KR101065388B1 - A device to store ice and food with the aid of nature. - Google Patents

A device to store ice and food with the aid of nature. Download PDF

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Publication number
KR101065388B1
KR101065388B1 KR1020080088049A KR20080088049A KR101065388B1 KR 101065388 B1 KR101065388 B1 KR 101065388B1 KR 1020080088049 A KR1020080088049 A KR 1020080088049A KR 20080088049 A KR20080088049 A KR 20080088049A KR 101065388 B1 KR101065388 B1 KR 101065388B1
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South Korea
Prior art keywords
bingo
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storage
air
pipe
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KR1020080088049A
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Korean (ko)
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KR20100029313A (en
Inventor
구자선
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구자선
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Priority to KR1020080088049A priority Critical patent/KR101065388B1/en
Priority to PCT/KR2009/005046 priority patent/WO2010027227A2/en
Publication of KR20100029313A publication Critical patent/KR20100029313A/en
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Publication of KR101065388B1 publication Critical patent/KR101065388B1/en

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D1/00Devices using naturally cold air or cold water

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Physics & Mathematics (AREA)
  • Mechanical Engineering (AREA)
  • Thermal Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Wood Science & Technology (AREA)
  • Zoology (AREA)
  • Food Science & Technology (AREA)
  • Polymers & Plastics (AREA)

Abstract

       The present invention relates to a bingo and storage using the environmentally friendly energy Zion to install the bingo and storage using underground geothermally up and down in order to freeze the natural ice in the sub-zero weather in winter and to store the bingo under the bingo By installing the cold bin of the bingo and the outside air inlet chamber (30) and the air discharge pipe (90) to the appropriate height on the ground by using the convection car to circulate the inside and outside air with the inside and outside air circulation to store agricultural and marine products It is about bingo and storage using nature.

Sloped passageway. bingo. Storage, cold conduction material. Internal and external circulation.

Description

A device to store ice and food with the aid of nature.}

The present invention installs a cellar to store the bingo and agricultural products under the bingo in an environmentally friendly way using underground geothermal underground to freeze and store the natural ice using the cold season below sub-zero in winter or low season or Cold air of the stored ice flows into the convection car below the reservoir to store agricultural products, etc. at low temperature, and also installs the outside air inlet chamber 30 and the air discharge pipe 90 above the ground to circulate the inside and outside of the convection car to the inside of the reservoir. It is related to the installation of bingo cold, underground underground, moisture and internal and external air circulation by installing cold air and ground temperature by cooling cold air with cold conduction wall in sub-zero weather.

The traditional method of storage has been to make crypts in the basement or the ground, install granite with high thermal conductivity inside, make the roof arc, shape the doors, plant the grass, and block the inflow of warmth. It is collected in the cold winter, piled up in bingo, and used as a heat insulating material using chaff or crested house.It is stored in the winter and used for ice or fish in hot summer. In recent years, it is simply stored using electric power and refrigerants, but it is simple and convenient, but it destroys the ozone layer by releasing freon gas that hinders the global environment. It is emerging as a factor and requires extra energy. The electricity used also uses uranium, which is the main raw material of fossil energy or nuclear power generation. Fossil energy destroys the global environment and is severely damaged. Nuclear power generation, which uses uranium as a raw material, is considered to be relatively clean and clean energy, It is a problem that has emerged as a problem. Recently, electricity is produced using solar panels, but the price is high. Therefore, the wise storage method of ancestors is the best alternative. All agricultural and marine products are purchased at a low price during the peak season using some large warehouses and stored for a long time. The low season is more than double the price of agricultural and aquatic products, which leads to the difficulty of spending a lot of consumer's living expenses. Land use fee and profit It is sold at a high price by adding distribution costs, which imposes adverse conditions on consumers. The development of eco-friendly storage bins that provide convenience for consumers by distributing storage methods such as agricultural and marine products using eco-friendly energy to each household I think it is necessary to develop eco-friendly storage that can save the environment and reduce the cost of living.

