WO2004101982A2 - A domestic combined heat and power assembly - Google Patents
A domestic combined heat and power assembly Download PDFInfo
- Publication number
- WO2004101982A2 WO2004101982A2 PCT/GB2004/002075 GB2004002075W WO2004101982A2 WO 2004101982 A2 WO2004101982 A2 WO 2004101982A2 GB 2004002075 W GB2004002075 W GB 2004002075W WO 2004101982 A2 WO2004101982 A2 WO 2004101982A2
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- stirling engine
- module
- engine
- burner
- heat exchanger
- Prior art date
Links
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24D—DOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
- F24D11/00—Central heating systems using heat accumulated in storage masses
- F24D11/002—Central heating systems using heat accumulated in storage masses water heating system
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F02—COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
- F02G—HOT GAS OR COMBUSTION-PRODUCT POSITIVE-DISPLACEMENT ENGINE PLANTS; USE OF WASTE HEAT OF COMBUSTION ENGINES; NOT OTHERWISE PROVIDED FOR
- F02G1/00—Hot gas positive-displacement engine plants
- F02G1/04—Hot gas positive-displacement engine plants of closed-cycle type
- F02G1/043—Hot gas positive-displacement engine plants of closed-cycle type the engine being operated by expansion and contraction of a mass of working gas which is heated and cooled in one of a plurality of constantly communicating expansible chambers, e.g. Stirling cycle type engines
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F02—COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
- F02G—HOT GAS OR COMBUSTION-PRODUCT POSITIVE-DISPLACEMENT ENGINE PLANTS; USE OF WASTE HEAT OF COMBUSTION ENGINES; NOT OTHERWISE PROVIDED FOR
- F02G1/00—Hot gas positive-displacement engine plants
- F02G1/04—Hot gas positive-displacement engine plants of closed-cycle type
- F02G1/043—Hot gas positive-displacement engine plants of closed-cycle type the engine being operated by expansion and contraction of a mass of working gas which is heated and cooled in one of a plurality of constantly communicating expansible chambers, e.g. Stirling cycle type engines
- F02G1/053—Component parts or details
- F02G1/055—Heaters or coolers
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24D—DOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
- F24D12/00—Other central heating systems
- F24D12/02—Other central heating systems having more than one heat source
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24D—DOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
- F24D18/00—Small-scale combined heat and power [CHP] generation systems specially adapted for domestic heating, space heating or domestic hot-water supply
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24H—FLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
- F24H9/00—Details
- F24H9/02—Casings; Cover lids; Ornamental panels
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24D—DOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
- F24D2101/00—Electric generators of small-scale CHP systems
- F24D2101/80—Electric generators driven by external combustion engines, e.g. Stirling engines
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24D—DOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
- F24D2103/00—Thermal aspects of small-scale CHP systems
- F24D2103/10—Small-scale CHP systems characterised by their heat recovery units
- F24D2103/13—Small-scale CHP systems characterised by their heat recovery units characterised by their heat exchangers
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24D—DOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
- F24D2105/00—Constructional aspects of small-scale CHP systems
- F24D2105/10—Sound insulation
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24D—DOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
- F24D3/00—Hot-water central heating systems
- F24D3/08—Hot-water central heating systems in combination with systems for domestic hot-water supply
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B30/00—Energy efficient heating, ventilation or air conditioning [HVAC]
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E20/00—Combustion technologies with mitigation potential
- Y02E20/14—Combined heat and power generation [CHP]
Definitions
- the present invention relates to a domestic combined heat and power (dchp) system, and, in particular, one which uses a Stirling engine for the generation of electrical power and which is also arranged to provide heat energy.
- dchp domestic combined heat and power
- Such an engine requires a considerable amount of peripheral equipment to operate, including, for example, a heat exchanger for the recovery of heat from the Stirling- engine .
- the entire appliance would be assembled as a single unit, which would then be transported to its final location for installation. Due to the weight involved this installation procedure will present a hazard and necessitate the presence of more than one skilled engineer.
