannot be removed from the horizontally long opening (corner pocket). The upper and lower cargo containers are secured without falling out or sliding down.
 本実施例1に係る貨物コンテナ用太陽光発電パネル設置台1は、ISO規格貨物コンテナの天板の四隅の横長の開口(コーナーポケット)と同じ大きさ、形状の横長の開口(コーナーポケット)を前記ベース板2の四隅に備えたことにより、この開口(コーナーポケット)6を利用して、本実施例1に係る貨物コンテナ用太陽光発電パネル設置台1を貨物コンテナの屋根に容易に設置し、また、不要となる場合には、容易に取り外し可能とするものである。
 図5は、本実施例1に係る貨物コンテナ用太陽光発電パネル設置台1をISO規格の貨物コンテナの四隅の係合状態の概略を示す図であり、左側の固定具(ツイストロック)20は、装着前の状態を、右上の固定具(ツイストロック)20は、装着された固定状態を示している。
The solar power generation panel installation stand 1 for cargo containers according to the first embodiment has horizontal openings (corner pockets) having the same size and shape as the four horizontal openings (corner pockets) at the four corners of the top plate of the ISO standard cargo container. By providing the four corners of the base plate 2, the opening (corner pocket) 6 can be used to easily install the solar power generation panel installation table 1 for the cargo container according to the first embodiment on the roof of the cargo container. In addition, when it becomes unnecessary, it can be easily removed.
FIG. 5 is a diagram showing an outline of the engagement state of the four corners of the ISO standard freight container with the freight container photovoltaic panel installation stand 1 according to the first embodiment, and a left-side fixture (twist lock) 20 is shown in FIG. The fixing tool (twist lock) 20 on the upper right side shows the fixed state in which it is mounted.
 本実施例1に係る貨物コンテナ用太陽光発電パネル設置台1によれば、コンテナ輸送において荷役の際にコンテナヤード等の所定期間留め置かれる貨物コンテナの屋根スペースを利用して容易に太陽光発電を行うことができ、かつ、荷役作業に応じて、容易に設置・取り外しを可能とすることができる。 According to the solar power generation panel installation stand 1 for cargo containers according to the first embodiment, solar power generation can be easily performed by using the roof space of the cargo container that is retained for a predetermined period such as a container yard during container handling. And can be easily installed and removed according to the cargo handling operation.
 図6は、貨物コンテナの屋根に本実施例1に係る貨物コンテナ用太陽光発電パネル設置台1を設置して太陽光発電を実施する状態の概略を示す図であり、発電された電力によって市販の自動販売機を稼働させる例を示している。図6において、1は、本実施例1に係る貨物コンテナ用太陽光発電パネル設置台であり、30は自動販売機、31は、電力引き込み線、32は、太陽光発電電力引き込み線、33は、電柱であり、本実施例1に係る貨物コンテナ用太陽光発電パネル設置台1では、自動販売機30を稼働する外、余剰の電力は従来の引き込み線31を通じて近くの電柱33から売電するようにする。いわゆる、小口売電であり、本実施例1に係る貨物コンテナ用太陽光発電パネル設置台1は、小口売電に対応可能なパワーコンディショナーを備えている。 FIG. 6 is a diagram showing an outline of a state in which the solar power generation panel installation table 1 for the cargo container according to the first embodiment is installed on the roof of the cargo container, and the solar power generation is performed. An example of operating a vending machine is shown. In FIG. 6, reference numeral 1 denotes a freight container solar power generation panel installation table according to the first embodiment, 30 is a vending machine, 31 is a power lead-in line, 32 is a solar power generation power lead-in line, and 33 is In the solar power panel installation stand 1 for a cargo container according to the first embodiment, in addition to operating the vending machine 30, surplus power is sold from a nearby power pole 33 through a conventional lead-in line 31. Like that. This is a so-called small sale, and the freight container photovoltaic panel installation base 1 according to the first embodiment is provided with a power conditioner that can cope with small sale.