 In order to solve the above problems, the present invention provides a bingo and a storage under the bingo using underground as the underground, and uses natural weather to store natural ice into a well-insulated bingo by using sub-zero weather in winter. Cold storage of bingo is introduced below the reservoir to store the products in the reservoir at low temperature, and the internal and external air is circulated to the inside of the reservoir to improve the environment that is damaged by the growth of harmful bacteria due to the stagnation of air. By replenishing water and moisture, the store does not dry out and maintains the proper temperature. It is trying to solve the environment by using environmentally friendly natural energy for long-term storage of agricultural and marine products.

As described above, the natural ice is produced as a prefabricated container using the weather below freezing in winter, and then wrapped with oil paper to prevent moisture adhesion or finished with oil paper to be finished with oil paper and finished with oil paper. Install the outside air inlet chamber 30 on the outside of the inclined passage 25 so that the ice can be easily transported and stored in the bingo, and the bin 88 using bingo cold air below the bingo circulates the inside and outside air into the bin. Connected to the outside air transport pipe (20) between the reservoir and the ground heat absorption corrugated pipe (93) having a through hole (35) is connected between the outdoor air transport pipe is connected to the underground temperature and moisture into the storage room and above the ground of an appropriate height Install the bet discharge pipe (90) is connected to the ceiling ceiling of the bet transfer pipe (22) to circulate the inside and outside the inside of the reservoir to stagnate air With the proliferation of harmful bacteria by blocking it consists of a method for long-term storage of agricultural products in an environmentally sound manner using bingo as geothermal and cold water.

As described above, the storage method using the cold and internal and external air circulation of the bingo can be stored at a low temperature by a natural method without separate energy consumption, and the air is circulated without circulation by the internal and external air circulation into the storage. Moisture is transferred to the storage room along with the temperature, and the temperature and internal and external air circulation required for long-term storage is convection by the convection car, which enables long-term storage. Also, by installing underground storage, the ground area can be used, the logistics cost is reduced, and the human rights cost is reduced. It is possible to buy cheaply in season and eat agricultural products, save the environment, and use it semi-permanently as a facility.