- a domestic combined heat and power assembly comprising a wall mountable frame; a Stirling engine module comprising a Stirling engine for the generation of electrical power and which is also arranged to provide heat energy; and a heat exchanger module for the recovery of heat from the Stirling engine; wherein the Stirling engine module and the heat exchange module are separate units, and wherein the Stirling engine module is mountable to the frame independently of the heat exchanger module .
- the assembly By designing the assembly with a Stirling engine module which is mountable independently of the heat exchanger module, the weight of the component parts of the appliance to be lifted into position is reduced allowing a single engineer to carry out the installation.
- a further benefit is that if there is a failure of the Stirling engine unit, the units can simply be removed and replaced involving minimal disruption to a consumer. The damaged unit could then be serviced off-site.
- the Stirling engine module may be attached to the frame by any convenient mounting arrangement.
- the frame has a bracket arranged to receive the engine in a first position from which it is pivotably moveable about the bracket to a second operating position in which it is permanently supported by the frame.
- Such a mounting provides a convenient way of allowing the head of the engine to be swung up into the heat exchanger module.
- Both the heat exchanger and Stirling engine modules can comprise a number of additional components.
- the Stirling engine module preferably comprises a resiliently mounted absorber mass, a combustion seal, the engine suspension assembly, and pipes for the supply of water to and from an engine cooler.
- the heat exchanger module preferably comprises a burner for the supply of hot combustion gases to the Stirling engine head, a supplementary burner for the generation of additional heat, a gas train for the supply of combustible gas to the or each burner, an exhaust duct for the removal of exhaust gases from the or each burner, and water pipes for water to be heated by the or each burner.
- a gas train for the supply of combustible gas to the or each burner
- an exhaust duct for the removal of exhaust gases from the or each burner
- water pipes for water to be heated by the or each burner.
- the modular design of the unit can be extended to other aspects of the assembly, such that the assembly preferably comprises a control module comprising a system controller and which is mountable to the frame independently of the Stirling engine and heat exchanger modules. Again, this provides advantages of reducing the individual weight of the transported components and of ease of maintenance .
- the assembly may also be provided with a combi module which is mountable to the assembly independently of any other modules and which is arranged to supply an instant domestic demand for hot water in addition to central heating.
- a combi module which is mountable to the assembly independently of any other modules and which is arranged to supply an instant domestic demand for hot water in addition to central heating.
- Such a module can be provided if the user requires the dchp system to fulfil the function of a convention combi boiler.
- the combi module may simply comprise an additional heat exchanger which will heat domestic hot water on demand.
- the combi module comprises a hot water tank, and the assembly further comprises control means to maintain the temperature of the water in the tank at an elevated temperature at times of likely hot water demand.
- the tank is designed to be relatively small (of the order of 12 litres capacity) , and simply allows the assembly to supply the hot water demand as quickly as possible while the engine burner or supplementary burner are fired up to supply a continued demand for hot water beyond the capacity of the tank.
- a domestic combined heat and power unit comprising a sealed housing, means for mounting the sealed housing to a wall; a Stirling engine; a burner for heating the head of the Stirling engine; and a heat exchanger for recovering exhaust heat from the head of the Stirling engine, wherein the Stirling engine, burner and heat exchanger are supported directly by the sealed housing.
- the design of the unit can be simplified, thereby reducing the complexity and weight of the unit and hence the manufacturing cost.
- Fig. 1 is an exploded schematic sectional view of the covers and frames of the assembly
- Fig. 2 is a perspective view showing the rear part of the room sealed box with the heat exchanger module and other components in place;
- Fig. 3 is a perspective view of a Stirling engine sub- assembly;
- Fig. 4 is a similar perspective view of the Stirling engine module incorporating the Stirling engine sub-assembly of Fig. 3;
- Figs. 5A, 5B and 5C are schematic sketches showing how the Stirling engine module is swung into position
- Fig. 6 is a perspective view of the internal components of the combi module
- Fig. 7 is a schematic of the components of the combi module.
- Fig. 8 is a perspective view showing all of the components in place but with the front cover removed.