 本実施例1に係る貨物コンテナ用太陽光発電パネル設置台1では、同設置台1の設置又は取り外しに際しては、前記カバー4の所定位置に所定の形状の前記吊り下げ孔15、15、15、15を設け、当該吊り下げ孔15、15、15、15から前記チャネル架台7、7にロープ又はワイヤ等を掛け廻して同設置台1をクレーン等で吊り下げるようにしている。
 しかしながら、このようなロープ又はワイヤ等を開口を介して掛け廻し、吊り下げる等の作業は、作業員が相当の高さまで登って作業をしなければならず不便であり、作業工程を要する。
In the solar power generation panel installation stand 1 for cargo containers according to the first embodiment, when the installation stand 1 is installed or removed, the suspension holes 15, 15, 15, having a predetermined shape are formed at predetermined positions of the cover 4. 15 is provided, and a rope or a wire or the like is hung from the suspension holes 15, 15, 15, 15 to the channel mounts 7, 7, and the installation table 1 is suspended by a crane or the like.
However, such operations as hanging or hanging such a rope or wire through an opening are inconvenient because an operator has to work up to a considerable height and requires a work process.
 そこで、本願発明の実施例2として、コンテナを吊り下げる前記スプレッダを使用することができる本実施例2に係る貨物コンテナ用太陽光発電パネル設置台を検討した。
 図7は、本実施例2に係る貨物コンテナ用の太陽光発電パネル設置台40の概略を示す図であり、本実施例2に係る貨物コンテナ用太陽光発電パネル設置台40は、長さや幅、高さを実施例1に係る貨物コンテナ用太陽光発電パネル設置台1と変わらない。しかしながら、本実施例2に係る貨物コンテナ用太陽光発電パネル設置台40は、周辺に傾斜する前記カバー4は設けず、その上部面は、構造上貨物コンテナと同様の頑丈な材質からなり、また、通常の貨物コンテナの天板と同様に平坦であり、さらに、四隅にスプレッダ用の横長開口(コーナーポケット)が設けられている。
Therefore, as Example 2 of the present invention, a solar power generation panel installation table for a cargo container according to Example 2 in which the spreader for hanging a container can be used was examined.
FIG. 7 is a diagram illustrating an outline of a solar power generation panel installation table 40 for a cargo container according to the second embodiment. The solar power generation panel installation base 40 for a cargo container according to the second embodiment has a length and a width. The height is the same as that of the freight container photovoltaic panel installation base 1 according to the first embodiment. However, the solar power generation panel installation base 40 for the cargo container according to the second embodiment is not provided with the cover 4 inclined to the periphery, and the upper surface thereof is structurally made of a strong material similar to that of the cargo container, It is flat like a top plate of a normal cargo container, and is further provided with a horizontally long opening (corner pocket) for spreaders at four corners.
 したがって、本実施例2に係る貨物コンテナ用太陽光発電パネル設置台40を吊り下げる場合には、スプレッダを備えたガントリークレーンやカントリークレーンにより、スプレッダの吊り下げロックピン(図示外)を前記開口(コーナーポケット)に契合させ、本実施例2に係る貨物コンテナ用太陽光発電パネル設置台40を吊り下げるようにする。
 なお、本実施例1に係る貨物コンテナ用太陽光発電パネル設置台1をISO規格貨物コンテナに設置、取り外しを行う場合には、図4に示した手動で前記ハンドル23を回動させるセミオート式固定具(ツイストロック)20の例で説明したが、これは、コンテナ等の自重で回動が達成されるフルオート式固定具を使用しても良い。
Therefore, when suspending the photovoltaic power generation panel installation stand 40 for cargo containers according to the second embodiment, the suspending lock pin (not shown) of the spreader is attached to the opening (not shown) by a gantry crane or a country crane equipped with a spreader. The cargo container solar power generation panel installation table 40 according to the second embodiment is suspended from the corner pocket).
In addition, when installing and removing the photovoltaic power generation panel installation stand 1 for the cargo container according to the first embodiment from the ISO standard cargo container, the semi-automatic fixing for manually rotating the handle 23 shown in FIG. Although the example of the tool (twist lock) 20 has been described, a fully automatic fixing tool that can be rotated by its own weight such as a container may be used.
 また、本実施例1に係る貨物コンテナ用太陽光発電パネル設置台1や本実施例2に係る貨物コンテナ用太陽光発電パネル設置台40もISO20フィート (6,096mm)規格のコンテナ屋根に設置するものを想定したが、これは40フィート (12,192mm)規格のコンテナに設置するものであっても構わないし、また、必ずしも、コンテナ天井の全部を使用するものでなくても、半分のハーフサイズのもの等、サイズに限定されない。貨物コンテナの天井部分に設置するものであれば、大きさや構造上の違いに限定されるものではない。  In addition, the freight container solar power panel installation stand 1 according to the first embodiment and the freight container solar power panel installation base 40 according to the second embodiment are also installed on a container roof of ISO 20 foot (6,096 mm) standard. However, this may be installed in a container of 40 feet (12,192mm) standard, and it does not necessarily use the entire container ceiling, but it is half a half size. Etc., not limited to size. If it installs in the ceiling part of a cargo container, it will not be limited to the difference in a size or a structure.
