EP3019393A1 - Groupe d'alimentation électrique, système d'alimentation électrique ainsi que véhicule nautique équipé d'un groupe d'alimentation électrique ou d'un système d'alimentation électrique - Google Patents

Groupe d'alimentation électrique, système d'alimentation électrique ainsi que véhicule nautique équipé d'un groupe d'alimentation électrique ou d'un système d'alimentation électrique

Info

Publication number
EP3019393A1
EP3019393A1 EP14741260.5A EP14741260A EP3019393A1 EP 3019393 A1 EP3019393 A1 EP 3019393A1 EP 14741260 A EP14741260 A EP 14741260A EP 3019393 A1 EP3019393 A1 EP 3019393A1
Authority
EP
European Patent Office
Prior art keywords
power supply
unit
supply unit
internal combustion
combustion engine
Prior art date
Legal status (The legal status 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 status listed.)
Granted
Application number
EP14741260.5A
Other languages
German (de)
English (en)
Other versions
EP3019393B1 (fr
Inventor
Henning Kuhlmann
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Becker Marine Systems GmbH and Co KG
Original Assignee
Becker Marine Systems GmbH and Co KG
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 Becker Marine Systems GmbH and Co KG filed Critical Becker Marine Systems GmbH and Co KG
Publication of EP3019393A1 publication Critical patent/EP3019393A1/fr
Application granted granted Critical
Publication of EP3019393B1 publication Critical patent/EP3019393B1/fr
Priority to HRP20191135TT priority Critical patent/HRP20191135T1/hr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02BINTERNAL-COMBUSTION PISTON ENGINES; COMBUSTION ENGINES IN GENERAL
    • F02B63/00Adaptations of engines for driving pumps, hand-held tools or electric generators; Portable combinations of engines with engine-driven devices
    • F02B63/04Adaptations of engines for driving pumps, hand-held tools or electric generators; Portable combinations of engines with engine-driven devices for electric generators
    • F02B63/044Adaptations of engines for driving pumps, hand-held tools or electric generators; Portable combinations of engines with engine-driven devices for electric generators the engine-generator unit being placed on a frame or in an housing
    • F02B63/048Portable engine-generator combinations
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63JAUXILIARIES ON VESSELS
    • B63J3/00Driving of auxiliaries
    • B63J3/04Driving of auxiliaries from power plant other than propulsion power plant
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63BSHIPS OR OTHER WATERBORNE VESSELS; EQUIPMENT FOR SHIPPING 
    • B63B25/00Load-accommodating arrangements, e.g. stowing, trimming; Vessels characterised thereby
    • B63B25/002Load-accommodating arrangements, e.g. stowing, trimming; Vessels characterised thereby for goods other than bulk goods
    • B63B25/004Load-accommodating arrangements, e.g. stowing, trimming; Vessels characterised thereby for goods other than bulk goods for containers