- Fig. 1 shows the various support frames and cover plates.
- the first component that is attached to the wall is the back plate 1.
- This is a simple lightweight sheet steel component that has intrinsically low strength and stiffness and gets its strength and stiffness from the wall to which it is attached.
- the illustrated back plate 1 is wide enough to accommodate a combi module as described below. A narrower plate can be used if no combi module is required.
- the room sealed box 2 This is a sheet metal fabrication and comprises a back section 3 and a front section 4.
- the panels of the two sections are shaped for stiffness to reduce the risk of resonance at the engine running frequency.
- the box 2 is lined with a self-adhesive composite sound-damping sheet which damps vibration in the metalwork and absorbs airborne vibration.
- the front and back section are sealed together by a silicone rubber - sealing strip which provides a resilient sealing member which serves to provide an airtight sealed enclosure and which also isolates the exterior of the room sealed box from noise and vibration of the components housed within the room sealed box as described in greater detail below.
- the back section 3 is hooked onto the bottom of the back plate 1 and secured at the top with a number of bolts.
- a cosmetic panel 5 may be fitted on the front section of the room sealed box. Also, if a combi module is provided, a combi housing 6 and combi cosmetic panel 7 are provided alongside the main unit.
- the back section 3 of the room sealed box is provided with a number of fixtures for various components.
- the back section 3 is provided with a cantilever engine support bracket 8.
- This is provided with a large circular aperture 9 and has a down turned flange 10 at either side for additional structural rigidity.
- a pair of lugs 11 project from the front of the engine support bracket 8 for reasons to be described below.
- Fig. 2 shows the various additional components supported on the back section 3 of the room sealed box 2.
- a heat exchanger module 20 is positioned at the top of the back section 3. This comprises a main heat exchanger 21 in which heat is recovered from exhaust gas from a Stirling engine and from a supplementary burner into a hot water stream for use in the domestic central heating. The nature of this heat exchanger is described in more detail in application PCT/GB02/05771. The structure of this heat exchanger is not material to the present invention.
- the gas train 24 is also on the back section 3. This essentially comprises the appropriate pipework, fans and valves to provide supplies of air and combustible fuel to an engine burner and supplementary burner (not shown) .
- Ducts feed combustible gas-air mixture to the supplementary and engine burners respectively.
- a concentric exhaust flue 30 for exhaust gases from the burners either extends from the top of the back section 3 or from the back surface, passing through an orifice 31 in the back plate. The flue is then aligned with an orifice in the wall of the dwelling.
- Flue gas outlet 30 for exhaust gas for exhaust gas.
- Hot combustion gases provided from the burner (not shown) to the head of the engine .
- the back section 1 together with the components described thus far will be assembled as a single module in the factory and will be fixed as a unit to the back plate 1. With this in place, the Stirling engine module 40 can be put into place.
- the Stirling engine module 40 is described in more detail with reference to Figs . 3 and 4.
- the main component of the Stirling engine module is the Stirling engine 41 as shown in Fig. 3.
- This has an engine head 42 surrounded by a plurality of axially extending fins 43 which are supplied with heat from the engine burner in the heat exchanger module 20.
- Beneath the head is an annular engine mounting flange 44 the purpose of which will be described subsequently.
- Beneath the head is the engine cooler (not shown) to which water is supplied along pipe 45.
- Beneath the cooler is the alternator which converts reciprocal movement of a piston within the engine into electrical energy in a manner well known in the art.
- the engine is surrounded by an annular absorber mass 46 tuned to 50Hz which is suspended on a plurality of springs 47 to absorb the natural vibrations of the Stirling engine, as described in greater detail in PCT/GB02/05111.
- the Stirling engine sub-assembly shown in Fig. 3 forms the core of the Stirling engine module 40 as shown in Fig. 4.
- the module is surrounded by a housing 50, the top surface of which provides an engine hanging bracket 51 by virtue of which the engine is hung from the back section 3 in a manner to be described below.
- Bracket 51 is an upturned flange 52 with a pair of spaced orifices 53.