The present invention relates to bingo and storage using nature to store agricultural and marine products by circulating the bingo cold and geothermal heat and air flow above the storage bin below the bingo to store ice underground
In summary, a bingo (80) for storing natural ice is installed inside the underground subterranean layer below the ground, and a bin (88) for storing agricultural products, etc., is installed below the bingo. Opening and closing regulator 10 is installed through the upper through hole 98 in communication with the ceiling and the lower reservoir, bingo cold air flows downward by convection to the lower reservoir by the opening and closing regulator, and drain pipe 24 is installed below the inside of the reservoir. The water generated by the inside of the reservoir and the cold bin air is circulated to the ground layer through the drain pipe, and the outside air inlet pipe 95 through which the drain pipe 24 under the reservoir transfers the outside air and the outside air inlet above the ground. Connected to the outside air inlet chamber 10 to purify the outside air flows in through the outside air inlet through the outside air inlet and enters the reservoir, The internal warm air flow is circulated upward and the air flow inside the reservoir is discharged to the air discharge outlet 99 installed above the air discharge pipe connected to the internal air transfer pipe 22 and the air discharge pipe 90 connected to the side of the reservoir. Inlet 95 and internal air outlet 99 The difference between the inside and outside of the convection lane is a geothermal absorption corrugated pipe 93 having a through hole 35 for absorbing geothermal heat and water between the outside air transport pipes. Geothermal heat and moisture is circulated through the through hole along with the air circulation, the agricultural and marine products are stored for a long time using the bingo cold and geothermal heat and moisture and the outside air circulation.
In addition, the bingo is provided with an inclined passage 25 connected to the internal air discharge pipe 90 for discharging the warmth of the bingo while transferring the ice to the bingo 80 inside the ice to be stored inside by circulating the outside air as the storage Can be stored for a long time,
In addition, a cold air conduction inner wall 77 in which cold air is conducted to the entire bingo interior is installed, and the cold air conduction inner wall 77 is circulated by storing cold air conduction inner walls 77 through the inclined passage 25 through the inclined passage 25. To help long-term storage of ice,
In addition, the inside of the storehouse is installed with the cold air conduction inner wall 77 like the bingo, and the agricultural and marine products stored therein by storing the inside wall as described above are used for the long term storage with the bingo cold air. By circulating internal and external equipment into bingo and storage bins and bins, bingo stores long-term storage of ice that is stored inside by injecting cold air into subzero weather and discharging warmth. Blocking the growth of harmful bacteria and circulating geothermal heat and moisture inside the reservoir along with cold bingo cold, moisture that prevents the growth of stored items with the proper temperature and prevents the growth of stored bacteria with proper temperature is stored inside. Regarding bingo and natural storage using natural energy for long-term storage of marine products Will.
The following is described in detail with the drawings
1 is a cross-sectional view showing the embodiment of the bingo and storage using the present invention and the inside and outside air circulation, Figure 2 is a detailed perspective view of the geothermal absorption corrugated pipe with a through hole installed.
Bingo and bins that store ice underground Under the bingo bingo and reservoirs using nature to store agricultural products by circulating cold and cold or geothermal and air currents on the convection principle,
As shown in the drawing, an outside air inlet chamber 30 for inflowing outside air, which is a facility for circulating outside air inside a convection car, is installed on the ground, and the outside is an outside air inlet 95 installed through the outside air inlet room 30. The outside air is purged as the outside air is introduced into the filter layer through the cylindrical filter layer side installed inside and the outside air is purified and the outside air is purged as it enters the outside air transfer pipe 20 which is connected to the inside of the cylindrical filter layer and is buried underground. It is transferred to the pipe 20.
In addition, the outside end pipe connected to the other end of the storage unit 88, the outside air transported to the outside air transport pipe is introduced into the storage, while inside the storage tank warm air updraft by the convection convection upwards, the bet transport pipe (22) Rising air flow is transferred to the bet and the air flow pipe 22 is connected to the other end and the lower air discharge pipe (90) below the air flow up to the bet discharge pipe (90) and the air discharge pipe installed in the air discharge pipe (2) 99) That is, the outside air inlet chamber 30, the outside air inlet 95 and the inside of the air outlet pipe 90, the air outlet 99 installed up and down height difference, that is, the temperature difference inside the reservoir higher than the outside by the temperature difference up as above The outside air inlet chamber 30 is connected to the outside air storage inlet 95 connected to the reservoir by the updraft wind power circulated to the internal air outlet 99. As the outside air flows into the outside air inlet through the upstream airflow wind power in which the upstream air is circulated by convection, the outside air flows in the convection lane as described above.
