JP2015518935A5 - - Google Patents

Download PDF

Info

Publication number
JP2015518935A5
JP2015518935A5 JP2015513288A JP2015513288A JP2015518935A5 JP 2015518935 A5 JP2015518935 A5 JP 2015518935A5 JP 2015513288 A JP2015513288 A JP 2015513288A JP 2015513288 A JP2015513288 A JP 2015513288A JP 2015518935 A5 JP2015518935 A5 JP 2015518935A5
Authority
JP
Japan
Prior art keywords
working fluid
power unit
subsystem
pressure
condenser
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.)
Pending
Application number
JP2015513288A
Other languages
English (en)
Japanese (ja)
Other versions
JP2015518935A (ja
Filing date
Publication date
Priority claimed from CA2778101A external-priority patent/CA2778101A1/en
Application filed filed Critical
Publication of JP2015518935A publication Critical patent/JP2015518935A/ja
Publication of JP2015518935A5 publication Critical patent/JP2015518935A5/ja
Pending legal-status Critical Current

Links

JP2015513288A 2012-05-24 2013-05-24 圧力パワーユニット Pending JP2015518935A (ja)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
CA2778101A CA2778101A1 (en) 2012-05-24 2012-05-24 Power generation by pressure differential
CA2,778,101 2012-05-24
PCT/IB2013/001285 WO2013175301A2 (en) 2012-05-24 2013-05-24 Pressure power unit

Publications (2)

Publication Number Publication Date
JP2015518935A JP2015518935A (ja) 2015-07-06
JP2015518935A5 true JP2015518935A5 (https=) 2016-07-14

Family

ID=49624437

Family Applications (2)

Application Number Title Priority Date Filing Date
JP2015513288A Pending JP2015518935A (ja) 2012-05-24 2013-05-24 圧力パワーユニット
JP2015513289A Pending JP2015522740A (ja) 2012-05-24 2013-05-24 圧力発電システム

Family Applications After (1)

Application Number Title Priority Date Filing Date
JP2015513289A Pending JP2015522740A (ja) 2012-05-24 2013-05-24 圧力発電システム

Country Status (11)

Country Link
US (2) US20150135714A1 (https=)
EP (2) EP2855844A4 (https=)
JP (2) JP2015518935A (https=)
KR (2) KR20150032263A (https=)
CN (2) CN104838136A (https=)
AU (2) AU2013264929A1 (https=)
BR (2) BR112014029145A2 (https=)
CA (1) CA2778101A1 (https=)
EA (2) EA201492200A1 (https=)
IN (2) IN2014DN10789A (https=)
WO (2) WO2013175301A2 (https=)