- insulation 54 which insulates a combustion seal (not shown) from the hot gases from the burner which impinge on the fins 43. This is described in more detail in our earlier application GB 0211121.9.
- Ignitor and ionisation probes 55 are provided to monitor the firing of the engine burner.
- a helium fill point (not shown) is provided o the housing 50 to allow the Stirling engine to be pressurised. These can also be used to replenish the gas during maintenance.
- the Stirling engine 41 is hung from the frame 50 by a plurality of elongate tensions springs 58 as described in more detail in PCT/GB02/05111.
- a water pipe (not shown) supplies water to and from the engine cooler via the pipe 45.
- the connections to the Stirling engine module 40 are as follows : • Water inlet to cool the engine cooler and also the combustion seal .
- the engine module 40 is mounted as shown in Figs. 5A-5C. With the module 40 tilted such that the upturned flange 52 is uppermost, the orifices 53 are hooked over the lugs 11 as shown in Figs. 5A and 5B. Once the module 40 is correctly located, it is then swung into the position shown in Fig. 5C where the engine hanging bracket 51 is secured by screws or other suitable fasteners to the mounting bracket 8 and the joint is sealed by a ceramic paper gasket (not shown) . In this position, the fins 43 on the head 42 of the engine 41 are surrounded by the engine burner in the heat exchange module 20.
- a combi module 60 can be attached, and this is shown in Figs. 6 and 7.
- the combi module is provided within the combi housing 6 as shown in Fig. 1.
- the combi module 60 is designed to provide a source of hot water allowing almost instantaneous provision of hot water as soon as a tap is turned on in the domestic dwelling.
- the burners are simply fired on demand to provide the hot water requirement.
- the storage tank 61 is part of the hot water and central heating distribution system shown in Fig. 7.
- Water is pumped around the system by a modulating pump 62A and a fixed speed pump 62B. Under normal operation, water will be pumped around the engine heat exchanger 63 and supplementary heat exchanger 64 to radiators 65 and hot water tap 66 under the control of a central heating valve 67 and hot water valve 68.
- the modes of operation of the combi module 60 are as follows :
- the storage tank 61 When there is a potential requirement for domestic hot water (as set by the programmer) the storage tank 61 (12 litres capacity) is maintained at a temperature at or close to 77DC. If the central heating is on the engine will already be firing and the storage tank 61 can be heated by opening the hot water valve 68 and closing the central heating valve 67 for a short period. If it is outside the programmed central heating period, the storage tank is heated by firing the supplementary burner for a short period.
- a turbine flow meter 69 senses the flow.
- the modulating pump, 62A is started and the hot water valve 68 is opened. This directs hot water from the storage tank 61 through the plate heat exchanger 70 to rapidly heat the domestic hot water.
- the control system adjusts the speed of the modulating pump to deliver the required hot water temperature (measured by sensor 71) . Meanwhile the ignition sequence for the supplementary burner is initiated and the fixed speed pump 62B is started, so that, by the time the storage tank 61 is depleted, continuing heat for the hot water is supplied by the supplementary burner.
- the supplementary burner firing rate and the modulating pump speed are both adjusted by the control system to maintain the delivery temperature of the domestic hot water at the user-defined set point over a flow range of 3 to 15 litres/minute. Domestic hot water supply takes priority over a central heating demand. 3. Central Heating Mode.
- central heating valve 67 When there is a demand for central heating and no domestic hot water, central heating valve 67 is open and hot water valve 68 is closed.
- the control system adjusts the supplementary burner firing rate to maintain the required flow temperature Tf and the appliance operates in the same way as it would with no combi module 60.
- the final module to be installed is the electronics module 80 which is slid into position along brackets 81 at the bottom of the back section 3 as shown in Fig. 8.
- the electronics module 80 has the following connections: • An input for sensor wiring from the other modules.
- Fig. 8 shows all of the modules installed in place. All that remains is for the front section 4, the combi housing 6, and the cosmetic panels 5 and 7 (shown in Fig. 1) to be. fixed in place to complete the installation.
