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    • 83. 发明授权
    • Cogeneration system
    • 热电联产系统
    • US07718290B2
    • 2010-05-18
    • US11578724
    • 2006-02-17
    • Tetsuya UedaHideo OharaAkinori Yukimasa
    • Tetsuya UedaHideo OharaAkinori Yukimasa
    • H01M8/04
    • F24D11/005F24D2200/16F24D2200/26F24H1/18F24H2240/06F24H2240/10F28D20/0034F28D21/0007F28F27/00F28F2265/10H01M2008/1095H01M2250/10H01M2250/402H01M2250/405Y02B90/12Y02B90/14Y02B90/16Y02E20/14Y02E60/142Y02P80/15
    • A cogeneration system of the present invention includes: an electric power generator (5); a cooling circuit (10) configured to cool the electric power generator (5) with a first heat transfer medium; a heat exchanger (16) provided on the cooling circuit (10); an exhaust heat recovery circuit (12) through which a second heat transfer medium that exchanges heat with the first heat transfer medium via the heat exchanger (16) flows; a heat storage unit (20) connected to the exhaust heat recovery circuit (12) and configured to store the second heat transfer medium that has undergone a heat exchange by the heat exchanger (16); and a controller (21), wherein a first temperature sensor (17), and a heater to which electric power is supplied from the electric power generator (5), are connected, in this order, downstream of the heat exchanger (16) in a direction in which the second heat transfer medium flows, and the controller (21) controls a flow rate of a circulating pump (13) so that, based on a temperature detected by the first temperature sensor (17), the detected temperature becomes a predetermined target temperature. In addition to preventing water temperature decrease in heat recovery and ensuring safety, this configuration can keep water temperature high at all times.
    • 本发明的热电联产系统包括:发电机(5); 冷却回路(10),被配置为用第一传热介质冷却所述发电机(5); 设置在所述冷却回路(10)上的热交换器(16)。 通过热交换器(16)与第一传热介质进行热交换的第二传热介质通过该排气热回收回路(12); 连接到排气热回收回路(12)并构造成存储由热交换器(16)进行热交换的第二传热介质的蓄热单元(20)。 以及控制器(21),其中第一温度传感器(17)和从发电机(5)供应电力的加热器依次连接在热交换器(16)的下游 第二传热介质流动的方向,并且控制器(21)控制循环泵(13)的流量,使得基于由第一温度传感器(17)检测到的温度,检测到的温度变为 预定目标温度。 除了防止热回收中的水温下降和确保安全性之外,这种配置可以始终保持水温高。
    • 85. 发明申请
    • Fuel Cell Power Generation System
    • 燃料电池发电系统
    • US20080026271A1
    • 2008-01-31
    • US11632283
    • 2005-07-14
    • Tetsuya UedaShinji MiyauchiYoshikazu Tanaka
    • Tetsuya UedaShinji MiyauchiYoshikazu Tanaka
    • H01M8/04
    • H01M8/04679H01M8/0432H01M8/0438H01M8/04559H01M8/04574H01M8/04753H01M8/0494
    • A fuel cell power generation system includes: a sensor unit (1) capable of sensing an abnormality in operation states; a protection controller device (2) configured to output a predetermined protective operation command signal based on at least an output signal from the sensor unit; a protective operation unit (4) configured to perform a predetermined protective operation based on the protective operation command signal that is output from the protection controller device; and a simulation signal generator (5) configured to output a simulation signal for causing the protection controller device to output the protective operation command signal; the fuel cell power generation system having an abnormality self-diagnostic function to check the protective operation of the protective operation unit by inputting the simulation signal into the protection controller device by the simulation signal generator and thereby causing the protection controller device to output the protective operation command signal; and the protection controller device including a failure determination unit (3) configured to determine a failure in the sensor unit; and the fuel cell power generation system having a failure self-diagnostic function to check the protective operation of the protective operation unit by outputting the protective operation command signal from the protection controller device if the failure determination unit determines a failure in the sensor unit, and to check the protective operation even if the failure determination unit determines no failure in the sensor unit.
    • 一种燃料电池发电系统,包括:能够检测运行状态异常的传感器单元(1); 保护控制器装置(2),被配置为至少基于来自所述传感器单元的输出信号输出预定的保护操作命令信号; 保护操作单元(4),被配置为基于从保护控制器设备输出的保护操作命令信号执行预定的保护操作; 以及模拟信号发生器(5),其被配置为输出用于使所述保护控制器装置输出所述保护操作命令信号的模拟信号; 燃料电池发电系统具有异常自我诊断功能,通过模拟信号发生器将模拟信号输入到保护控制装置中,检查保护操作单元的保护动作,从而使保护控制装置输出保护动作 指挥信号 所述保护控制装置包括被配置为确定所述传感器单元中的故障的故障判定单元(3) 以及所述燃料电池发电系统具有故障自我诊断功能,如果所述故障确定单元确定所述传感器单元中的故障,则通过从所述保护控制器装置输出保护操作命令信号来检查所述保护操作单元的保护操作;以及 即使故障确定单元确定传感器单元中的故障,也检查保护操作。
    • 90. 发明授权
    • Fuel cell generation system and method
    • 燃料电池生成系统及方法
    • US07011901B2
    • 2006-03-14
    • US10085567
    • 2002-02-27
    • Tetsuya UedaShinji MiyauchiAkinari Nakamura
    • Tetsuya UedaShinji MiyauchiAkinari Nakamura
    • H01M8/06
    • H01M8/0625H01M8/00H01M8/247
    • A fuel cell generation system, in which an interior of a package is partitioned into a gas path compartment and a non gas compartment with a partition wall, a component through which flammable gas flows is placed within the gas path compartment, a part of the frame member of the package constituting the gas path compartment is provided with gas path compartment inlets, a gas path compartment outlet and a ventilation fan, a component through which the flammable gas does not flows is placed within the non gas compartment, and a part of the frame member of the package of the non gas compartment is provided with a non gas compartment inlet, allowing a blower inlet to open into an interior of the non gas compartment and allowing an air outlet to open into an exterior of the package.
    • 一种燃料电池产生系统,其中包装内部被分隔成气路隔室和具有分隔壁的非气室,可燃气体流过的部件被放置在气路室内,框架的一部分 构成气路隔室的包装件设置有气路隔室入口,气路室出口和通风扇,可燃气体不流过的部件放置在非气室内,部分 非气体隔室的包装件的框架构件设置有非气体隔室入口,允许鼓风机入口打开到非气体室的内部,并允许空气出口打开到包装的外部。