In addition, as described above, the inside of the store is not circulated in the inside of the store and the circulation of the outside air in the convection car is performed because the inside diameter of the store is larger than the outside air conveying pipe 20 that transfers the outside air introduced into the inside of the store. As the amount of outside air flows inside, the high temperature rise airflow is circulated upward by the convection.
In addition, the entire internal air circulation as described above is caused by the temperature difference between the lower air inlet 95 and the upper air outlet 99 due to thermal equality, so that the temperature around the upper air outlet 99 is lower than the outer air inlet 95. The external circulation in the convection car is made by the principle of thermal equality, where the lower temperature is continuously circulated to the upper and lower temperature layers until the temperature is the same as the temperature. The internal and external air may be circulated by a separate power, without being limited to the above method.
In addition, the inside of the bin and the bingo 80 is connected to each other through the through hole 98 is stored in the bin by the convex cold air is conveyed downward by the convection to the reservoir is stored at a low temperature and the bingo is stored above the bingo An inclined passage 25 is installed to the ground below the inside of the air discharge pipe to transfer the ice stored in the bingo to the inclined passage 25 and to discharge the warmth in the bingo, so that the warmth does not exist inside the bingo and is stored inside. Melting is prevented.
In addition, the inclined work table 500 for producing ice and transporting the ice to the inclined passage is installed through the door 60 installed on the side under the bet discharge pipe, and in the inclined work table, a prefabricated container which is easy to assemble and disassemble is produced. The ice produced at the inclined work platform using the sub-zero temperature can be easily used, and the ice produced using the inclined work surface of the inclined work table 500 slides, and the ice produced through the door 60 installed on the side under the bet discharge pipe 90 is It is transported while sliding to the inclined path slope and stored in the bingo by a manpower one by one on the insulation base 33 on the bottom of the bingo.
In addition, the internal air discharge pipe and the outside air inlet chamber or the internal and external air is circulated to each of the open and close controller 10 for opening and closing the internal air circulation is installed to be able to use the appropriate external air circulation to be circulated properly. Opening and closing control of the air flow is a simple function of the open and close control of the commonly used method is used.
In addition, between both air transfer pipes 20, the ground heat absorption wrinkle tube 93 that produces geothermal heat in the underground ground layer is connected to the ground through the through hole 35, through which holes are installed between the outside of the ground heat absorption corrugated pipe 93. Geothermal heat and moisture in the layer flows into the geothermal absorption wrinkle tube (93) inside and transported together with the outside air circulated inside the reservoir as well as storage of water stored in the soil layer circulated inside the reservoir with geothermally unchanged 4 iron Long-term storage is achieved while preventing drying.
In addition, the outside air transfer pipe 20, air transfer pipe 22, air discharge pipe 90, or geothermal absorption wrinkle tube (93) is a material that does not conduct cold or hot air to the general pipe or cold heat conductive metal or PVC It is not limited to the above materials in terms of materials, and can be installed and used at the user's convenience. Particularly, when the geothermal heat absorption wrinkle tube 93 uses heat conducting material, the ground inside the ground layer is conducted to the side of the pipe so that the ground is conducted to the side. As it is conducted to the air circulated to, it is effective to increase the geothermal production in the soil layer.
The cellar 88 is a cold air conduction inner wall 77 is installed as a whole inside the cellar cold air conduction inner wall 77, the outer side of the heat insulating outer wall 70 is installed as a whole outside the cold air conduction inside the cellar in cold weather during winter cold weather inner wall While refrigeration (77) and also discharge the internal warmth to the outside to cool the entire cold air conduction inner wall (77) inside the reservoir to store the goods stored inside at a low temperature and the outer insulation outer wall 70 is installed to the outside The internal cold air is preserved for a long time by blocking the conduction of the inside of the reservoir of the ground in the underground ground layer. All the circulation is controlled by the open / close controller 10 installed in the outside air circulation. You lose.
The cold air conduction inner wall 77 is a natural stone or ocher brick, which is a processed material, and the natural stone and the ocher wall itself contain moisture to increase the cold air conductivity due to high cold air conductivity, and also to materially cool the phase change material or cold air. They are all used to include it. In addition, the heat insulating outer wall 70 is a heat shield using a heat insulating material or a natural heat insulating material and an air layer generally used to block conduction of the warmth in the ground layer into the reservoir, and thus, the detailed description thereof will be omitted. .
In addition, a drain pipe 24 is installed below the reservoir 88 so that the water generated by the bingo cold and the reservoir warmth is drained to the ground layer, and the outside air transport pipe 20 is connected to the drain pipe 24 as shown in the drawing. As outside air flows in.