Definitions

  • the invention relates to a portable, compact power supply unit, a power supply arrangement and a watercraft with a power supply unit and / or with a power supply arrangement.
  • the publication DE 10 2008 031 698 A1 discloses a buoyant harbor power supply - a so-called "power barge.”
  • components of a power supply or other supply or disposal facilities can be combined in a modular manner on a barge or a lighter
  • the components or modules are preferably designed as transport containers, the task being to prevent the formation of soot and carbon dioxide by ships lying in the harbor, in particular seagoing vessels, by replacing them with an in-house production of energy with the marine machinery now from the "Power Barge” are fed environmentally friendly, of which the latter LNG is used as fuel.
  • the individual components of the port power supply described are combined in any variation on the lighter combined.
  • Such a equipped lighter can be used for different supply and / or disposal tasks.
  • a disadvantage of such "power barges” is the need to provide a separate berth for the lighter and a line connection between the lighter and the ship to be supplied.
  • an energy generating device in which a generator including driving gas turbine is housed in a standard container.
  • Other standard containers include supply and exhaust air devices, cooling devices, electrical power and control directions, a fuel assembly and a fuel tank.
  • the containers are separately portable and join together to operate the power plant.
  • For the drive of the gas turbine light fuel oil is preferably provided.
  • This energy generating device is used for energy supply on offshore platforms and ships, in particular on refrigerated container ships. A particularly low-emission operation is not mentioned or provided in the presentation of this document.
  • the document US 7 122 913 B2 describes a modular power supply whose components are accommodated in a standard container transportable.
  • the container contains a fuel-powered engine, a generator, an electrical control and a cable drum.
  • the fuel tank is set up separately.
  • the power supply is designed to provide power to the port or docked ships to reduce air pollution. This is a list of power supply on land, z.
  • a forklift truck or a truck can be implemented and transported. This results in the need to provide a separate location for the power supply on the one hand and the fuel tank on the other hand and a line connection between the power supply and the ship to be supplied.
  • Document US 3 602 730 discloses a transportable power supply installed in a freight container for providing electrical energy to a plurality of further freight containers, e.g. B. refrigerated container, described on board a container ship.
  • the power supply contained in each container at least one diesel engine, at least one coupled generator and at least one permanently installed fuel tank and is provided for supplying energy to the freight container during a voyage, but not for connection to an electrical system of the container ship.
  • This is to obtain a more effective power supply of the freight container, as it is possible by connecting these freight containers to the electrical system of the container ship.
  • the built-in fuel tanks are sized so that the fuel supply is sufficient for the voyage. In the described power supply refueling for operation as a harbor power supply is too cumbersome. Also, the diesel fuel no longer meets the stricter environmental regulations for operation in the port.
  • the publication WO 2010 019 158 AI shows a housed in an ISO container and mounted on a railway car chassis power generation module comprising the engine, generator, fuel tank and power supply.
  • the Verlastung on railway cars is preferred here because of the heavy weight of the power generation module.
  • the fuel supply can be done via an externally connected tank car.
  • the invention has the object to provide a power supply unit that is easier, faster and more flexible to handle and thus offers greater ease of use, especially when used on ships, preferably container ships.
  • a portable and compact power supply unit for supplying a watercraft, in particular an electrical system of the vessel, with electrical energy and in particular for placement on the vessel, containing in a transport container or more, interconnectable transport containers, wherein the transport container or more Transport containers can be transported as a single, coherent unit: at least one internal combustion engine (103) operable with gas, in particular natural gas,
  • At least one of the at least one internal combustion engine (103) driven generator (103) for generating electricity at least one control device for the at least one internal combustion engine (103) and / or at least one control device for the at least one generator (103), at least one fuel processing device for at least an internal combustion engine (103) and / or at least one exhaust gas purification device (109; 209) for the at least one internal combustion engine (103), and
  • gas in particular natural gas, which is preferably present as a liquid gas, particularly preferably as LNG.
  • the invention thus provides a power supply unit which is designed to supply a watercraft, in particular an electrical system of the watercraft, with electrical energy.
  • the power supply unit can preferably be arranged directly on board the watercraft to be supplied with electrical energy, ie placed. If the power supply unit is also intended to supply other consumers located outside the vessel with electrical energy, it is advantageous for the power unit to be installed on that vessel which is mainly, ie at least supplied with the majority, of the energy supplied by the power unit. In this way, complex connections are avoided outboard this vessel. Preference is given to an exclusive supply of power to a single vessel, as will be described below. In principle, it would also be possible that the power supply unit is additionally designed to supply consumers outside of watercraft.
  • a watercraft located on the water or intended to stay on or in the water or trained, preferably buoyant, but also fixed unit or plant that is z.
  • a ship but also an offshore platform, among others;
  • a seagoing vessel particularly preferably a container seagoing vessel or container ship, is hereby designated, whereby this exemplary entry is by no means to be understood as conclusive.
  • transport container generally includes any support structure suitable for carrying the components of the power supply unit. These may preferably be containers or freight containers or container-like or freight container-like carrier structures, which are used in particular in container shipping.
  • the transport containers may be closed containers or other containers.
  • transport container also includes open or partially open support structures, such as support frames that are not or only partially covered. Also, in the case of multiple transport containers, different or identical transport containers can be combined with each other.
  • Transport containers are particularly advantageous in the present context, such containers that are commonly used for the transport of goods on container ships, or at least the dimensions or at least some of the dimensions of the usually used on container ships, especially standardized containers, such as ISO containers have.