 次に、実施例3に係る貨物コンテナ用太陽光発電パネル設置台について説明する。
 本願発明者は、実施例3に係る貨物コンテナ用太陽光発電パネル設置台について、本願出願人が既に提案している「太陽光発電設置台(実用新案登録第3186568号)」に準じて、所定方向に太陽光発電パネル面が傾斜する構造の貨物コンテナ用太陽光発電パネル設置台を検討するに至った。
Next, the freight container photovoltaic panel installation base according to the third embodiment will be described.
The inventor of the present application, with respect to the freight container solar power generation panel installation base according to Example 3, according to the “solar power generation installation base (utility model registration No. 3186568)” already proposed by the present applicant, We came to consider a solar power generation panel installation stand for cargo containers with a structure in which the solar power generation panel surface is inclined in the direction.
 貨物コンテナ用太陽光発電パネル設置台において、太陽光発電パネル面を所定方向に傾斜する構造をとる場合には、高い位置に位置する辺から風の吹き込みがあり、そこから風が吹き込んで太陽光発電パネルがめくれ上がったりする危険があるし、また、当該部分やその他の部分から風雨の吹き込みのため当該部分やその他の部分に錆等が発生する不具合があった。 When a photovoltaic power generation panel installation stand for a cargo container has a structure in which the surface of the photovoltaic power generation panel is inclined in a predetermined direction, wind blows from a side located at a high position, and the wind blows from there. There is a risk that the power generation panel is turned up, and there is a problem that rust or the like is generated in the part or other part due to blowing wind and rain from the part or other part.
 そこで、本実施例3に係る貨物コンテナ用太陽光発電パネル設置台においては、所定方向に太陽光発電パネル面が傾斜する構造とすると共に、貨物コンテナ用太陽光発電パネル設置台の周囲の全周について、雨水等が流れ落ちる角度を有する風雨の吹き込みを避ける板金で覆う構造としたものである。 Therefore, the solar power generation panel installation table for cargo containers according to the third embodiment has a structure in which the surface of the solar power generation panel is inclined in a predetermined direction, and the entire circumference around the solar power generation panel installation table for cargo containers. The structure is covered with a sheet metal that avoids the blowing of wind and rain having an angle at which rainwater or the like flows down.
 図9は、本発明の実施例3に係る貨物コンテナ用太陽光発電パネル設置台の概略を示す分解斜視図である。
 図9において、符号3、3、3、3、3,3は、従来から使用される太陽光発電パネル、100は、前述するISO規格の貨物コンテナであり、本実施例3に係る貨物コンテナ用太陽光発電パネル設置台においては、ISO規格20フィートコンテナを礼に説明している。また、符号101は、同貨物コンテナ100の天板(屋根)、102は、同天板101の四隅に設けられるコンテナ吊り下げ・固定用の開口(コーナーポケット)である。また、符号20は、前記貨物コンテナ100を積み重ねる際に上下の貨物コンテナ100を固定する固定具(ツイストロック)であり、既に説明したものと同じものである。
FIG. 9 is an exploded perspective view showing an outline of a freight container photovoltaic panel installation base according to Embodiment 3 of the present invention.
In FIG. 9, reference numerals 3, 3, 3, 3, 3, 3 are solar power generation panels used conventionally, and 100 is the above-mentioned ISO standard freight container. In the solar power generation panel installation table, an ISO standard 20-foot container is described with gratitude. Reference numeral 101 denotes a top plate (roof) of the cargo container 100, and 102 denotes container suspension / fixing openings (corner pockets) provided at four corners of the top plate 101. Reference numeral 20 denotes a fixture (twist lock) for fixing the upper and lower cargo containers 100 when the cargo containers 100 are stacked, which is the same as already described.
