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    • 63. 发明申请
    • Systems and methods for power generation with carbon dioxide isolation
    • 用二氧化碳隔离发电的系统和方法
    • US20070006592A1
    • 2007-01-11
    • US11178165
    • 2005-07-08
    • Chellappa BalanMichael BowmanJoell HibshmanAndrei EvuletJennifer Molaison
    • Chellappa BalanMichael BowmanJoell HibshmanAndrei EvuletJennifer Molaison
    • F02C6/18
    • F02C9/40F02C3/22F02C3/34Y02E20/16
    • A power generation system and method includes a first gas turbine system comprising a first combustion chamber configured to combust a first fuel stream of primarily hydrogen that is substantially free of carbon-based fuels. The first gas turbine system also includes a first compressor configured to supply a first portion of compressed oxidant to the first combustion chamber and a first turbine configured to receive a first discharge from the first combustion chamber and generate a first exhaust and electrical energy. The power generation system further includes a second gas turbine system comprising a second combustion chamber configured to combust a second fuel stream to generate a second discharge. The first compressor of the first gas turbine system is configured to supply a second portion of compressed oxidant to the second combustion chamber. The second turbine system also includes a second turbine configured to receive the second discharge from the second combustion chamber to generate a second exhaust and electrical energy and a second compressor configured to receive the second discharge comprising carbon dioxide. The second compressor is also configured to discharge a recycle stream to the second combustion chamber and a split stream to a separator system adapted to recover carbon dioxide.
    • 发电系统和方法包括第一燃气轮机系统,其包括构造成燃烧基本上不含碳基燃料的主要为氢的第一燃料流的第一燃烧室。 第一燃气轮机系统还包括配置成将第一部分压缩氧化剂供应到第一燃烧室的第一压缩机和被配置为接收来自第一燃烧室的第一次排放并产生第一排气和电能的第一涡轮机。 发电系统还包括第二燃气轮机系统,其包括被配置为燃烧第二燃料流以产生第二排放的第二燃烧室。 第一燃气轮机系统的第一压缩机构造成将第二部分的压缩氧化剂供应到第二燃烧室。 第二涡轮机系统还包括构造成从第二燃烧室接收第二排出物以产生第二排气和电能的第二涡轮机,以及配置成接收包括二氧化碳的第二排放物的第二压缩机。 第二压缩机还构造成将再循环流排放到第二燃烧室,并将分流流分配到适于回收二氧化碳的分离器系统。
    • 64. 发明授权
    • Turbo recuperator device
    • 涡轮换热装置
    • US06978621B2
    • 2005-12-27
    • US10331342
    • 2002-12-31
    • Ronald Scott BunkerChellappa Balan
    • Ronald Scott BunkerChellappa Balan
    • F01D13/02F02C3/04F02C6/08F02C6/18F02C7/12F02C7/18
    • F02C6/08F01D13/02F02C3/04F02C6/18F02C7/12F02C7/18F05D2260/205
    • A device and method for recuperating a gas turbine engine comprises a compressor being configured to receive a coolant fluid stream, to compress the coolant fluid stream and to discharge the compressed coolant fluid stream to a turbine in fluid communication with the compressor. The compressed coolant fluid stream undergoing thermal exchange within the turbine, exit the turbine thereafter. A source of a working fluid stream is in fluid communication with the turbine. The working fluid stream is fluidly isolated from a portion of the coolant fluid stream and undergoing thermodynamic expansion through the turbine to extract energy therefrom. Where desired, the entire coolant fluid stream is fluidly isolated from the working fluid stream. At least a portion of the coolant fluid stream is channeled downstream of the turbine to supply a preheated process fluid stream to an adjacent system.
    • 一种用于回收燃气涡轮发动机的装置和方法,包括压缩机,其构造成接收冷却剂流体流,以压缩冷却剂流体流并将压缩的冷却剂流体流排放到与压缩机流体连通的涡轮机。 在涡轮机内进行热交换的压缩的冷却剂流体流随后离开涡轮机。 工作流体流的源与涡轮流体连通。 工作流体流与冷却剂流体流的一部分流体隔离,并通过涡轮进行热力学膨胀,以从其中提取能量。 如果需要,整个冷却剂流体流与工作流体流流体隔离。 冷却剂流体流的至少一部分被引导到涡轮机的下游,以向相邻的系统提供预热的过程流体流。
    • 67. 发明申请
    • Integrated fuel cell hybrid power plant with controlled oxidant flow for combustion of spent fuel
    • 具有受控氧化剂流量的燃料电池混合动力发电厂用于乏燃料燃烧
    • US20050079395A1
    • 2005-04-14
    • US10681704
    • 2003-10-09
    • Balachandar VaratharajanChellappa BalanDebashis Dey
    • Balachandar VaratharajanChellappa BalanDebashis Dey
    • H01M8/04H01M8/06H01M8/12
    • H01M8/04111H01M8/04022H01M8/04708H01M8/04738H01M8/04776H01M8/0612H01M2008/1293H01M2250/407Y02E20/16Y02E60/563Y02P90/40
    • A hybrid power generation system for generating electrical power comprises a compressor for producing a compressed oxidant and a recuperator in flow communication with the compressor. The hybrid power generation system further comprises a fuel cell assembly comprising a plurality of fuel cells in flow communication with the recuperator to provide the compressed oxidant for the fuel cell assembly. The fuel cell assembly further comprises a cathode inlet for receiving the compressed oxidant, an anode inlet for receiving a fuel stream, an anode outlet in flow communication with an anode exhaust stream and a cathode outlet in flow communication with a cathode exhaust stream, wherein at least a portion of the fuel reacts with the oxidant to produce electrical power. The hybrid power generation system further comprises a tail gas burner in flow communication with the anode outlet and the cathode outlet. The tail gas burner is configured for combusting a mixture of at least a portion of the anode exhaust stream and at least a portion of the cathode exhaust stream and producing a hot compressed gas. A control system is used for controlling the amount of the cathode exhaust stream introduced in the tail gas burner for stable combustion and reduction of fuel and carbon monoxide emission. The hot compressed gas from the tail gas burner is introduced to a turbine, where the hot compressed gas is expanded, thereby producing electrical power and an expanded gas.
    • 用于产生电力的混合动力发电系统包括用于生产压缩氧化剂的压缩机和与压缩机流动连通的换热器。 混合动力发电系统还包括燃料电池组件,该燃料电池组件包括多个燃料电池,其与该换热器流体连通以提供用于燃料电池组件的压缩氧化剂。 燃料电池组件还包括用于接收压缩氧化剂的阴极入口,用于接收燃料流的阳极入口,与阳极废气流流动连通的阳极出口和与阴极排气流流动连通的阴极出口,其中在 燃料的至少一部分与氧化剂反应产生电力。 混合发电系统还包括与阳极出口和阴极出口流动连通的尾气燃烧器。 尾气燃烧器被配置用于燃烧阳极废气流的至少一部分和阴极废气流的至少一部分的混合物并产生热压缩气体。 控制系统用于控制引入尾气燃烧器中的阴极排气流的量,用于稳定燃烧和减少燃料和一氧化碳排放。 来自尾气燃烧器的热压缩气体被引入涡轮机,其中热压缩气体膨胀,从而产生电力和膨胀气体。