  • the term standardized transport container in the present context is to be understood as a carrier structure which has the dimensions of standardized containers, in particular for container shipping. The dimensions may be the same in terms of footprint, height or a combination of both with the standardized containers.
  • the individual, aforementioned components of the power supply unit are arranged within a transport container or within a plurality of interconnected transport containers.
  • One transport container ner or the plurality, each other, in particular fixed, connected transport containers are designed such that they can be transported as a single, contiguous unit.
  • the plurality of transport containers are interconnected, at least during transport, such that they are transportable as a single unit as a whole.
  • the plurality of transport containers are also connected during operation, particularly preferably permanently.
  • the transport container and / or the plurality of transport containers are designed such that they can be transported with standardized lifting equipment, in particular standardized lifting device for container ports, such as gantry cranes and / or van carriers.
  • the one transport container or the plurality of interconnected transport container form a single unit that transported as a whole to the watercraft, or to other destination location, deposited there and operated and taken out of service as a whole from the watercraft again and z. B. on a quay quay, can be parked until the next use or will.
  • the power supply unit is compact.
  • the entire power supply unit is arranged exclusively within the transport container or within the plurality of interconnected transport containers.
  • any type of gas-operated engine for example a gas turbine or the like, can be used in the power supply unit.
  • the internal combustion engine can be operated exclusively with gas.
  • the internal combustion engine is set up for a dual operation in which the internal combustion engine can be operated with gas and additionally with another fuel, in particular diesel.
  • the internal combustion engine is operable with natural gas.
  • the internal combustion engine is preferably also with liquid gas, particularly preferably with LNG (so-called "liquid natural gas”), operable Accordingly, preferably low-emission fuels are used.
  • the power supply unit is designed as a gas-operated cogeneration plant (abbreviated: CHP), whereby a very economical fuel consumption and high overall efficiency of the power supply unit can be achieved because in addition to the generated electrical energy in addition, the waste heat of the internal combustion engine as heat energy to the consumer generated electrical energy or to another consumer.
  • CHP gas-operated cogeneration plant
  • the invention thus enables a simple and inexpensive operation as well as a simplification, acceleration and flexibilization of handling and transport of the power supply unit and thus offers a greater ease of use, especially when used on watercraft, preferably on ships, particularly preferably on container ships.
  • a cooling device in particular for generating a cooling circuit for the internal combustion engine, advantageously comprising a fan, a control cabinet, in which in particular the control device of the internal combustion engine and / or the control device of the generator are arranged, means for adjusting the frequency, the current intensity and / or the voltage, a supply air system for supplying combustion air to the internal combustion engine, fire extinguishing agents, batteries, in particular for intermediate storage of the generated electricity, an exhaust system, and / or Vornnenesch for electrical conductors, in particular a cable drum.
  • the exhaust gas purification device may advantageously comprise a silencer.
  • the cable drum may comprise several, in particular two, cables.
  • the power supply unit comprises a first unit (101, 201) forming a fixed unit and at least one second unit (111) forming a further fixed unit, wherein the first unit (100, 201) comprises the at least one internal combustion engine (103), the at least one generator (103) which can be driven by the at least one internal combustion engine (103) for producing electricity,
  • At least one fuel processing device for the at least one internal combustion engine (103) and / or the at least one exhaust gas purification device (109; 209) for the at least one internal combustion engine (103), in particular summarizing, and wherein the second assembly (111) the at least one fuel storage device (112).
  • a unit constituting a fixed unit constitutes a fixed unit which, as a whole, is transported, stored and operated there, and in general taken out of service after being taken out of service Watercraft removed again and z. B. is parked on a quay quay until the next use.
  • Such a unit may also, for. B. a simplified construction and a reduced, standard
  • the term permanent structure here means that this group of containers for operation, transport and handling always remains connected.
  • building units in the sense of the word used here for operation, transport and handling are not modularly dismountable structures, as will be described in more detail below, but always form a single, fixed, unmodified unit for operation, transport and handling.
  • connections of the containers in the group of containers mentioned can be basically detachable.
  • two or more of the containers may be welded together to form said group, but e.g. B. also be screwed, but a loosening of such fittings during normal operation and transport or the intended use of the power supply unit is not provided, but would be displayed for maintenance and repair purposes.
  • two units are provided for the formation of the power supply unit, and no more than these two units are needed for it. Operation, transport and handling of the power supply unit are thereby significantly simplified.
  • the first and the second structural units are detachable from one another during operation and / or for transport and handling and can be docked to one another.
  • two or more second units may be provided, each having a fuel storage device.
  • the first and the at least one second structural unit are arranged together in a transport container or in a plurality of interconnected transport containers.
  • the term docking refers to the production of a mechanical and functional connection between two structural units.
  • the units that dock together in this sense are mechanically stable for a foreseeable period, especially for a period in which an operation of the power supply unit to be made, coupled together or connected.
  • the docking preferably also includes establishing a connection between the at least one internal combustion engine in the first structural unit and the at least one fuel storage device in the second structural unit for feeding the at least one internal combustion engine with fuel from the at least one fuel storage device.
  • the second structural unit comprising the fuel storage device can be easily detached from the first structural unit when the fuel storage device is empty.
  • a further second structural unit with a full fuel storage device can be docked to the first structural unit in a simple manner.
  • the fuel supply in the power supply in particular exclusively, by replacing the second units with the fuel storage devices done.