 符号50は、本実施例3に係る貨物コンテナ用太陽光発電パネル設置台、52は、ISO規格の貨物コンテナ100の天板(屋根)101と同じ大きさのベース板であり、53、53,53,53は、当該ベース板52の四隅に開けら、前記ISO規格の貨物コンテナ100の天板(屋根)101の四隅位置に設けられるコンテナ吊り下げ用の開口(コーナーポケット)と同位置に設けられる固定具用開口(コーナーポケット)である。そして、符号54、54,54,54は、前記ベース板52上に固定配置されるチャネル架台、55,55,55、55は、後部端柱、56、56、56、56は、前部端柱、57a、57bは、スチール角パイプからなる後部横通し材、58は、同前部横通し材、59、59,59、59は、傾斜支持金具、60は、中間シーリング材、61、61は、側部シーリング材、62,62は、パネル押さえ具、63aは、前部傾斜カバー、63bは、後部傾斜カバー、64、64は、側部カバー、65、65,・・は、前記前後の傾斜カバー63a、63bの端部に開けられて前記固定具開口53、53,53,53位置に対応する位置に開口する開口である。また、66、66、・・も、前記側部カバー64、64の端部に開けられて前記固定具開口53、53,53,53位置に対応する位置に開口する開口である。 Reference numeral 50 denotes a freight container solar power generation panel installation base according to the third embodiment, 52 denotes a base plate having the same size as the top board (roof) 101 of the ISO standard freight container 100, 53, 53, 53 and 53 are opened at the four corners of the base plate 52 and provided at the same positions as the container suspension openings (corner pockets) provided at the four corner positions of the top plate (roof) 101 of the ISO standard cargo container 100. It is an opening (corner pocket) for a fixture. Reference numerals 54, 54, 54, 54 are channel bases fixedly arranged on the base plate 52, 55, 55, 55, 55 are rear end pillars, 56, 56, 56, 56 are front end edges. Columns 57a and 57b are rear transverse members made of steel square pipe, 58 is the front transverse member, 59, 59, 59 and 59 are inclined support fittings, 60 is an intermediate sealing member, 61 and 61 Is a side sealant, 62 and 62 are panel pressing members, 63a is a front inclined cover, 63b is a rear inclined cover, 64 and 64 are side covers, and 65, 65,. These openings are opened at the ends of the inclined covers 63a and 63b and open at positions corresponding to the positions of the fixture openings 53, 53, 53 and 53. In addition, 66, 66,... Are openings opened at the ends of the side covers 64, 64 and opened to positions corresponding to the positions of the fixture openings 53, 53, 53, 53.
 図9から明らかなように、本実施例3に係る貨物コンテナ用太陽光発電パネル設置台50もこれまでに説明した実施例1、2に係る貨物コンテナ用太陽光発電パネル設置台と同様に貨物コンテナ100の天板101の四隅位置に開口する開口(コーナーポケット)53、53,53,53にロックピン(図示外)を挿入し固定してつり上げることを前提とする。 As apparent from FIG. 9, the freight container photovoltaic panel installation base 50 according to the third embodiment is similar to the freight container photovoltaic panel installation base according to the first and second embodiments described above. It is assumed that lock pins (not shown) are inserted into the openings (corner pockets) 53, 53, 53, 53 that open at the four corners of the top plate 101 of the container 100, and are fixed and lifted.
 そして、本実施例3に係る貨物コンテナ用太陽光発電パネル設置台50での使用を想定する太陽電池パネル3、3、3、3、3、3は、Ulica solar社製UL-300P-72太陽電池モジュールの使用を想定する。なぜならば、同社製UL-300P-72太陽電池モジュールは、1枚の大きさが1953×997mmの外形寸法を有し、ISO規格の前記20フィートコンテナの天板(6096mm×2438mm)に当該太陽電池モジュールを6枚を使用するときは、周囲に約100mm程度の余裕が生じ、前記固定具開口53、53、53,53を設ける余地を残して配置することができるからである。 The solar battery panels 3, 3, 3, 3, 3, and 3 assumed to be used in the freight container photovoltaic power generation panel installation base 50 according to the third embodiment are UL-300P-72 solar power manufactured by Ulicalicsolar. Assume the use of battery modules. This is because the UL-300P-72 solar cell module manufactured by the same company has an outer dimension of 1953 × 997 mm, and the solar cell is mounted on the top plate (6096 × 2438 mm) of the ISO 20-foot container. This is because when six modules are used, a margin of about 100 mm is generated around the module, and the module openings 53, 53, 53, and 53 can be left without being provided.
