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    • 51. 发明授权
    • Hybrid water heater
    • 混合热水器
    • US07020387B1
    • 2006-03-28
    • US11091465
    • 2005-03-28
    • James W. Andrakin
    • James W. Andrakin
    • F24H1/10
    • F24H1/10F24H2240/10Y10S429/90Y10S429/901
    • A tankless water heater powered by a fuel cell. In preferred embodiments, a fuel cell powered water heater in which the fuel cell is electrically connected to the electrical system of the building in which the water heater is installed as well as to the public electrical power grid for providing emergency power to the building and/or power to the public electrical power grid, respectively. In alternative preferred embodiments, a tankless, solid oxide fuel cell powered water heater which utilizes heat from exhaust gases to heat input oxidant gases and, optionally, can be cooled by routing excess heat to the exterior of the building on hot days.
    • 由燃料电池供电的无罐式热水器。 在优选实施例中,一种燃料电池供电的热水器,其中燃料电池电连接到其中安装热水器的建筑物的电气系统以及公共电网,以向建筑物提供应急电力和/ 或分配给公共电网的电力。 在替代的优选实施例中,一种无罐式固体氧化物燃料电池供电的热水器,其利用来自废气的热量加热输入的氧化剂气体,并且可选地可以通过在热天内将多余的热量路由到建筑物的外部来冷却。
    • 52. 发明申请
    • Sheldon electro-matrix core
    • 谢尔顿电矩阵核心
    • US20040004005A1
    • 2004-01-08
    • US10328901
    • 2002-12-24
    • Carlton W. Sheldon
    • C25B001/04
    • C25B1/04C25B9/06F23D14/28F24H2240/10Y02E60/366Y02P20/134
    • An improved scheme for dissociating water into hydrogen and oxygen is provided in which a two dimensional matrix of electrodes is provided in a reaction vessel. The electrodes are connected to a source of electrical power for providing a potential difference there between sufficient for dissociating the water. The matrix includes a smallest two dimensional repeating group that consists of four electrodes arranged in a quadrilateral clockwise plus, minus, plus, minus. The hydrogen can be used for burning, running an internal combustion engine, or for providing electrical power in a fuel cell. Core water from the matrix can also be used directly as heating water. Direct current, or switched direct current can be used for generating hydrogen while AC sources can be used for generating heat.
    • 提供了一种用于将水解离成氢和氧的改进方案,其中在反应容器中提供二维电极基质。 电极连接到电源,以在其间提供足够的离解水的电位差。 该矩阵包括最小的二维重复组,其由四个电极排列成四边形顺时针加,减,加,减。 氢气可用于燃烧,运行内燃机或用于在燃料电池中提供电力。 基质中的核心水也可以直接用作加热水。 直流或直流电可用于产生氢气,而交流电源可用于产生热量。
    • 58. 发明授权
    • Control unit for fuel-cell power generation apparatus, and control method, control program and computer-readable record medium with control program for the same
    • 用于燃料电池发电装置的控制单元,以及具有用于其的控制程序的控制方法,控制程序和计算机可读记录介质
    • US08735009B2
    • 2014-05-27
    • US11631412
    • 2005-07-05
    • Shigeaki MatsubayashiMasataka OzekiYoshikazu Tanaka
    • Shigeaki MatsubayashiMasataka OzekiYoshikazu Tanaka
    • H01M8/04
    • F24D17/001F24H2240/10H01M8/04052H01M8/04604H01M8/04955H01M8/04992H01M2250/10H01M2250/405Y02B90/14Y02B90/16
    • A control unit operates a fuel-cell power generation apparatus efficiently according to power consumption and supplied hot-water heat consumption which are different in each home. A generated-power command-pattern creation section creates a plurality of generated-power command patterns which are obtained from a combination of a start time and a stop time of the fuel-cell power generation apparatus, based on a power-consumption prediction value. A hot-water storage-tank heat-quantity calculation section calculates a stored hot-water heat quantity for a predetermined period in a hot-water storage tank, based on a supplied hot-water heat-consumption prediction. A fuel-cell system-energy calculation section calculates fuel-cell system energy which indicates the energy of a fuel required in hot-water supply equipment and electricity required in electric equipment when the fuel-cell power generation apparatus is operated in each generated-power command pattern. Additionally, an optimum command-pattern selection section operates the fuel-cell power generation apparatus in a generated-power command pattern which minimizes the fuel-cell system energy.
    • 控制单元根据每个家庭不同的功耗和供给的热水热消耗有效地操作燃料电池发电装置。 生成功率指令模式生成部根据功耗预测值,生成由燃料电池发电装置的起动时间和停止时间的组合获得的多个生成电力指令模式。 热水储存库热量计算部基于所供给的热水热消耗预测,在热水储存箱中计算规定期间的蓄热热水量。 燃料电池系统能量计算部分计算燃料电池系统能量,该燃料电池系统能量指示在燃料电池发电装置以每个发电功率运行时,热水供应设备中所需的燃料的能量和电气设备中所需的电力 命令模式 另外,最佳指令模式选择部分以燃料电池系统能量最小化的生成功率命令模式来操作燃料电池发电装置。
    • 60. 发明授权
    • Complex power generation system and method for supplying heated water thereof
    • 复合发电系统及其加热水的供给方法
    • US08445155B2
    • 2013-05-21
    • US13336525
    • 2011-12-23
    • Soo Young Park
    • Soo Young Park
    • H01M8/04
    • H01M8/04014F24D3/18F24D2200/19F24H4/02F24H2240/10H01M8/0656Y02B30/12Y02B30/52
    • A complex power generation system according to an embodiment of the present invention may include a fuel cell module having a first heat exchanger and a second heat exchanger configured to generate a direct current by means of an electrochemical reaction between hydrogen and oxygen, a first cycle configured to receive hot water in a first temperature range from the first heat exchanger to supply to a heat pump, and receive hot water in a second temperature range from the heat pump to supply to the first heat exchanger, and a second cycle configured to receive hot water in a third temperature range from the heat pump to discharge hot water in a fourth temperature range through the second heat exchanger, thereby enhancing a heating performance and increasing a thermal efficiency of the overall system.
    • 根据本发明的实施例的复合发电系统可以包括具有第一热交换器和第二热交换器的燃料电池模块,所述第一热交换器和第二热交换器被配置为通过氢和氧之间的电化学反应产生直流电, 在第一温度范围内接收来自第一热交换器的热水供应到热泵,并且在从热泵到第一热交换器的第二温度范围内接收热水,以及被配置为接收热量的第二循环 在来自热泵的第三温度范围内的水通过第二热交换器在第四温度范围内排出热水,从而提高整个系统的加热性能和提高热效率。