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- Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Physics & Mathematics (AREA)
- Thermal Sciences (AREA)
- Water Supply & Treatment (AREA)
- Heat-Pump Type And Storage Water Heaters (AREA)
- Other Air-Conditioning Systems (AREA)
- Housings, Intake/Discharge, And Installation Of Fluid Heaters (AREA)
- Building Environments (AREA)
Abstract
Description
Claims
Priority Applications (5)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
BRPI0410279-7A BRPI0410279A (en) | 2003-05-13 | 2004-05-13 | combined household heat and power |
EP04732661A EP1623106A2 (en) | 2003-05-13 | 2004-05-13 | A domestic combined heat and power assembly |
JP2006530501A JP2007533891A (en) | 2003-05-13 | 2004-05-13 | Household cogeneration assembly |
US10/556,412 US7650750B2 (en) | 2003-05-13 | 2004-05-13 | Domestic combined heat and power assembly |
CA002525212A CA2525212A1 (en) | 2003-05-13 | 2004-05-13 | A domestic combined heat and power assembly |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
GBGB0310999.8A GB0310999D0 (en) | 2003-05-13 | 2003-05-13 | A domestic combined heat and power assembly |
GB0310999.8 | 2003-05-13 |
Publications (2)
Publication Number | Publication Date |
---|---|
WO2004101982A2 true WO2004101982A2 (en) | 2004-11-25 |
WO2004101982A3 WO2004101982A3 (en) | 2005-01-13 |
Family
ID=9957994
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/GB2004/002075 WO2004101982A2 (en) | 2003-05-13 | 2004-05-13 | A domestic combined heat and power assembly |
Country Status (10)
Country | Link |
---|---|
US (1) | US7650750B2 (en) |
EP (1) | EP1623106A2 (en) |
JP (1) | JP2007533891A (en) |
KR (1) | KR20060013391A (en) |
CN (1) | CN100404838C (en) |
BR (1) | BRPI0410279A (en) |
CA (1) | CA2525212A1 (en) |
GB (1) | GB0310999D0 (en) |
RU (1) | RU2005138782A (en) |
WO (1) | WO2004101982A2 (en) |
Cited By (11)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2008001107A1 (en) | 2006-06-30 | 2008-01-03 | Microgen Energy Limited | A domestic combined heat and power generation system |
GB2444944A (en) * | 2006-12-20 | 2008-06-25 | Microgen Energy Ltd | Storage combination boiler |
GB2465767A (en) * | 2008-11-27 | 2010-06-02 | Ceres Ip Co Ltd | Boiler configured to receive a combined heat and power device |
GB2485930A (en) * | 2010-10-29 | 2012-05-30 | Tacoma Properties Llc | Micro combined heat and power generation system having a means for mounting on a wall |
GB2485928A (en) * | 2010-10-29 | 2012-05-30 | Tacoma Properties Llc | Micro combined heat and power unit having a rectifier and inverter to convert alternator generator output to predetermined AC frequency |
GB2485929A (en) * | 2010-10-29 | 2012-05-30 | Tacoma Properties Llc | Micro combined heat and power unit with heat exchanger diverter valve arrangement |
GB2485927A (en) * | 2010-10-29 | 2012-05-30 | Tacoma Properties Llc | Micro combined heat and power unit having multiple heat exchangers |
WO2012059752A3 (en) * | 2010-11-02 | 2013-05-30 | Energetix Genlec Limited | Modular heating system |
NL2008213C2 (en) * | 2012-02-01 | 2013-08-06 | Bosch Gmbh Robert | HEATING DEVICE WITH REMOVABLE FRONT COVER, METHOD FOR MAINTENANCE OF HEATING DEVICE. |
US10059793B2 (en) | 2014-11-20 | 2018-08-28 | Sumitomo Bakelite Co., Ltd. | Lignin resin composition, cured product, and molded product |