 図10は、本実施例3に係る貨物用太陽光発電パネル設置台50の前記後部傾斜カバー63bを含む後部端断面図であり、図11は、同前部端断面図である。図10、図11において、新たな符号67は、後部バックアップ材、68は、後部T字バックアップ材、69は、後部支持金具、70は、後部シーリング材、71は、前部T字バックアップ材、72は、前部支持金具、73は、前部シーリング材、74は、前部バックアップ材であり、その余の太陽電池パネル3等の部材については、図9において使用した同じ符号で示した。 FIG. 10 is a rear end sectional view including the rear inclined cover 63b of the cargo photovoltaic power generation panel installation base 50 according to the third embodiment, and FIG. 11 is a front end sectional view of the same. 10 and 11, the new reference numeral 67 is a rear backup material, 68 is a rear T-shaped backup material, 69 is a rear support bracket, 70 is a rear sealing material, 71 is a front T-shaped backup material, 72 is a front support fitting, 73 is a front sealing material, 74 is a front backup material, and other members such as the solar cell panel 3 are denoted by the same reference numerals used in FIG.
 図10及び図11から明らかなように、本実施例3に係る貨物コンテナ用太陽光発電パネル設置台50においては、太陽電池モジュールを構成する太陽電池パネル3は、前記後部支持金具69及び前部支持金具72の間に挟み込まれて設置される。設置に際しては、それぞれの上表面に前記後部シーリング材70及び前記前部シーリング材73等によってシーリングされ、雨水が侵入しない構造となっている。したがって、雨水の浸入により、当該設置台50の構造物等に錆等が発生することを防ぐことができる。 As is clear from FIGS. 10 and 11, in the solar power generation panel installation stand 50 for cargo containers according to the third embodiment, the solar cell panel 3 constituting the solar cell module is composed of the rear support bracket 69 and the front portion. It is sandwiched between the support fittings 72 and installed. At the time of installation, each of the upper surfaces is sealed with the rear sealing material 70, the front sealing material 73, and the like, so that rainwater does not enter. Therefore, it is possible to prevent rust and the like from being generated in the structure of the installation table 50 due to the intrusion of rainwater.
 また、前記側部カバー64、64及び前記前部傾斜カバー63a並びに前記後部傾斜カバー63bは、所定の傾斜角度をもって前記太陽電池パネル3、3、・・・から前記貨物コンテナ100の上端部を覆う構造としているので、太陽電池パネル3、3、・・表面が傾斜構造の本実施例3に係る貨物コンテナ用太陽光発電パネル設置台50においては、強い風が吹いても,前記太陽電池パネル3、3・・・の下部に風が吹き込むことがなく、太陽電池パネル3、3・・が捲れ上がったり、飛ばされてしまう危険がない。ここで、前記後部バックアップ材67、前記後部T字バックアップ材68及び前記前部T字バックアップ材71,前記前部バックアップ材74は、前記前記後部傾斜カバー63b、前記前部傾斜カバー63aを前記後部横通し材57a、57bや前記傾斜支持金具59、59,59、59に固定する部材である。 Further, the side covers 64, 64, the front inclined cover 63a, and the rear inclined cover 63b cover the upper end of the cargo container 100 from the solar panels 3, 3,... With a predetermined inclination angle. Because of the structure, the solar cell panels 3, 3,... In the solar power generation panel installation table 50 for cargo containers according to the third embodiment having an inclined surface, even if a strong wind blows, the solar cell panel 3 No wind blows into the lower part of 3... And there is no danger that the solar cell panels 3, 3. Here, the rear backup material 67, the rear T-shaped backup material 68, the front T-shaped backup material 71, and the front backup material 74 are arranged such that the rear inclined cover 63b and the front inclined cover 63a are connected to the rear portion. It is a member that is fixed to the transverse members 57a, 57b and the inclined support fittings 59, 59, 59, 59.
 なお、前記開口65、65、・・は、本実施例3に係る貨物コンテナ用太陽光発電パネル設置台50においては、常時開口する開口65、65、・・としたが、これは、これらのカバー63a、63bに沿ってスライド開閉するスライド式開口(図示外)とし、当該貨物コンテナ用太陽光発電パネル設置台50の設置や取り外しの際にはスライド開口し、それ以外の場合には、雨水が入り込まないようにスライド閉止する構造としても良い。 The openings 65, 65,... Are always open openings 65, 65,... In the freight container photovoltaic panel installation base 50 according to the third embodiment. A sliding opening (not shown) that opens and closes along the covers 63a and 63b is opened. When the solar power generation panel installation base 50 for the cargo container is installed or removed, the sliding opening is used. It is good also as a structure which closes a slide so that may not enter.