  • the fuel storage devices but also by external tanks, eg on trucks, refilled. This is particularly suitable for versions in which the first and the second structural unit are firmly and non-detachably connected to each other.
  • the second structural unit preferably comprises exclusively the at least one fuel storage device and, moreover, no further components of the power supply unit.
  • the units are designed both individually and optionally both docked to each other in predetermined grid-Staunostien standardized transport container.
  • the units of the power supply unit can then be stowed together with other Transportcontainern same pitch together or at least on such a fit, fit into the standardized recording devices such.
  • brackets, shafts, pedestals, for the stowage of transport containers ie in container mounts on the means of transport, here the watercraft, especially on the ship, and let there after Demand for any point easily, quickly and safely off or implement as it is favorable or necessary for the energy supply of the vessel or the means of transport or for a loading and / or extinguishing work.
  • those of ISO transport containers are particularly preferably selected as predetermined grid storage dimensions.
  • the first and the second structural unit are advantageously configured both individually and optionally both docked to one another in predefined grid storage dimensions of ISO transport containers. Due to the large, worldwide distribution of such transport containers and adapted means of transport or means of handling such a designed power supply unit is flexible and universally applicable.
  • the first structural unit comprises a first spatial area, which has the shape of a, in particular standardized, transport container with a length dimension corresponding to a first grid Stausch, and in which at least the at least one internal combustion engine and the at least one of the at least one internal combustion engine drivable generator for generating electricity are arranged.
  • This first space area is preferably formed directly by such a standardized transport container, particularly preferably an ISO transport container, resulting in a simple, fast, proven and cost-effective production. In addition, this ensures good dust retention and flexible handling during transport and operation.
  • the second structural unit in which the at least one fuel storage device is arranged, has the form of a standardized transport container with a length dimension which corresponds to a second screened foam dimension.
  • a standardized transport container with a length dimension which corresponds to a second screened foam dimension.
  • the first unit comprises a second space area, which has the shape of a standardized transport container with a length dimension corresponding to a third grid, and in which at least the at least one fuel processing device and / or the at least one exhaust gas purification device for at least an internal combustion engine and / or a cooling device for cooling the internal combustion engine and / or a Vorigenesch for electrical conductors, in particular a cable drum, is arranged.
  • the first and the second space region of the first assembly are preferably in the manner described above permanently, ie forming a fixed unit connected to each other, so for transport, handling and operation not further modularly separable, and are thus always transported together, handled and operated.
  • the third grid may, but is not necessarily, be a third grid jam in the definition given above, according to which standardized transport containers are manufactured and approved in a number of grid dimensions, but of the totality of these grid dimensions only a limited selection as grid jam dimensions which transport containers are stowed on the means of transport, is used. This secures the mentioned advantages in the production also for the second space area of the first unit; the second room area can be z. B.
  • the second spatial region is arranged above the first spatial region.
  • the second room area is mounted on the first room area.
  • the second structural unit can be arranged adjacent to the second spatial area of the first structural unit and the sum of the second grid dam and the third grid size is less than or equal to the first grid dam.
  • a total length of the second structural unit and the second spatial region of the first structural unit after docking of the second structural unit to the first structural unit measures at most, preferably as much as the length of the first spatial region of the first structural unit.
  • a closed power supply unit advantageously results in an arrangement of standardized transport containers in which, in a preferred first container, which forms the first spatial region of the first structural unit and in a preferred example a 40-foot container according to ISO Norm is, the at least one internal combustion engine, preferably an engine, and the at least one genera- are housed for power generation.
  • a second container arranged thereon preferably a 20-foot container according to the ISO standard, which is fixedly connected to the first container and forms the second space area of the first unit, is as a preferred example as the at least one fuel processing device and / or at least an exhaust gas purification device for the at least one internal combustion engine installed a so-called "gas processing unit" (GPU) .
  • the space then left on the first container is provided for a third container, which can be interchangeably arranged there, forms the second unit and a tank
  • the second assembly with the tank for the fuel is arranged asymmetrically on the first assembly 16.
  • the GPU preferably comprises an evaporator means.
  • This design makes it particularly well, the entire power supply unit or even the individual units with standardized device such.
  • the first unit comprises a second, subdivided into two or more subspace areas space area, each of the subspace areas per se preferably has the shape of a standardized transport container with a length dimension corresponding to a fourth, fifth, etc. pitch, and wherein at least one of the at least one fuel processing device and / or the at least one exhaust gas purification device for the at least one internal combustion engine and / or a cooling device for cooling the internal combustion engine and / or a retaining means for electrical conductors, in particular a cable drum, is preferably arranged in at least one of the subspace regions.
  • the statements concerning the one-part second spatial region apply to the properties and advantages of each of the partial spatial regions.
  • the fourth and / or the fifth, or possibly further grid dimension again grid ram dimensions, ie a fourth or a fifth grid-Stauties be; however, this is not mandatory.
  • the first space area and the partial space areas of the second space area of the first building unit are connected to one another in a fixed unit, as is also the case for the one-piece second space area.
  • the subspace regions of the second spatial region are advantageously arranged above the first spatial region, so that here too high mechanical strength and a favorable center of gravity result.
  • the second structural unit can be arranged between the partial space regions of the second spatial region of the first structural unit and the sum of the second, fourth and fifth grid dam dimensions smaller than or equal to the first grid dam mass.