US20220392657A1 (en) * | 2021-06-03 | 2022-12-08 | Battelle Energy Alliance, Llc | Energy production devices and associated components, and related heat transfer devices and methods |
Families Citing this family (9)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2005089257A2 (en) * | 2004-03-16 | 2005-09-29 | Tecogen, Inc. | Engine driven power inverter system with cogeneration |
US7281383B2 (en) * | 2005-03-25 | 2007-10-16 | Robert Walter Redlich | Reciprocating four-stroke Brayton refrigerator or heat engine |
GB0700141D0 (en) * | 2007-01-04 | 2007-02-14 | Microgen Energy Ltd | A stirling engine system and operating method |
GB2478949A (en) * | 2010-03-24 | 2011-09-28 | Bosch Gmbh Robert | Over-pressure seal between Stirling engine and combustion chamber |
WO2012023678A1 (en) | 2010-08-17 | 2012-02-23 | 주식회사 경동나비엔 | Auxiliary boiler exhaust structure for a micro combined heat and power unit, and a cover assembly for forming an auxiliary boiler exhaust flow path for a micro combined heat and power unit |
GB2501708B (en) * | 2012-05-01 | 2015-06-17 | Sustainable Power Ltd | Micro combined heat and power unit |
CN106762208B (en) * | 2017-02-20 | 2018-09-04 | 广东工业大学 | A kind of field power generator |
KR101991688B1 (en) * | 2017-10-16 | 2019-06-21 | 최영환 | Hot water storage type water heater with warm air generating function |
US11936327B2 (en) | 2021-06-23 | 2024-03-19 | Tecogen Inc. | Hybrid power system with electric generator and auxiliary power source |
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US3937017A (en) * | 1973-08-09 | 1976-02-10 | Maschinenfabrik Augsburg-Nurnberg Aktiengesellschaft | External combustion hot gas engine system |
JPH01124065U (en) * | 1988-02-15 | 1989-08-23 | ||
JPH03251651A (en) * | 1990-02-28 | 1991-11-11 | Toshiba Corp | Hot water producing device |
US5743091A (en) * | 1996-05-01 | 1998-04-28 | Stirling Technology Company | Heater head and regenerator assemblies for thermal regenerative machines |
US6263671B1 (en) * | 1997-11-15 | 2001-07-24 | Wayne T Bliesner | High efficiency dual shell stirling engine |
DE19936591C1 (en) | 1999-08-04 | 2001-02-15 | Bosch Gmbh Robert | Gas-driven heat generator, with two-stage cylinder burner including inner and outer burners in common combustion chamber |
US6532749B2 (en) * | 1999-09-22 | 2003-03-18 | The Coca-Cola Company | Stirling-based heating and cooling device |
US20020088237A1 (en) * | 1999-10-05 | 2002-07-11 | Rudick Arthur G. | Apparatus using vibrationally isolating stirling cooler system |
NL1015319C2 (en) | 2000-05-26 | 2001-11-27 | Enatec Micro Cogen B V | Device and method for the coupled generation of heat and electricity. |
RU2319028C2 (en) * | 2001-11-14 | 2008-03-10 | Майкроджен Энерджи Лимитед | Unit with stirling engine (versions) |
GB0210929D0 (en) * | 2002-05-13 | 2002-06-19 | Bg Intellectual Pty Ltd | A stirling engine assembly |
-
2003
- 2003-05-13 GB GBGB0310999.8A patent/GB0310999D0/en not_active Ceased
-
2004
- 2004-05-13 WO PCT/GB2004/002075 patent/WO2004101982A2/en active Search and Examination
- 2004-05-13 US US10/556,412 patent/US7650750B2/en not_active Expired - Fee Related
- 2004-05-13 CN CNB2004800128226A patent/CN100404838C/en not_active Expired - Fee Related
- 2004-05-13 BR BRPI0410279-7A patent/BRPI0410279A/en not_active IP Right Cessation
- 2004-05-13 JP JP2006530501A patent/JP2007533891A/en active Pending
- 2004-05-13 RU RU2005138782/06A patent/RU2005138782A/en not_active Application Discontinuation