 さらに、図9ないし図11から明らかなように、本実施例3に係る貨物コンテナ用太陽光発電パネル設置台50は、当該設置台の長辺の一端が他端より上方向に配置され、この間に設置される太陽電池モジュール3が傾斜して設置されるように構成されるので、太陽の向きに合わせて効率良く太陽光発電を可能とするように設置することができる。 Further, as apparent from FIGS. 9 to 11, the freight container photovoltaic panel installation base 50 according to the third embodiment is arranged such that one end of the long side of the installation base is arranged upward from the other end. Since the solar cell module 3 installed on the solar cell module 3 is inclined and installed, the solar cell module 3 can be installed so as to enable efficient solar power generation according to the direction of the sun.
 また、本実施例3に係る貨物コンテナ用太陽光発電パネル設置台50は、これまでの実施例1,2において説明したと同様に、コンテナヤード等における船待ち、貨車待ちや税関検査待ち等の短い間であっても、貨物コンテナ100の最上部天板101に容易に設置することができ、設置に際しても、貨物コンテナ100を積み降ろし移動するスプレッダを備えたガントリークレーンやカントリークレーンにより容易に設置・取り外しができ、これらの時間待ち時間を有効に活用することができる。そして、これらの設置に際しても、物コンテナ100を積み降ろし移動するスプレッダを備えたガントリークレーンやカントリークレーンを操作することにより、作業員が貨物コンテナ100上に登ることなく、いわば自動的に設置することができるので、省力化が可能であり、作業効率が格段に優れたものとなる。 Moreover, the solar power generation panel installation stand 50 for cargo containers according to the third embodiment is similar to that described in the first and second embodiments, such as waiting for a ship in a container yard or the like, waiting for a freight car or waiting for a customs inspection. Even for a short time, it can be easily installed on the top top plate 101 of the cargo container 100, and can be installed easily with a gantry crane or country crane equipped with a spreader for loading and unloading the cargo container 100. -It can be removed, and these waiting times can be used effectively. And when installing these, by operating a gantry crane or a country crane equipped with a spreader for loading and unloading the object container 100, the worker can automatically install it without climbing on the cargo container 100. Therefore, labor saving is possible, and the work efficiency is remarkably improved.
 なお、本実施例3に係る貨物コンテナ用太陽光発電パネル設置台50において、貨物コンテナ100上に裁置するなどの使用をしない場合には、前記天板(屋根)及びベース板のそれぞれ四隅に設けられるコンテナ吊り下げ・固定用の開口(コーナーポケット)を有し、本実施例3に係る貨物コンテナ用太陽光発電パネル設置台50とは反対の下向きの傾斜角を有する間挿スペース部材(図示外)を介在させることにより、本実施例3に係る貨物コンテナ用太陽光発電パネル設置台50が使用されない場合にも広い保管スペースを要することがなく積み上げておくことができる。 In addition, in the freight container photovoltaic power generation panel installation table 50 according to the third embodiment, when not placed on the freight container 100 or the like, the top plate (roof) and the base plate are respectively provided at the four corners. Interstitial space member (shown in the figure) having an opening (corner pocket) for hanging / fixing the container provided and having a downward inclination angle opposite to the solar power generation panel installation base 50 for cargo containers according to the third embodiment. By interposing the outer), even when the freight container photovoltaic panel installation base 50 according to the third embodiment is not used, it can be stacked without requiring a large storage space.
 本発明は、ISO規格の貨物コンテナの天板上に設置、取り外しが自由な貨物コンテナ用太陽光発電パネル設置台として利用される。 The present invention is used as a solar power generation panel installation table for a cargo container that can be installed and removed freely on the top plate of an ISO standard cargo container.