In addition, there is a ventilation shelf (38) is installed inside the reservoir to store the agricultural and marine products (50) is installed between the agricultural and marine products stored above the ventilation shelf as described above and the circulation of geothermal and moisture as well as the cold and cold air inside the agricultural and marine products long-term Storage takes place.
In addition, the reservoir 88 is a cold air conduction material is installed on the entire inner wall (77 ~ 70) to store the agricultural and marine products using the temperature in the underground geotechnical layer without the upper bingo cold air as described above. It is a cold-conducting material that is in contact with the ground layer where the proper temperature is maintained without change, that is, it is not well influenced by external outdoor air, and the ground heat in the ground layer is conducted inside the reservoir, that is, cold air is conducted from the outer surface of the cold-conducting material to the inside. The geothermal and moisture produced in the geothermal absorption wrinkle tube 93 together with the geothermal formed inside the reservoir is circulated into the reservoir along with the external air circulation, so that the agricultural and marine products can be stored using the geothermal temperature in the underground soil layer without cold bingo. .
In addition, the bingo cold circulated into the reservoir and the inside of the reservoir with a separate power up or down or up and down in the reservoir without discharging the outside to the outside, or both the air transfer pipe 20 is installed up and down the reservoir Connect the geothermal absorption wrinkle tube (93) between the outdoor air transfer pipes to reciprocate the internal bet inside the reservoir and the geothermal absorption wrinkle tube to continuously circulate 4 iron and water without change and to keep the internally stored aquatic marine products properly It can be stored for a long time by using excessive moisture, and also by internal circulation with external air inflow and internal air discharge along with internal air circulation, and by discharging harmful internal bacteria to internal moisture due to internal air circulation, it discharges internal internal goods that can corrupt the stored goods to the outside. It prevents the growth of harmful bacteria and uses the proper temperature and water in the soil layer The long-term storage is available.
In addition, the bottom of the reservoir is directly connected to the ground layer without a bottom wall, and further includes a natural stone layer and a sand layer over the natural stone layer installed below the floor. Long-term storage of the agricultural and marine products is made by circulating through the air spaces formed therebetween and circulating between the agricultural and marine products stored in the storage as described above.
In addition, the bet transfer pipe 22 and the bet discharge pipe 90 can be used as a back roof and wall duplex space 96 connected to the bet discharge pipe 90 and the bet discharge pipe installed to the roof top of the building 200 as shown in the drawing It is installed along with the inclined passage where ice is transferred to bingo as above by installing the air discharge pipe 90 to the upper part of the roof above the building and installing the facility installed inside the air discharge pipe 90 installed above the ground outside the air discharge pipe. Bingo and storage inside the airflow can be discharged through the building wall and the roof duplex space to the air outlet 99 installed in the air outlet pipe 90 installed to the upper end of the roof.
The bingo 80 is a heat insulating outer wall 70 is installed in the entire outer side of the cold air conduction inner wall side 77 is installed inside the bingo and the bottom through hole 98 is installed in the center of the bingo bottom through the bottom In the guro, when the open / close controller 10 is opened and the open / close controller 10 is opened, the cold air in the bingo is circulated downward into the bin, and the warm air flow is introduced into the bingo by convection, and the warm air flow introduced into the bingo is above the bingo. While opening and closing the regulator installed into the inclined passage 25 is discharged to the stomach air outlet 99 through the stomach air discharge pipe (90).
In addition, the inner and outer materials of the bingo are installed together with the reservoir, and the open / close controller 10 installed inside the inclined passage 25 into the bingo in winter to circulate the cold air into the bingo to cool the cold air conduction inner wall 77. While the internal warmth is also discharged to the outside through the convex passage 25 while cooling the entire cold air conduction inner wall 77 inside the reservoir to store the ice stored therein for a long time. Blocking the internal conduction of geothermal reservoirs in the underground subterranean layer as in the above reservoirs, the ice is stored for a long time and also discharges the internal warmth to the outside while inflowing sub-zero cold air into the bingo with the ice stored therein. Repeating the method, the inside of the bingo is cooled to low temperature, while the inside of the bingo is completely cooled, with the inner layer frozen together with the surrounding insulation layer. You can store the sound for a long time
In addition, if the warmth in the reservoir is introduced into the bingo while the cold air is lowered to the inside of the lower reservoir as described above, the warmth in the bingo does not exist while the internal warmth is discharged to the outside, thereby preventing the internal ice from melting. Ice can be stored for a long time.
In addition, the bingo and the storage bins are installed separately, or on the contrary, the bingo can be installed on the ground to be used as a bingo underground, as described above without installing the bins below the bingo as the bingo is stored separately to store the ice stored ice It is used in low season and the storage is also installed separately as above, without bingo cold air as described above to circulate geothermal and moisture inside the storage with the internal air circulation to store the agricultural and marine products, respectively, or to separate places By installing each of them, the bingo cold air can be reciprocated between the reservoir and the bingo by using separate power,