Families Citing this family (23)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104373159A (zh) * 2014-10-15 2015-02-25 中山昊天节能科技有限公司 小型空气能发电机
CN104405462A (zh) * 2014-10-15 2015-03-11 中山昊天节能科技有限公司 空气能转换为电能的换能系统
CN106256995A (zh) * 2015-06-16 2016-12-28 熵零股份有限公司 一种蓄能系统
GB201522888D0 (en) * 2015-12-24 2016-02-10 Halloy Guillaume And Halloy Helene And Halloy Louis And Halloy Elise Power generation using liquids with different vapour pressures
JP6739766B2 (ja) * 2016-02-12 2020-08-12 学校法人日本大学 動力生成システム及び発電システム
WO2017137013A1 (zh) 2016-02-14 2017-08-17 北京艾派可科技有限公司 对压气能贮存装置及检测方法、贮存系统、平衡侦测机构
DE102016205359A1 (de) * 2016-03-31 2017-10-05 Siemens Aktiengesellschaft Verfahren und Vorrichtung zum Verdichten eines Fluids
CN105697218B (zh) * 2016-04-08 2018-05-11 天津融渌众乐科技有限公司 一种将热能转换为势能的水力发电系统
EP3707445A4 (en) * 2017-11-10 2021-08-11 Neiser, Paul COOLING DEVICE AND METHOD
CL2017003498A1 (es) 2017-12-29 2018-05-04 Ahr Energy Spa Método para producir transferencia de calor entre dos o mas medios y un sistema para ejecutar dicho método.
US12128354B2 (en) * 2018-04-28 2024-10-29 M & R Consulting Service, Inc. Electrochemical nitrogen generator system and method
CN109681283A (zh) * 2019-02-18 2019-04-26 李方耀 一种低温温差能热能利用装置及方法
US10724470B1 (en) 2019-05-21 2020-07-28 General Electric Company System and apparatus for energy conversion
EP4249745A3 (en) * 2019-05-21 2023-12-06 Hyliion Holdings Corp. System and apparatus for energy conversion
WO2021026445A1 (en) * 2019-08-08 2021-02-11 William Herbert L Method and system for liquifying a gas
US10900206B1 (en) 2020-02-11 2021-01-26 Ramses S. Nashed Vapor-liquid mixture-based constant pressure hydropneumatics system
GB2593538B (en) * 2020-03-27 2023-07-19 Nanosun Ip Ltd Apparatus and method for transfering and cooling a compressed fuel gas
US11897637B2 (en) 2021-01-08 2024-02-13 Ivaylo Trendafilov Vasilev System and method of generating a momentum change in a vehicle by phase changing matter in a closed system
NO20220335A1 (en) * 2022-03-18 2023-09-19 Hans Gude Gudesen Thermal energy conversion method and system
US11655802B1 (en) * 2023-01-05 2023-05-23 William A. Kelley Atmospheric energy recovery
CN116557247A (zh) * 2023-02-23 2023-08-08 赵尉 温差发电装置
CN118654507B (zh) * 2024-08-20 2024-10-22 锦益深冷(常州)能源科技有限公司 一种便于调节温度的水浴式气化器
JP7709241B1 (ja) * 2024-12-05 2025-07-16 株式会社トライテック インクジェット記録装置

Family Cites Families (25)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS505745A (https=) * 1973-05-21 1975-01-21
US3846984A (en) * 1974-04-29 1974-11-12 I Siegel Temperature differential fluid motor
JPS562414A (en) * 1979-06-21 1981-01-12 Mitsubishi Heavy Ind Ltd Variable pressure driving system for hot water turbine
US4479354A (en) * 1979-08-20 1984-10-30 Thomas Cosby Limited expansion vapor cycle
JPS5647608A (en) * 1979-09-25 1981-04-30 Mitsui Eng & Shipbuild Co Ltd Energy saving type generator
DE3173876D1 (en) * 1980-08-11 1986-04-03 Centre Nat Rech Scient Device and systems for the revaluation of low-level thermal energy using phenomena of evaporation, and solution of two fluids being in equilibrium of vapour pressure at different temperatures
JPS5851280A (ja) * 1981-09-21 1983-03-25 Mitsubishi Heavy Ind Ltd 間欠作動装置
JPS59119073A (ja) * 1982-12-24 1984-07-10 Toshiba Corp 低温度差発電プラント
US4617801A (en) * 1985-12-02 1986-10-21 Clark Robert W Jr Thermally powered engine
US5117635A (en) * 1990-08-06 1992-06-02 Westinghouse Electric Corp. High power density propulsion/power system for underwater applications
US6199382B1 (en) * 1998-11-25 2001-03-13 Penn State Research Foundation Dynamic condensate system
US20070157614A1 (en) * 2003-01-21 2007-07-12 Goldman Arnold J Hybrid Generation with Alternative Fuel Sources
EP1610084A4 (en) * 2003-04-01 2012-11-07 Mitsubishi Chem Corp ADSORPTION AGENT FOR ADSORPTION HEAT PUMP, ADSORPTION AGENT FOR MOISTURE CONTROL CONDITIONER
US7100380B2 (en) * 2004-02-03 2006-09-05 United Technologies Corporation Organic rankine cycle fluid
PL1733144T3 (pl) * 2004-03-15 2008-12-31 Uestuen Orhan Urządzenie do akumulowania energii cieplnej dla następnej przemiany w energię elektryczną
US7428816B2 (en) * 2004-07-16 2008-09-30 Honeywell International Inc. Working fluids for thermal energy conversion of waste heat from fuel cells using Rankine cycle systems
US20100263380A1 (en) * 2007-10-04 2010-10-21 United Technologies Corporation Cascaded organic rankine cycle (orc) system using waste heat from a reciprocating engine
WO2009077275A2 (de) * 2007-12-17 2009-06-25 Klaus Wolter Verfahren, vorrichtung und system zum einprägen von energie in ein medium
US8225606B2 (en) * 2008-04-09 2012-07-24 Sustainx, Inc. Systems and methods for energy storage and recovery using rapid isothermal gas expansion and compression
US8353160B2 (en) * 2008-06-01 2013-01-15 John Pesce Thermo-electric engine
US8820079B2 (en) * 2008-12-05 2014-09-02 Honeywell International Inc. Chloro- and bromo-fluoro olefin compounds useful as organic rankine cycle working fluids
DE102008057202A1 (de) * 2008-11-13 2010-05-20 Daimler Ag Clausius-Rankine-Kreis
WO2011128721A1 (en) * 2010-04-12 2011-10-20 Gariepy Donald J Green engine
US20110271676A1 (en) * 2010-05-04 2011-11-10 Solartrec, Inc. Heat engine with cascaded cycles
CN201827032U (zh) * 2010-08-16 2011-05-11 上海盛合新能源科技有限公司 一种太阳能氨水热电转换装置