  • the second structural unit with the at least one fuel storage device ie the tank for the fuel
  • the second structural unit is arranged substantially or at least almost centrally or symmetrically on the first spatial area of the first structural unit and thus the entire power supply unit, flanked on both sides by at least one of the subspace regions of the second spatial region of the first structural unit.
  • the second structural unit is arranged eccentrically on the first spatial region of the first structural unit, whereby the subspace region (s) to one side of the second structural unit is narrower than the subspace region (s) to the other side of the second structural unit.
  • the individual components of the power supply unit can for example be arranged to each other such that the components interconnecting lines can be as short as possible, so that the space required for this is minimized.
  • the first structural unit alone, without the second structural unit being docked can be stacked particularly simply, universally and safely with other standardized transport containers, in particular those with matching grid congestion.
  • the two subspace regions of the second spatial region of the first structural unit are each designed to be smaller than 20-foot containers, in particular designed as an approximately 10-foot container, ie. H. the fourth and fifth pitches are each less than 20 feet, more preferably 10 feet each), and the first space portion of the first unit is again formed as a 40 foot ISO standard container.
  • the two smaller (especially 10 foot) containers are placed flush with each of the ends on the 40 foot container, leaving a space for a second assembly in the form of a 20ft container between them.
  • Such a second unit in the form of the 20-foot container can be placed on the first unit arbitrarily within the limits of the load conditionally permissible stack height more 40-foot containers, even the placement z. B. another 40-foot container and then z. B. two 20-foot containers or other combinations are possible.
  • the aforementioned containers are transport containers in the sense of the present invention, i. Carrier structures having the said dimensions. This also applies to the below-mentioned containers with dimensional designation.
  • the power supply unit is a, in particular pluggable and / or designed in the manner of a coupling, connection device for passing fuel from the at least one fuel storage device of the second unit to the first unit, wherein the pluggable connection device is designed for at least partially automatic production a connection for the passage of fuel, in particular when docking the second unit to the first unit.
  • the compound in question is preferably in a kind of a flexible hose coupling formed. Such a connection can be formed completely automatically during docking, but also under (partial) manual operation by an operator.
  • the power supply unit may comprise a coupling device, in particular a dry clutch, for producing the docking between the first and second structural units.
  • the coupling device may also include valves.
  • the power supply unit of the at least one internal combustion engine fuel can be fed exclusively from the fuel storage device.
  • the fuel source used here preferably exclusively the second unit; Further fuel sources are not required in the operation of the power supply unit in this embodiment and deliberately not used.
  • no further line connections for transporting the fuel to the power supply unit are required, neither aboard the vessel nor outboard. This also simplifies the operation of the power supply unit.
  • a further embodiment of the power supply unit is characterized by, in particular in the first unit arranged, electrical connection means for connecting the power supply unit with at least one consumer of electrical energy generated in the power supply unit electrical system of the vessel to be supplied.
  • These electrical connection means are preferably formed with a cable drum arranged in the first spatial region of the first structural unit with a connection cable.
  • the cable drum is arranged to achieve the shortest possible power lines in the vicinity of the at least one generator for generating electricity. The entrainment of these connection means in the power supply unit increases their operational readiness substantially, since not separately appropriate cables must be held and provided on the watercraft to be supplied.
  • the consumer is advantageous in the first place, preferably exclusively, the on-board network of the vessel to be supplied, thereby making it possible to decouple its energy from onboard power generation facilities, such as marine-powered generators, so that the machinery of the vessel can be completely disabled.
  • Other consumers eg. B. in a cargo of the vessel such. B. refrigerated containers, can be optionally additionally connected to the power supply unit.
  • These additional consumers are preferably arranged on board the same watercraft, on which the power supply unit is arranged. Therefore, the power supply unit is particularly preferably designed for feeding at least one electrical system of a ship during a harbor lay time.
  • the power supply unit preferably completely takes over the supply of the vehicle's electrical system, in particular in the harbor, the power supply can be very simple, regardless of the individual circumstances of the machinery on the vessel during the docking time, only by the power supply unit environmental standard, in particular exhaust gases be respected. Therefore, the power supply unit is preferably used as a harbor power supply for ships, preferably seagoing vessels, particularly preferably for container ships, this power supply unit preferably only the electrical system of the (container) ship during the berth in the port fed and only in the second place, a supply of other, additional Consumer is provided during this time. In principle, however, it is also possible for the power supply unit to be carried on board the watercraft during the (sea) journey of a watercraft and to supply the electrical system and / or other consumers on board the watercraft with electricity.
  • a 40-foot container is provided as the basis in which the generator or generators, the motor or motors and preferably also the necessary connections are provided.
  • a drum is preferably housed here with a connection cable to a vehicle electrical system of a (container) ship.
  • Two 20-foot containers are provided side by side on the 40-foot container, with the fuel tank, preferably a gas tank for "LNG", un d in the other, firmly fixed to the 40-foot container in a changeable manner.
  • two smaller standard containers with the so-called "gas processing unit” are provided on both sides next to the 20-foot container containing the fuel tank, so that the 20-foot container Container is arranged with the fuel tank in the middle between the smaller standard containers.
  • the power supply unit is provided as a base container, in particular a 40-foot container, in which the generator or generators, the internal combustion engine, ie the engine or motors, and preferably also provided necessary connections become.
  • a control device for controlling the generator and / or the internal combustion engine and / or a fuel processing device is preferably accommodated here.