- 2004-05-13 EP EP04732661A patent/EP1623106A2/en not_active Withdrawn
- 2004-05-13 KR KR1020057021387A patent/KR20060013391A/en not_active Application Discontinuation
- 2004-05-13 CA CA002525212A patent/CA2525212A1/en not_active Abandoned
Non-Patent Citations (1)
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Cited By (18)
Publication number | Priority date | Publication date | Assignee | Title |
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WO2008001107A1 (en) | 2006-06-30 | 2008-01-03 | Microgen Energy Limited | A domestic combined heat and power generation system |
GB2444944A (en) * | 2006-12-20 | 2008-06-25 | Microgen Energy Ltd | Storage combination boiler |
GB2465767A (en) * | 2008-11-27 | 2010-06-02 | Ceres Ip Co Ltd | Boiler configured to receive a combined heat and power device |
WO2010061190A2 (en) * | 2008-11-27 | 2010-06-03 | Ceres Intellectual Property Company Limited | A boiler unit |
GB2465767B (en) * | 2008-11-27 | 2011-01-05 | Ceres Ip Co Ltd | A boiler unit |
US9732982B2 (en) | 2008-11-27 | 2017-08-15 | Ceres Intellectual Property Company Limited | Boiler unit |
WO2010061190A3 (en) * | 2008-11-27 | 2012-09-27 | Ceres Intellectual Property Company Limited | A boiler unit |
GB2485927A (en) * | 2010-10-29 | 2012-05-30 | Tacoma Properties Llc | Micro combined heat and power unit having multiple heat exchangers |
GB2485929A (en) * | 2010-10-29 | 2012-05-30 | Tacoma Properties Llc | Micro combined heat and power unit with heat exchanger diverter valve arrangement |
GB2485928A (en) * | 2010-10-29 | 2012-05-30 | Tacoma Properties Llc | Micro combined heat and power unit having a rectifier and inverter to convert alternator generator output to predetermined AC frequency |
GB2485927B (en) * | 2010-10-29 | 2013-02-27 | Sustainable Power Ltd | Micro combined heat and power unit with internal combustion engine exhaust gas heat exchanger |
GB2485930A (en) * | 2010-10-29 | 2012-05-30 | Tacoma Properties Llc | Micro combined heat and power generation system having a means for mounting on a wall |
WO2012059752A3 (en) * | 2010-11-02 | 2013-05-30 | Energetix Genlec Limited | Modular heating system |
US9797603B2 (en) | 2010-11-02 | 2017-10-24 | Energetix Genlec Limited | Heating system—modular |
NL2008213C2 (en) * | 2012-02-01 | 2013-08-06 | Bosch Gmbh Robert | HEATING DEVICE WITH REMOVABLE FRONT COVER, METHOD FOR MAINTENANCE OF HEATING DEVICE. |
EP2623883A1 (en) | 2012-02-01 | 2013-08-07 | Robert Bosch Gmbh | Heating device with removable front cover, method for mantaining a heating device |
US10059793B2 (en) | 2014-11-20 | 2018-08-28 | Sumitomo Bakelite Co., Ltd. | Lignin resin composition, cured product, and molded product |
US20220392657A1 (en) * | 2021-06-03 | 2022-12-08 | Battelle Energy Alliance, Llc | Energy production devices and associated components, and related heat transfer devices and methods |
Also Published As
Publication number | Publication date |
---|---|
CA2525212A1 (en) | 2004-11-25 |
CN1788150A (en) | 2006-06-14 |
CN100404838C (en) | 2008-07-23 |
RU2005138782A (en) | 2006-06-10 |
KR20060013391A (en) | 2006-02-09 |
EP1623106A2 (en) | 2006-02-08 |
BRPI0410279A (en) | 2006-05-16 |
US20070028611A1 (en) | 2007-02-08 |
WO2004101982A3 (en) | 2005-01-13 |
GB0310999D0 (en) | 2003-06-18 |
US7650750B2 (en) | 2010-01-26 |
JP2007533891A (en) | 2007-11-22 |
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