Similar Documents

Publication Publication Date Title
JP2015518935A5 (https=)
Ozdil et al. Thermodynamic analysis of an Organic Rankine Cycle (ORC) based on industrial data
JP2015522740A5 (https=)
Yoon et al. Efficiency comparison of subcritical OTEC power cycle using various working fluids
EP2942492B1 (en) Electrical energy storage and discharge system
JP6660095B2 (ja) ランキンサイクルに従って作動する閉ループを制御する装置およびそれを使用する方法
Liu et al. Experiments and thermal modeling on hybrid energy supply system of gas engine heat pumps and organic Rankine cycle
Szczygieł et al. Application of the Stirling engine driven with cryogenic exergy of LNG (liquefied natural gas) for the production of electricity
Zhai et al. Analysis of the quantitative correlation between the heat source temperature and the critical temperature of the optimal pure working fluid for subcritical organic Rankine cycles
ES3023282T3 (en) System and method for recovery of waste heat from dual heat sources
CN103712366B (zh) 一种低温流体冷能利用系统
Wang et al. Performance enhancement of organic Rankine cycle with two-stage evaporation using energy and exergy analyses
Li et al. Entransy dissipation/loss-based optimization of two-stage organic Rankine cycle (TSORC) with R245fa for geothermal power generation
Zhu et al. Impact of built-in and actual expansion ratio difference of expander on ORC system performance
WO2019114536A1 (zh) 构造冷源能量回收系统、热力发动机系统及能量回收方法
JP2016526650A (ja) ヒートポンプ装置を動作させる方法、及びヒートポンプ装置
CN104794966A (zh) 一种有机朗肯循环系统实验装置
US9671175B2 (en) System for reversibly storing electrical energy as thermal energy
Galashov et al. Analysis of the Properties of Working Substances for the Organic Rankine Cycle Based Database “REFPROP”
Bu et al. Working fluids selection for fishing boats waste heat powered organic Rankine-vapor compression ice maker
Kaynakli et al. Thermodynamic analysis of the Organic Rankine Cycle and the effect of refrigerant selection on cycle performance
JPS6126832B2 (https=)
CN203629121U (zh) 一种低温流体冷能利用系统
Araya et al. The design and construction of a bench-top Organic Rankine Cycle for data center applications
Tian et al. Thermodynamic analysis of a novel combined power and cooling cycle driven by the exhaust heat form a diesel engine