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    • 5. 发明公开
    • ANLAGE UND VERFAHREN ZUR ERZEUGUNG VON HEISSWASSER UND/ODER DAMPF UND FÜR DIE SPEICHERUNG VON WASSER IN FLÜSSIGER UND/ODER GASFÖRMIGER FORM ZUM EINSATZ FÜR EIN GASTURBINENKRAFTWERK
    • 系统和方法热水的生产和/或蒸汽和液体和/或气体形式FOR USE FOR A燃机电厂水调蓄
    • EP2694789A2
    • 2014-02-12
    • EP12721729.7
    • 2012-03-28
    • Technische Universität Chemnitz
    • URBANECK, ThorstenPLATZER, Bernd
    • F02C1/00F02C1/05F02C1/06F01K3/18F01K21/04
    • F01K3/185F01K3/186F01K21/047F02C1/007F02C1/05F02C1/06F02C6/18F22B1/006Y02E20/14
    • The invention relates to a system and a method for producing hot water and/or steam and for storing water in liquid and/or gaseous form for use for a gas turbine power plant (1) having a compressor (1.2) and a turbine (1.5), using a system (2) for producing hot water and/or steam that comprises at least one storage system having at least one storage container (2.1, 2.2) for storing the water, in which storage container the water is heated by supplying energy, wherein the energy is provided from at least one external energy source that is arranged outside the gas turbine power plant (1) and/or the system (2), and wherein the hot water and/or the steam is used for injecting into a fluid flow between the compressor and the turbine and/or into the turbine (1.5) of the gas turbine power plant, and wherein according to the method the hot water and/or the steam is injected into a fluid flow between the compressor (1.2) and the turbine (1.5) and/or into the turbine (1.5) of the gas turbine power plant (1) in an open process. The supplied energy for heating the water is advantageously provided from negative reserve power or excess electricity.
    • 本发明涉及一种系统和用于产生热水和/或蒸汽的方法和用于在液体和/或气态形式使用储存水用于燃气涡轮机发电设备(1),具有压缩机(1.2)和涡轮(1.5 ),使用一个系统(2)用于产生热水和/或蒸汽确实包含至少一个存储系统,其具有至少一个存储容器(2.1,2.2),用于存储水,在这种储存容器中的水通过供给能量加热 ,worin能量从至少一个外部能量源提供并布置在燃气涡轮发电设备(1)和/或所述系统(2)外,和worin热水和/或蒸汽用于注入到 压缩机和涡轮机和/或进入燃气涡轮发电设备的涡轮机(1.5),和worin雅丁给该方法的热水和/或蒸汽之间的流体流动被注入到压缩机之间的流体流动(1.2) 和所述涡轮机(1.5)和/或进入燃气轮机POW的涡轮机(1.5) 他在一个开放的处理设备(1)。 用于加热水供应的能量有利地由负备用电源或多余的电力提供。
    • 9. 发明公开
    • Combined cycle power generating system
    • Kombiniertes Kreislauf-Stromerzeugungssystem
    • EP2503110A1
    • 2012-09-26
    • EP11159911.4
    • 2011-03-25
    • Caterpillar Motoren GmbH & Co. KG
    • Reeh, Jens-Uwe
    • F01K3/18F01K13/00F01K23/06F01K23/10F01K25/08F22B1/18
    • F01K23/10F01K3/185F01K13/00F01K23/067F01K25/08F22B1/1807Y02E20/16Y02E20/18Y02E20/363
    • According to an aspect of the present disclosure, a combined cycle power generating system (100) may comprise at least one genset (130A,130B) for generating power having at least two waste heat sources; a direct organic Rankine cycle system (200) with a working medium, the direct organic Rankine cycle system (200) comprising a modular heat rejection system (230) and an organic rankine turbine module (210,410); wherein the modular heat rejection system (230) comprises a common vapor separator (232) and a boiler sub-system (234) associated to each of the at least two waste heat sources, and each boiler sub-system (234) is configured to transfer heat of the respective waste heat source to the working medium, and the vapor separator (232) is configured to derive a working medium gaseous phase from the working medium exiting each of the boiler sub-systems (234) and provide the working medium gaseous phase to the organic Rankine turbine module (210,410) for power generation.
    • 根据本公开的一个方面,组合循环发电系统(100)可以包括用于产生具有至少两个废热源的动力的至少一个发电机组(130A,130B) 具有工作介质的直接有机朗肯循环系统(200),所述直接有机朗肯循环系统(200)包括模块化散热系统(230)和有机液位涡轮机模块(210,410); 其中所述模块化排热系统(230)包括与所述至少两个废热源中的每一个相关联的公共蒸气分离器(232)和锅炉子系统(234),并且每个锅炉子系统(234)被配置为 将相应的废热源的热传递到工作介质,并且蒸汽分离器(232)构造成从离开每个锅炉子系统(234)的工作介质中导出工作介质气相,并提供工作介质气体 相到有机朗肯汽轮机模块(210,410)发电。
    • 10. 发明公开
    • HEAT ENGINE AND HEAT TO ELECTRICITY SYSTEMS AND METHODS
    • 维也纳公司
    • EP2478201A1
    • 2012-07-25
    • EP10817804.7
    • 2010-09-16
    • Echogen Power Systems, Inc.
    • HELD, Timothy, J.HOSTLER, StephenMILLER, Jason, D.HUME, Brian, F.
    • F02G5/00
    • F01K25/103F01K3/185F01K3/186F01K7/165F24H2240/12Y02T10/16
    • A waste heat recovery system, method and device executes a thermodynamic cycle using a working fluid in a working fluid circuit which has a high pressure side and a low pressure side. Components of the system in the working fluid circuit include a waste heat exchanger in thermal communication with a waste heat source also connected to the working fluid circuit, whereby thermal energy is transferred from the waste heat source to the working fluid in the working fluid circuit, an expander located between the high pressure side and the low pressure side of the working fluid circuit, the expander operative to convert a pressure/enthalpy drop in the working fluid to mechanical energy, a recuperator in the working fluid circuit operative to transfer thermal energy between the high pressure side and the low pressure side of the working fluid circuit, a cooler in thermal communication with the low pressure side of the working fluid circuit operative to control temperature of the working fluid in the low side of the working fluid circuit, a pump in the working fluid circuit and connected to the low pressure side and to the high pressure side of the working fluid circuit and operative to move the working fluid through the working fluid circuit, and a mass management system connected to the working fluid circuit, the mass management system, method and device having a working fluid vessel connected to the low pressure side of the working fluid circuit and configured to passively control an amount of working fluid mass in the working fluid circuit.
    • 废热回收系统,方法和装置在具有高压侧和低压侧的工作流体回路中使用工作流体执行热力循环。 工作流体回路中的系统的部件包括与也连接到工作流体回路的废热源热连通的废热交换器,由此热能从废热源传送到工作流体回路中的工作流体, 位于工作流体回路的高压侧和低压侧之间的膨胀器,膨胀器可操作以将工作流体中的压力/焓降转换为机械能,工作流体回路中的换热器可操作以在 工作流体回路的高压侧和低压侧,与工作流体回路的低压侧热连通的冷却器,用于控制工作流体回路的低侧的工作流体的温度,泵 在工作流体回路中并连接到工作流体回路的低压侧和高压侧 可操作地将工作流体移动通过工作流体回路,以及连接到工作流体回路的质量管理系统,质量管理系统,方法和装置,其具有连接到工作流体回路的低压侧的工作流体容器, 以被动地控制工作流体回路中的工作流体质量。