On the contrary, the storage bin 88 can be used by installing the bingo above the ground. In this case, the ground building 200 is used as the storage bin and the basement 2 floor 220 is used as the bingo, as shown in FIG. Bingo cold air is circulated through the double-walled wall to the upper duplex space by separate power, and the cold air is circulated from the top of the building storage 88 to the separate pipes. By circulating down the bingo again above the storage bins as described above can be stored in the bingo agricultural and seafood products stored in the bin,
In addition, circulating internal and external air into the reservoir with underground geothermal and moisture inside the ground floor reservoir to store agricultural and marine products, or to discharge the bet to the outside as described above, the inside of the reservoir with the separate power is continuously kept inside the reservoir. While circulating circulating inside the geothermal absorption wrinkle tube 93 and also circulation inside and outside, the underground geothermal and moisture can be circulated into the cellar as described above so that the agricultural and marine products can be stored and used as the four-iron large unchanged geothermal temperature.
In addition, the inclined passage (25) installed in the basement is the elastic barrier plate 27 is installed to the end of the inclined passage in the bingo, the ice packed is slipped down and the friction is eased by the plate back spring installed as the elastic barrier plate Stopped without noise and stored on the ventilation insulation support 33 installed on the floor one by one inside the bingo, when all the ice is stored, the sealed ice is stored in the surrounding space except the bottom and stored with insulation etc. The cold air is circulated downward into the storage bin with the opening / closing controller 10 installed as the through hole 98 below to operate the storage bin as the bingo cold bin.
In addition, the opening and closing controller 10 is installed inside the inclined passage 25 to open and control the warmth and the outside air circulation in the bingo to open and close the cold air in the bingo opening and closing controller 10 to circulate downward to the storage bin below. While the bingo cold air is lowered by the convection while the warm air in the reservoir rises into the bingo through the opening / closing regulator 10 through hole, and stays in the ceiling above the bingo, opening and closing installed in the inclined passage 25. When the regulator 10 is opened, the rising air on the ceiling is discharged through the inclined passage to the intake outlet 99 on the bet discharge pipe 90 connected to the inclined passage so that there is no warm air inside the bingo to prevent melting of the ice inside the bingo. And the internal ice is stored for a long time, and the cold air downward to the storage area is transferred to the surrounding facilities, the inner wall, or the agricultural and marine products. The thereby weakened when the internal temperature increases again while circulating the cool air and warm as the bingo also be used within the warmth while discharging in the same manner as described above by storing the organ bingo ice and agricultural products within the reservoir.
In addition, the inclined work table 500 serves to pack and move the ice produced and produced ice, and one side is inclined at an appropriate inclination on the upper surface plane where wheels are installed below, and the packed ice slides to a designated place through the inclined surface. It is composed of the structure to become
In addition, the prefabricated container is configured to be easily disassembled and assembled with a plurality of ventilation holes installed on one side and four sides of the bottom, and the side is elastically configured to prevent the container from being damaged while expanding while ice is frozen. The four-sided side on the face is bent into a low-height shape with a low-height four-sided side. The four sides of the use side are assembled, and the standard plastic bag is built into the inside, and the water is built into the plastic bag. After that, natural ice is produced with low temperature. The ice produced is primarily packed with standard oil paper. After packing with oil paper, finish with oil paper again or finish with only primary oil paper. The use of paper serves to prevent the external moisture from adhering to the ice and melting the ice through the moisture. The final finish can also be finished with oil paper or insulation.
In addition, if the container is made of PVC material that does not conduct cold air, the ventilation hole is installed so that the cold air is conducted to the ventilation hole.
The present invention constituted as described above is not limited to the present configuration but can be used properly within the scope of the present technology, that is, vertically inclined passages or producing ice without the inclined work table 500 or producing ice on the ground. It is possible to produce and store the ice directly inside the bingo without packing or to store the whole without packing it with oil paper and insulation material.In particular, bingo and storage can be installed upside down or reversely, or installed separately. Each of them is used separately, and the storage is a ground building, and the bingo is installed by a method such as underground. The separate pipes or passages are installed to circulate the bingo cold air to the storage and operate the storage using the bingo cold air. Various variations are possible without departing from the idea It is obvious to those skilled in the art.

