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    • 1. 发明公开
    • 가스성 매체의 스트림의 질량 유동을 측정하기 위한 방법 및 상기 방법을 실행하기 위한 연료 공급 시스템
    • 用于测量气体介质流的质量流量的方法和用于导入方法的燃料供应系统
    • KR1020160007398A
    • 2016-01-20
    • KR1020150097049
    • 2015-07-08
    • 제네럴 일렉트릭 테크놀러지 게엠베하
    • 랑볼프강진한스페테르가쎄르-파가니마리아-벨렌
    • G01F1/86F02C7/22F02C7/224
    • G01F1/6842F02C7/222G01F1/68G01F1/84G01F1/86
    • 특정파이프(F1-Fx)를통해서흐르는상승한제 1 온도(T2)의가스성매체의스트림의질량유동(M1-Mx)을측정하기위한방법이제공되고, 상기방법은: a) 공지된질량유동(M)과상기제 1 온도보다대체로낮은제 2 온도(T1)를갖는상기가스성매체의기준스트림을제공하는단계; b) 상기특정파이프(F1-Fx)를통하여흐르는상승한제 1 온도(T2)의가스성매체의상기스트림과상기기준스트림을혼합시키는단계; c) 상기특정파이프(F1-Fx)를통하여흐르는상승한제 1 온도(T2)의가스성매체의상기스트림과상기기준스트림의혼합물의결과적온도(T31-T3x)를측정하는단계; d) 상기기준스트림의공지된질량유동(M)으로부터상기특정파이프(F1-Fx)를통하여흐르는상승한제 1 온도(T2)의가스성매체의상기스트림의비공지된질량유동을결정하는단계로서, 상기상승한제 1 온도(T2), 상기기준스트림의상기제 2 온도(T1) 및상기측정된결과적온도(T31-T3x)는다음공식:에따르고, 여기서 Mx는비공지된질량유동이고, M는상기기준스트림의공지된질량유동이고, T1은제 2 온도이고, T2는상승한제 1 온도이고, T3x는혼합후의결과적온도인, 상기결정단계를포함한다.
    • 提供了一种测量在特定管道(F1至Fx)中流动的具有上升的第一温度(T2)的气体介质的流的质量流量(M1至Mx)的方法。 该方法包括:步骤a)提供具有通常低于已知质量流(Mref)和第一温度(T2)的第二温度(T1)的气态介质的参考流; 将具有上升的第一温度(T2)的气态介质的流与参考流混合的步骤b) 测量具有上升的第一温度(T2)的气体介质的流和参考流的混合物的最终温度(T31至T3x)的步骤c) 以及步骤d)从参考流的已知质量流(Mref)确定具有上升的第一温度(T2)的气态介质的流的未知质量流。
    • 4. 发明公开
    • 긴급 전력 공급 시스템을 포함하는 가스 터빈 발전 시스템
    • 包含紧急电源系统的气体涡轮发电系统
    • KR1020140097023A
    • 2014-08-06
    • KR1020140009397
    • 2014-01-27
    • 제네럴 일렉트릭 테크놀러지 게엠베하
    • 해름스악셀랑볼프강
    • F02C6/00H01M8/02H01M8/00
    • H02J11/00F01D21/00F02C9/46F05D2270/09H01M8/04089H01M8/04201H01M2250/10H02K7/1823Y02B90/14Y02E60/50Y10T307/615
    • The present invention relates to a gas turbine power generation system including an emergency power supply system (1) which comprises a hydrogen cooling type power generator (3) having hydrogen as a refrigerant, a plant hydrogen storage unit (4), power generator auxiliary bodies (5), and a fuel cell (2) using hydrogen as a fuel, wherein hydrogen fuel is supplied to the fuel cell (2) by passing through a line (20) from a hydrogen charging unit of the hydrogen cooling type power generator (3) when a power supply unit of the gas turbine power generation system is out of order or damaged. In a preferable embodiment, additional hydrogen is supplied to the fuel cell (2) by passing through a line (40) from the plant hydrogen storage unit (4), and/or additional hydrogen is supplied by passing through a line (50) from the power generator auxiliary bodies (5), when the power supply unit of the gas turbine power generation system is out of order or damaged.
    • 本发明涉及一种包括应急电源系统(1)的燃气轮机发电系统,该应急电源系统(1)包括具有氢作为制冷剂的氢冷却型发电机(3),工厂氢气储存单元(4),发电机辅助体 (5)和使用氢作为燃料的燃料电池(2),其中通过从氢冷却型发电机的氢气充电单元(20)通过管线(20)将氢燃料供给到燃料电池(2) 3)燃气轮机发电系统的电源单元故障或损坏时。 在优选实施例中,通过从植物氢存储单元(4)通过管线(40)将另外的氢气供应到燃料电池(2),和/或通过将管线(50)从 发电机辅助体(5),当燃气轮机发电系统的电源单元故障或损坏时。
    • 5. 发明公开
    • 제어 시스템
    • 控制系统
    • KR1020130095690A
    • 2013-08-28
    • KR1020130018272
    • 2013-02-20
    • 제네럴 일렉트릭 테크놀러지 게엠베하
    • 랑볼프강친한슈페터볼할데르하인츠안토난사스사비에르
    • F01D17/00F01D17/02G01P21/00G05B9/02
    • F02C9/00F01D17/02F01D21/003F05D2260/80F05D2260/84F05D2260/96F05D2270/083F23N5/24F23N2027/16G05B19/0428Y02B70/3241Y04S20/227
    • PURPOSE: A control system is provided to secure high flexibility for a sensor system, and high reliability and high availability for a facility with relatively low cost. CONSTITUTION: A control system monitors predetermined operation parameters, and includes a sensor system having redundant sensors (1 to 3). Measurement data from the sensor system is supplied to the input side of a central processing unit (5) in the control system. The output side of central processing unit communicates with operation control elements for turbines or power plants. A sensor side processor circuit (4) is allocated for at least the redundant sensors of the sensor system. The process circuit continuously checks the redundant sensors of the sensor system, and protects or blocks the input side from wrong signals in order to implement operation without errors. The processor circuit respectively forwards or additionally processes identified signals from the sensors without the errors in only one channel.
    • 目的:提供一种控制系统,以确保传感器系统的高灵活性,以及​​具有较低成本的设备的高可靠性和高可用性。 构成:控制系统监视预定的操作参数,并且包括具有冗余传感器(1至3)的传感器系统。 来自传感器系统的测量数据被提供给控制系统中的中央处理单元(5)的输入侧。 中央处理单元的输出侧与涡轮机或发电厂的运行控制元件通信。 至少传感器系统的冗余传感器分配传感器侧处理器电路(4)。 过程电路连续地检查传感器系统的冗余传感器,并保护或阻止输入端不被错误的信号,从而实现无错误的操作。 处理器电路分别转发或附加地处理来自传感器的识别信号,而不仅在一个通道中出现错误。