 1 実施例1に係る貨物コンテナ用太陽光発電パネル設置台
 2 ベース板
 3,3、3・・・ 太陽光発電パネル
 4 カバー
 5、5、5・・・ 間カバー
 6、6、6、6 開口
 7、7 チャネル架台
 8、8、8・・・ 横支持金具
 9 固定具
 10 摺動固定具
 11 側部突出部
 12 支持金具
 13 ボルト材
 15、15、・・ 吊り下げ孔
 16、16、・・ 支持金具
 20 固定具(ツイストロック)
 21 上部ピン
 22 下部ピン
 23 ハンドル
 24 ベース材
 30 自動販売機
 31 電力引き込み線
 32 太陽光発電電力引き込み線
 33 電柱
 40 実施例2に係る貨物コンテナ用太陽光発電パネル設置台
 50 実施例3に係る貨物コンテナ用太陽光発電パネル設置台
 52 ベース板
 53、53,53,53 固定具用開口(コーナーポケット)
 54、54,54,54 チャネル架台
 55,55,55、55 後部端柱
 56、56、56、56 前部端柱
 57a、57b 後部横通し材
 58 前部横通し材
 59、59,59、59 傾斜支持金具
 60 中間シーリング材
 61、61 側部シーリング材
 62,62 パネル押さえ具
 63a 前部傾斜カバー
 63b 後部傾斜カバー
 64、64 側部カバー
 65、65,・・ 開口
 66、66、・・ 開口
 67 後部バックアップ材
 68 後部T字バックアップ材
 69 後部支持金具
 70 後部シーリング材
 71 前部T字バックアップ材
 72 前部支持金具
 73 前部シーリング材
 74 前部バックアップ材
100 貨物コンテナ
101 天板(屋根)
102 開口(コーナーポケット)
 
DESCRIPTION OF SYMBOLS 1 Solar power generation panel installation stand for cargo containers which concerns on Example 1 2 Base plate 3, 3, 3 ... Solar power generation panel 4 Cover 5, 5, 5, ... Cover 6, 6, 6, 6 Opening 7, 7 Channel mount 8, 8, 8 ... Horizontal support bracket 9 Fixing tool 10 Sliding fixture 11 Side protrusion 12 Support bracket 13 Bolt material 15, 15, .. Suspension hole 16, 16, .. Support bracket 20 Fixing tool (twist lock)
DESCRIPTION OF SYMBOLS 21 Upper pin 22 Lower pin 23 Handle 24 Base material 30 Vending machine 31 Electric power draw-in line 32 Photovoltaic power draw-in line 33 Utility pole 40 Cargo container solar power generation panel installation stand which concerns on Example 2 50 Cargo which concerns on Example 3 Solar power generation panel installation base for containers 52 Base plate 53, 53, 53, 53 Opening for fixture (corner pocket)
54, 54, 54, 54 Channel mount 55, 55, 55, 55 Rear end column 56, 56, 56, 56 Front end column 57a, 57b Rear cross member 58 Front cross member 59, 59, 59, 59 Inclined support bracket 60 Intermediate sealing material 61, 61 Side sealing material 62, 62 Panel presser 63a Front inclined cover 63b Rear inclined cover 64, 64 Side cover 65, 65, ... Opening 66, 66, ... Opening 67 Rear backup material 68 Rear T-shaped backup material 69 Rear support bracket 70 Rear sealing material 71 Front T-shaped backup material 72 Front support bracket 73 Front sealing material 74 Front backup material 100 Cargo container 101 Top plate (roof)
102 Opening (corner pocket)

Claims (6)

  1.   ISO規格の貨物コンテナの天板の四隅に設けられる横長の開口に対応する横長開口を底部ベース板四隅に設けたことを特徴とする貨物コンテナ用太陽光発電パネル設置台。 太 陽光 A solar panel installation base for cargo containers, characterized in that horizontal openings corresponding to the horizontal openings provided at the four corners of the top plate of the ISO standard cargo container are provided at the four corners of the bottom base plate.
  2.  前記貨物コンテナ用太陽光発電パネル設置台は、その天板四隅にISO規格の貨物コンテナの天板の四隅に設けられる横長の開口と同じ横長開口を設けたことを特徴とする請求項1に記載の貨物コンテナ用太陽光発電パネル設置台。 2. The solar power generation panel installation stand for a cargo container is provided with the horizontally long opening provided at the four corners of the top plate of the ISO standard cargo container at the four corners of the top plate of the ISO standard. Of solar power panels for cargo containers.
  3.  前記底部ベース板四隅に設けられる横長開口は、ツイストロック固定具が介在して固定されることを特徴とする請求項1又は2に記載の貨物コンテナ用太陽光発電パネル設置台。 3. The solar power generation panel installation stand for a cargo container according to claim 1 or 2, wherein the horizontally long openings provided at the four corners of the bottom base plate are fixed with a twist lock fixture interposed therebetween.