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1 is a cross-sectional view of the embodiment of the present invention bingo and storage using the natural and outdoor air circulation.
Figure 2 is a perspective view of the geothermal absorption corrugated pipe installed through holes in and out.
<Description of the symbols for the main parts of the drawings>

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0; Ice 10; Open / close adjuster
20; Air conveying pipe 22; Bet transfer pipe
24; Drain pipe 25; Slope
27; Resilient barrier plate 30; Inflow room
33; Thermal insulation base 35; Through hole

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38; Ventilation shelf 50; Farm products
60; Q. 61; Primary insulated door
62; Secondary insulating doors 70; Insulation outer wall
77; Cold conduction inner wall 80; bingo
88; Storage 90; Bet discharge pipe
93; Geothermal absorption corrugation tube 95; Outside air inlet
96; Duplex space 98; Through sphere
99; Bet outlet 100; Sun
200; Building 210; B1
220; Second basement level 330; surface
500; Tilt worktable

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Claims (31)

In the bingo and storage using the nature to store agricultural products by circulating the bingo cold air or geothermal heat and air flow on the basis of convection tea principle An external air inlet chamber 30 installed above the ground to clean external air from the internal filter layer by introducing external air into the external air inlet 95; An outside air transfer pipe 20 connected to the inside of the outside air inlet seal filter layer to transfer the purified outside air; A reservoir 88 connected downwardly with the other end of the outside air conveying pipe so as to circulate the upward air flow upward while the outside air inside the outside air conveying pipe flows down; A bet conveying pipe 22 connected to the reservoir to transfer an updraft in the reservoir; Bet discharge pipe (90) connected to the other end of the bet transfer pipe and discharges the upward air flow transferred from the bet transfer pipe to the upper bet outlet 99 through the inside; A bingo 80 connected above the bin to transfer cold air downward into the bin; An inclined passage (25) installed at an incline from the inside of the bingo to the ground below the inside of the air discharge pipe and discharging ice stored in the bingo and discharging warmth in the bingo; An inclined work table 500 which produces ice through the door 60 installed on the side of the air discharge pipe and transfers the ice to the inclined passage; Prefabricated container easy to assemble and disassemble to produce ice on the inclined workbench; Binge and storage using nature, characterized in that the air outlet pipe and the outside air inlet chamber or the outside air is installed in each of the circulating place and the opening and closing controller 10 for opening and closing the outside air circulation is installed. According to claim 1, The external air transport pipe 20, Bingo and storage using nature, characterized in that the installation includes a geothermal absorption corrugated pipe (93) connected between both the outside air transport pipe is connected to the inside and outside through the through hole 35 installed in the underground ground layer. The method of claim 1, wherein the storage 88 is A cold air conduction inner wall 77 installed throughout the reservoir; A heat insulation outer wall 70 installed on the outside of the cold air conduction inner wall side; A drain pipe 24 installed below the reservoir 88 so that water generated by the bingo cold and the reservoir warmth is drained to the ground layer; And Bingo and storage using the nature, characterized in that the ventilation shelf (38) is installed to raise the agricultural and marine products (50) inside the storage. The method of claim 3, wherein the reservoir 88, Cold air conduction material installed on the inner wall (77 ~ 70) as a whole: and Bingo and storage using nature, characterized in that the bottom of the reservoir is connected to the ground layer further comprises a natural stone layer is installed as a floor and a sand layer installed over the natural stone layer. According to claim 1, The bet conveying pipe 22 and the bet discharge pipe 90, Building 200 is characterized in that it further comprises being replaced by a pleated exhaust pipe (90) installed in the top of the roof and the rear roof and wall duplex space (96) connected to the pleated exhaust pipe, bingo and storage using nature. The method of claim 1, wherein the bingo 80, A cold air conduction inner wall 77 installed throughout the bingo; A heat insulation outer wall 70 installed on the outside of the cold air conduction inner wall side; A bottom through hole installed at the center of the bingo floor; And Bingo and storage using nature, characterized in that the opening and closing regulator 10 is installed to include the bottom through hole. The method of claim 4 or 6, wherein the bingo and storage, Bingo and storage using the nature, characterized in that each installed separately or the bingo is installed above the ground above the ground. The method of claim 1, wherein the underground slope passage 25, An elastic barrier plate 27 installed at an end portion of the bingo inclined passageway; And Bingo and storage using nature, characterized in that the installation is installed inside the inclined passage including an opening and closing controller 10 for opening and closing the warmth and external air circulation in the bingo. The method of claim 1, wherein the prefabricated container, Bingo and storage using nature, characterized in that the side is elastically composed of prefabricated with a plurality of ventilation holes on the bottom 1 side and 4 sides. delete delete delete delete delete delete delete delete delete delete delete delete delete delete delete delete delete delete delete delete delete delete
KR1020080088049A 2008-09-08 2008-09-08 A device to store ice and food with the aid of nature. KR101065388B1 (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
KR1020080088049A KR101065388B1 (en) 2008-09-08 2008-09-08 A device to store ice and food with the aid of nature.
PCT/KR2009/005046 WO2010027227A2 (en) 2008-09-08 2009-09-07 Natural icehouse and store