  • another container in particular a 20-foot container, is provided, in which the fuel storage device is provided.
  • two further containers, in particular 9-foot containers are preferably arranged. In particular, both further containers are arranged on the same side of the container with the fuel storage device.
  • a cooling device is preferably arranged and in the other of the two other containers are preferably Vorhaltesch for electrical conductors, in particular a cable drum arranged.
  • a further, in particular relatively narrow trained container is preferably arranged, in which advantageously a connection device for passing fuel from the at least one fuel storage device to the internal combustion engine is arranged.
  • the dimensions of the side-by-side (40-foot) containers forming the base are such that, taken together, they are preferably 40 feet. The containers with the individual modules are put together to form a unit to be handled together.
  • the entire power supply unit can be moved and moved with a standardized device (container bridge and / or van carrier) and is set for operation on the (container) ship in one of the existing container mounts.
  • this power supply unit feeds only the electrical system of the (container) ship while lying in the harbor.
  • the power supply unit is designed such that it can generate at least 0.5 MW, preferably at least 0.8 MW, more preferably at least 1.0 MW, most preferably at least 1.5 MW of electricity.
  • the power supply unit is designed such that it has power at a voltage of 100 V to 10 kV, in particular from 300 V to 7.5 kV, particularly preferably from 200 V to 600 V or from 5.5 kV to 7.5 kV, most preferably 440 V or 6.6 kV generated.
  • the generator of the power supply unit may preferably be designed in such a way that the generator generates a voltage of the aforementioned height, without additional transformers being necessary.
  • the current is preferably generated at a frequency of 50 Hz to 60 Hz, in particular 50 Hz or 60 Hz. In particularly preferred examples, the generated current has the following performance data: 6.6 kV at 60 Hz and 440 V at 50 Hz or 60 Hz.
  • a power supply arrangement comprising a plurality of power supply units according to one of the above-described embodiments or a combination of these embodiments, wherein the power supply arrangement comprises having connecting means for electrically connecting the plurality of power supply units with each other.
  • the connection means are designed such that the power generated by the plurality of power supply units (100, 200) can be supplied in common to a load, in particular the electrical system of a watercraft.
  • the connection means may, for example, connection cables for establishing an electrical connection between the power supply units, electrical switching means, means for adjusting the frequency, current and / or voltage of the power generated, or central feed means for centrally injecting the entirety of the electricity generated by the power supply units into the load, in particular a vehicle electrical system.
  • the power supply arrangement comprises at least two power supply units.
  • the power supply arrangement comprises 2 to 10, more preferably 3 to 8, most preferably 3 to 5 power supply units.
  • the power supply arrangement can therefore generate correspondingly more power than a single power supply unit, the cumulative power being dependent on the number of power supply units and the power of the individual power supply units.
  • the plurality of power supply units of the power supply arrangement or at least some of them are side by side, in particular directly adjacent to each other, in particular on board a watercraft, arranged.
  • a power supply arrangement comprising exactly two power supply units can generate at least 1.0 MW, preferably at least 1.5 MW, particularly preferably at least 2.2 MW, very particularly preferably at least 2.8 MW of power.
  • the above object is further achieved by a watercraft with an electrical system and a power supply unit and / or a power supply arrangement of the type described above, wherein the power supply unit and / or the power supply arrangement for feeding electrical energy are connected to the electrical system.
  • the power supply unit and / or the power supply arrangement are arranged on board the watercraft.
  • Fig. 1 shows a first embodiment of a power supply unit
  • FIG. 2 shows a second exemplary embodiment of a power supply unit
  • FIG 3 is a rough schematic representation of an insert of a power supply unit according to the embodiment of Figure 1 on the deck of a container ship.
  • FIG. 4 is a perspective view of a third embodiment of a
  • Fig. 5 is another perspective view of the embodiment of FIG.
  • Fig. 6 is a plan view of the container of the embodiment of Fig. 4.
  • FIG. 7 is a side view of the embodiment of FIG .. 4
  • the reference numeral 100 denotes a first exemplary embodiment of a power supply unit which comprises transport containers, in particular is made up of ISO standard containers.
  • a 40-foot container ie an ISO standard container with a length dimension corresponding to a first grid-Stauterrorism of 40 feet
  • a first space portion 102 of a first unit 101 of the power supply unit 100 In this first space area 102 are an internal combustion engine and a generatable by the internal combustion engine generator for power generation arranged, roughly indicated in Fig. 1 as a generator set and designated by the reference numeral 103.
  • a cable drum 104 is arranged with a connection cable 106 which can be led out of the first room area 102 by a preferably closable cable opening 105, via which electric power can be delivered from the power supply unit 100 to a consumer.
  • a 20-foot container 108 Saddled on the first space portion 102 of the first unit 101 of the power supply unit 100 and firmly connected thereto, here z. B. by welded tabs or connecting plates 107, is a 20-foot container 108, which forms a second space portion of the first unit 101.
  • the 20-foot container 108 may also be bolted, riveted, or connected by other similar or equivalent means of connection to the 40-foot container 102, however, this connection will not be solved during operation and during transportation and handling of the power supply unit 100.
  • a roughly schematically indicated so-called "gas processing unit" 109 is arranged in this second space area 108.
  • control devices may be provided in the first unit 101, but are not shown here for the sake of clarity. Also not shown active connections between the components of the power supply unit 100, which extend within the first unit 101, such. As o or fuel lines, are preferably permanently installed and not inseparable during operation.
  • the reference numeral 110 is an exemplary roughly schematic referred to exhaust system, which is preferably designed foldable or removable.
  • a fuel tank preferably a gas tank 112 for storing liquefied natural gas, the so-called LNG installed.
  • the mechanical connections are preferably formed by standardized connecting elements of the containers, in particular by the standardized container corners 113 and locks typical for ISO containers, the latter preferably being arranged on the upper side of the first structural unit 101. Other detachable connections are possible.
  • the design of the mechanical connections through the standardized fasteners not only allows easy docking and loosening, but also provides enough mechanical stability to z.