  4.  前記貨物コンテナ用太陽光発電パネル設置台は、発電電力の小口売電のためのパワーコンディショナーを備えたことを特徴とする請求項1又は2に記載の貨物コンテナ用太陽光発電パネル設置台。  3. The freight container photovoltaic panel installation table according to claim 1 or 2, wherein the freight container photovoltaic panel installation table includes a power conditioner for small power sales of generated power. *
  5.  前記貨物コンテナ用太陽光発電パネル設置台は、貨物コンテナ天板の長辺の一端が他端より高く形成され、その間に設置される太陽光発電パネル表面が傾斜して形成されることを特徴とする請求項1ないし請求項4のいずれかに記載された貨物コンテナ用太陽光発電パネル。 One of the long sides of the cargo container top plate is formed higher than the other end, and the surface of the photovoltaic power generation panel installed therebetween is inclined and formed. The photovoltaic power generation panel for a cargo container according to any one of claims 1 to 4.
  6.  前記貨物コンテナ用太陽光発電パネル設置台は、周囲を傾斜するカバー部材で覆われていることを特徴とする請求項5に記載の貨物コンテナ用太陽光発電パネル設置台。
     
    The said photovoltaic container installation stand for cargo containers is covered with the cover member which inclines the circumference | surroundings, The photovoltaic panel installation stand for cargo containers of Claim 5 characterized by the above-mentioned.
PCT/JP2015/052015 2013-06-18 2015-01-26 Photovoltaic panel installation stand for freight container WO2015115362A1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2013003457U JP3186568U (en) 2013-06-18 2013-06-18 Solar power panel installation stand
JP2014-000407U 2014-01-28

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KR (1) KR20140147701A (en)
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Publication number Priority date Publication date Assignee Title
JP3186568U (en) * 2013-06-18 2013-10-17 菱和テクノサービス株式会社 Solar power panel installation stand
JP2015096681A (en) * 2013-11-15 2015-05-21 亮輔 金田 Frame for panel
JP6742135B2 (en) * 2015-04-30 2020-08-19 大成建設株式会社 Solar cell array group
KR101942283B1 (en) * 2017-02-15 2019-01-25 장한승 Support structure of solar panel which does not perforate proof
KR102242372B1 (en) * 2020-06-18 2021-04-20 주식회사 비케이에너지 Support structure of solar panel which does not perforate proof and Solar power generation system
KR102376457B1 (en) 2021-08-10 2022-03-17 홍정주 Solar Panel Support Structure

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GB2463098A (en) * 2008-09-03 2010-03-10 Oliver Claridge Shipping container with photovoltaic panel
JP2012001152A (en) * 2010-06-18 2012-01-05 Ihi Marine United Inc Solar power generation panel and container vessel
KR20120014820A (en) * 2010-08-10 2012-02-20 대우조선해양 주식회사 Container tank having solar power generating system
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US20130056991A1 (en) * 2011-09-02 2013-03-07 Kim Ahrenfeldt Petersen Sustainable Power Supply Unit For ISO Containers
JP3186568U (en) * 2013-06-18 2013-10-17 菱和テクノサービス株式会社 Solar power panel installation stand
JP3189998U (en) * 2014-01-28 2014-04-10 菱和テクノサービス株式会社 Solar power panel installation stand for cargo containers
US8839574B1 (en) * 2013-11-25 2014-09-23 Peter E. Gill Solar panel device for an ISO cargo container

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GB2463098A (en) * 2008-09-03 2010-03-10 Oliver Claridge Shipping container with photovoltaic panel
JP2012001152A (en) * 2010-06-18 2012-01-05 Ihi Marine United Inc Solar power generation panel and container vessel
KR20120014820A (en) * 2010-08-10 2012-02-20 대우조선해양 주식회사 Container tank having solar power generating system
JP2012130096A (en) * 2010-12-13 2012-07-05 Panasonic Corp Power control apparatus and power control system using the same
US20130056991A1 (en) * 2011-09-02 2013-03-07 Kim Ahrenfeldt Petersen Sustainable Power Supply Unit For ISO Containers
JP3186568U (en) * 2013-06-18 2013-10-17 菱和テクノサービス株式会社 Solar power panel installation stand
US8839574B1 (en) * 2013-11-25 2014-09-23 Peter E. Gill Solar panel device for an ISO cargo container
JP3189998U (en) * 2014-01-28 2014-04-10 菱和テクノサービス株式会社 Solar power panel installation stand for cargo containers

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TWM490496U (en) 2014-11-21
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