热化学可再生能源储存系统和操作

文档序号:157412 发布日期:2021-10-26 浏览:20次 >En<

阅读说明:本技术 热化学可再生能源储存系统和操作 (Thermochemical renewable energy storage system and operation ) 是由 J·F·克劳斯纳 J·彼得拉施 K·兰迪尔 N·拉马提安 于 2020-01-07 设计创作,主要内容包括:提供了一种用于能量存储和能量回收的系统和方法。一种电-电储能系统(80)包括热化学储能装置(10)、鼓风机(82)、压缩机(86)、涡轮机(88)和发电机(90)。TCES装置(10)包括容器(14)、多孔床(11)和加热器(16、16’)。多孔床(11)设置在容器(14)的内部容积(36)的内部。多孔床(11)包括反应材料(12)。反应材料(12)被设定为在被加热到还原温度时释放氧气,并在暴露于氧气时产生热量。加热器(16、16’)与反应材料(12)热接触。鼓风机(82)被设定为从内部容积(36)去除氧气。压缩机(86)构造成使氧气流入内部容积(36)。涡轮机(88)构造成从内部容积(36)接收加热的、贫氧的气体。发电机(90)被设定为由涡轮机(88)提供动力以发电。(A system and method for energy storage and energy recovery is provided. An electro-electric energy storage system (80) includes a thermochemical energy storage device (10), a blower (82), a compressor (86), a turbine (88), and a generator (90). The TCES device (10) includes a vessel (14), a porous bed (11), and heaters (16, 16&#39;). The porous bed (11) is disposed inside an interior volume (36) of the vessel (14). The porous bed (11) comprises a reactive material (12). The reactive material (12) is configured to release oxygen when heated to a reduction temperature and to generate heat when exposed to oxygen. The heater (16, 16&#39;) is in thermal contact with the reactive material (12). The blower (82) is configured to remove oxygen from the interior volume (36). The compressor (86) is configured to flow oxygen into the interior volume (36). The turbine (88) is configured to receive heated, oxygen-depleted gas from the interior volume (36). The generator (90) is configured to be powered by the turbine (88) to generate electricity.)

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