  • FIG. 2 shows, in a modification of FIG. 1, a second exemplary embodiment of a power supply unit, which is identified by reference numeral 200.
  • This has a first structural unit 201 with a second spatial area 208, which now comprises a first and a second partial space area 218 or 219 compared to the first exemplary embodiment according to FIG. 1, whereas the first spatial area 102 and the second structural unit 111 with their components are compared with the example are unchanged according to FIG.
  • the "gas processing unit”, now designated by the reference numeral 209, is optionally located in the first subspace area 218 or in the second subspace area 219 or is distributed to the subspace areas 218, 219 installed.
  • One or both Subspace regions 218, 219 optionally also contain control devices, not shown in FIG. 2, for the power supply unit 200.
  • the second unit 111 is saddled with the gas tank 112 in the gap between the subspace areas 218, 219 on the first space portion 102 of the first unit 201, d. H. there at the first space portion 102 of the first unit 201 docked.
  • This is identical to the example of FIG. 1 except for a spatially staggered arrangement required or intended components such as locks and fuel socket.
  • the advantage of the arrangement according to FIG. 2 lies in the fact that one or more freight containers can be placed on the subspace regions 218, 219, if required, e.g. B. a container with the same raster Jam size as that of the first space portion 102 of the first unit 201, d. H. with the first grid jam.
  • this first grid jam measure is 40 feet
  • the second grid jam of the second unit 211 is 20 feet
  • the subspace areas 218, 219 have a fourth and a fifth pitch of 10 feet, respectively.
  • Fig. 3 shows a rough schematic representation of an insert of a power supply unit 100 according to the embodiment of FIG. 1 on an aft deck of a container ship 114, the fuselage 115 and deckhouse 116 are indicated in outline.
  • reference numeral 117 is a water level, z.
  • the power supply unit 100 has been deposited as a closed unit on or adjacent to the existing from the freight containers 118 ship's charge and there electrically connected to an electrical system, not shown, of the container ship 114.
  • the power supply unit 100 occupies a cargo container parking space or possibly even below the deck of the container ship, it is not appreciably hampered by the loading business. After completion of the loading business the power supply unit 100 is picked up again by the container ship 114 and z. B. sold on the quay. There it can also, if desired, be stacked together with other standardized freight containers, also several power supply units 100 can be stored in readiness on the quay one above the other to save space.
  • FIGS. 4 to 7 show a further exemplary embodiment of a power supply unit 300.
  • Figs. 4 and 5 are perspective views and Fig. 7 is a side view.
  • two layers 3001, 3002 of transport containers are arranged one above the other, which together form the power supply unit 300.
  • FIG. 6 shows a top view of the upper container layer 3001 and the lower container layer 3002, respectively. Both container layers 3001, 3002 are flush with each other laterally, i. they have substantially the same overall length.
  • the power supply unit 300 is constructed from transport containers, in particular at least partially from ISO standard containers.
  • a single container which may be designed, for example, as a 40-foot container, ie as an ISO standard container with a length dimension corresponding to a first grid of 40 feet, forms a first space area 302 of a first unit 301 of the power supply unit 300
  • an internal combustion engine 1031 and a generator 1032 that can be driven by the internal combustion engine 1031 for power generation are arranged, which together form a generator set 103.
  • the operation unit 303 for operating the power supply unit by a user
  • air supply means 304 for supplying (fresh) air to the first room area 302
  • fire extinguishing means 305 in the form of C0 2 bottles
  • cooling water connections 306 batteries 307 for temporarily storing power for the supply of a control device and / or the start of the power supply unit 300
  • a fuel processing device 310 arranged.
  • the fuel for the feed can be processed in the internal combustion engine.
  • Insbesonde- Re can thus liquid gas, in particular LNG, are converted into the gaseous state, before it is supplied to the internal combustion engine.
  • the first structural unit 301 has a second spatial area 308 consisting of a first, a second and a third subspace area 318, 319, 320.
  • a connecting device 311 preferably designed in the manner of a coupling, for passing fuel from a fuel storage device to the first structural unit 301 is disposed.
  • the first subspace region 318 is arranged above the fuel conditioning device 310 and the hoses comprised by the connecting device 311 run downwards into the first space area 302 to the fuel processing device 310 (see in particular Fig. 7).
  • the second subspace region 319 comprises a cooling device 312 for cooling the internal combustion engine 1031.
  • the cooling device may comprise, for example, a condenser, a fan, and / or a coolant circuit.
  • the third subspace region 320 comprises a provision means for electrical conductors.
  • the provisioning means comprises a cable drum 104 with two connection cables 106 arranged thereon, which can be led out of the first space region 302, via which electrical energy can be delivered from the power supply unit 100 to a consumer.
  • At one end of the connecting cable 106 connecting pieces 1061 are provided, via which the connecting cable 106 can be connected to a consumer or other cables.
  • power switches designed as disconnectors in the third subspace 320 are provided in a control cabinet 313.
  • the three subspace areas 318, 319, 320 are each formed by individual transport containers, which are firmly connected to the container forming the first space area 302. Likewise, the two containers of the subspace areas 319 and 320 can be firmly connected to each other. Also, the two subspace areas 319, 320 could be provided within a transport container.
  • the second unit 111 with the gas tank 112 in the gap between the subspace area 318 on the one side and the two subspace areas 319 and 320 on the other side are saddled on the first space area 302 of the first unit 301, the second unit 11 laterally adjacent to the first subspace area 318 and to the second subspace area 319.
  • the second structural unit 111 is releasably connected to and docked to the first structural unit 301 via locking devices (not illustrated), in particular so-called "twist locks", whereby a second structural unit 111 with an empty gas tank 112 can easily be replaced by a second structural unit 111 another (not shown here) second unit with a full gas tank replaceable.
  • the containers of the second space area 308, taken together with the second building unit 111, have the same raster accumulation dimension as the container of the first space area 302. Furthermore, the two containers of the subspace areas 319 and 320 can each have the same raster accumulation dimension.
  • the first pitch of the first space 302 is 40 feet
  • the second pitch of the second assembly 211 is 20 feet
  • the fourth and fifth pitches of the space portions 319 and 320 are 9 feet and 15 feet
  • the sixth grid jam of subspace area 318 is 2 feet.