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
KR1020080088049A KR101065388B1 (en) 2008-09-08 2008-09-08 A device to store ice and food with the aid of nature.

Publications (2)

Publication Number Publication Date
KR20100029313A KR20100029313A (en) 2010-03-17
KR101065388B1 true KR101065388B1 (en) 2011-09-21

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101356977B1 (en) 2012-10-30 2014-02-04 구자호 A device to install dry rooms and storage houses for produce utilizing circulation of indoor and outdoor air and ground temperature
KR101482995B1 (en) 2012-10-10 2015-02-10 구자호 air-conditioner and storehouses for farm products with basements and circulation path in ground, the inside or outside air circulating by the path

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Publication number Priority date Publication date Assignee Title
JPS6143945A (en) 1984-08-03 1986-03-03 清水建設株式会社 Energy saving type constant temperature and humidity storagewarehouse in rock
JPH01300176A (en) * 1988-05-27 1989-12-04 Shimizu Corp Underground low temperature storage
JPH0375465A (en) * 1989-08-14 1991-03-29 Teruhiko Kito Method and apparatus for icemaking and storage of ice
KR20000056963A (en) * 1999-08-04 2000-09-15 문동신 An underground storehouse

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JPH07243740A (en) * 1994-03-07 1995-09-19 Kanchi Gijutsu Kenkyusho:Kk Low-temperature storage apparatus

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Publication number Priority date Publication date Assignee Title
JPS6143945A (en) 1984-08-03 1986-03-03 清水建設株式会社 Energy saving type constant temperature and humidity storagewarehouse in rock
JPH01300176A (en) * 1988-05-27 1989-12-04 Shimizu Corp Underground low temperature storage
JPH0375465A (en) * 1989-08-14 1991-03-29 Teruhiko Kito Method and apparatus for icemaking and storage of ice
KR20000056963A (en) * 1999-08-04 2000-09-15 문동신 An underground storehouse

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101482995B1 (en) 2012-10-10 2015-02-10 구자호 air-conditioner and storehouses for farm products with basements and circulation path in ground, the inside or outside air circulating by the path
KR101356977B1 (en) 2012-10-30 2014-02-04 구자호 A device to install dry rooms and storage houses for produce utilizing circulation of indoor and outdoor air and ground temperature

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WO2010027227A3 (en) 2010-07-15
WO2010027227A2 (en) 2010-03-11
KR20100029313A (en) 2010-03-17

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