Landscapes

  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • Ocean & Marine Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Exhaust Gas After Treatment (AREA)
  • Cooling, Air Intake And Gas Exhaust, And Fuel Tank Arrangements In Propulsion Units (AREA)
  • Output Control And Ontrol Of Special Type Engine (AREA)
  • Fuel Cell (AREA)
  • Control Of Vehicle Engines Or Engines For Specific Uses (AREA)
  • Battery Mounting, Suspending (AREA)
  • Filling Or Discharging Of Gas Storage Vessels (AREA)

Abstract

L'invention concerne un groupe d'alimentation électrique (100) de conception transportable et compacte servant à alimenter en énergie électrique un véhicule nautique, en particulier un réseau de bord du véhicule nautique, et en particulier destiné à être monté sur le véhicule nautique, contenant dans un conteneur de transport ou dans plusieurs conteneurs de transport interconnectables qui peuvent être transportés sous la forme d'un ensemble cohérent unique : • ‑ au moins une machine à combustion interne (1031) pouvant fonctionner au gaz, en particulier au gaz naturel, • ‑ au moins un générateur (1032) qui peut être entraîné par la ou les machines à combustion interne afin de produire du courant, • ‑ au moins un système de commande de la ou des machines à combustion interne et/ou au moins un système de commande du ou des générateurs, • ‑ au moins un système de préparation du combustible pour la ou les machines à combustion interne et/ou au moins un système (109) d'épuration des gaz d'échappement de la ou des machines à combustion interne, et • ‑ au moins un système de stockage de combustible (112), le combustible du système de stockage de combustible étant un gaz, en particulier du gaz naturel, de préférence sous la forme de gaz liquéfié, de façon particulièrement préférée sous la forme de GNL.
EP14741260.5A 2013-07-12 2014-07-14 Groupe d'alimentation électrique, système d'alimentation électrique ainsi que véhicule nautique équipé d'un groupe d'alimentation électrique ou d'un système d'alimentation électrique Active EP3019393B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
HRP20191135TT HRP20191135T1 (hr) 2013-07-12 2019-06-21 Jedinica za napajanje električnom energijom, uređaj za napajanje električnom energijom, te plovilo s jedinicom za napajanje električnom energijom ili s uređajem za napajanje električnom energijom

Applications Claiming Priority (2)

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DE202013103128.3U DE202013103128U1 (de) 2013-07-12 2013-07-12 Stromversorgungseinheit
PCT/EP2014/065056 WO2015004288A1 (fr) 2013-07-12 2014-07-14 Groupe d'alimentation électrique, système d'alimentation électrique ainsi que véhicule nautique équipé d'un groupe d'alimentation électrique ou d'un système d'alimentation électrique

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EP3019393A1 true EP3019393A1 (fr) 2016-05-18
EP3019393B1 EP3019393B1 (fr) 2019-06-05

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US (1) US10731550B2 (fr)
EP (1) EP3019393B1 (fr)
JP (1) JP2016530434A (fr)
KR (1) KR20160043958A (fr)
CN (1) CN105658515B (fr)
AU (1) AU2014289162B2 (fr)
CA (1) CA2917246A1 (fr)
DE (1) DE202013103128U1 (fr)
DK (1) DK3019393T3 (fr)
ES (1) ES2732562T3 (fr)
HK (1) HK1223598A1 (fr)
HR (1) HRP20191135T1 (fr)
PH (1) PH12016500078A1 (fr)
SG (1) SG11201600156PA (fr)
WO (1) WO2015004288A1 (fr)

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EP3787964A1 (fr) 2018-04-30 2021-03-10 Becker Marine Systems GmbH Système modulaire d'alimentation électrique, dispositif d'alimentation électrique et procédé d'alimentation électrique d'une embarcation
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KR20160043958A (ko) 2016-04-22
DE202013103128U1 (de) 2014-10-13
CA2917246A1 (fr) 2015-01-15
DK3019393T3 (da) 2019-07-08
HK1223598A1 (zh) 2017-08-04
CN105658515B (zh) 2019-07-23
SG11201600156PA (en) 2016-02-26
AU2014289162B2 (en) 2017-06-08
AU2014289162A1 (en) 2016-02-04
EP3019393B1 (fr) 2019-06-05
HRP20191135T1 (hr) 2019-09-20
US20160160752A1 (en) 2016-06-09
CN105658515A (zh) 2016-06-08
ES2732562T3 (es) 2019-11-25
JP2016530434A (ja) 2016-09-29
PH12016500078A1 (en) 2016-04-18
WO2015004288A1 (fr) 2015-01-15
US10731550B2 (en) 2020-08-04

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