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Unitized Regenerative Fuel Cell System Gas Storage-Radiator Development

机译:单元式蓄热式燃料电池系统储气-散热器开发

摘要

High-energy-density regenerative fuel cell systems that are used for energy storage require novel approaches to integrating components in order to preserve mass and volume. A lightweight unitized regenerative fuel cell (URFC) energy storage system concept is being developed at the NASA Glenn Research Center. This URFC system minimizes mass by using the surface area of the hydrogen and oxygen storage tanks as radiating heat surfaces for overall thermal control of the system. The waste heat generated by the URFC stack during charging and discharging is transferred from the cell stack to the surface of each tank by loop heat pipes, which are coiled around each tank and covered with a thin layer of thermally conductive carbon composite. The thin layer of carbon composite acts as a fin structure that spreads the heat away from the heat pipe and across the entire tank surface. Two different-sized commercial-grade composite tanks were constructed with integral heat pipes and tested in a thermal vacuum chamber to examine the feasibility of using the storage tanks as system radiators. The storage tank-radiators were subjected to different steady-state heat loads and varying heat load profiles. The surface emissivity and specific heat capacity of each tank were calculated. In the future, the results will be incorporated into a model that simulates the performance of similar radiators using lightweight, spacerated carbon composite tanks.
机译:用于能量存储的高能量密度再生燃料电池系统需要新颖的方法来集成组件,以保持质量和体积。美国国家航空航天局格伦研究中心正在开发一种轻型的单元式可再生燃料电池(URFC)能量存储系统概念。该URFC系统通过使用氢气和氧气储罐的表面积作为辐射热表面来最小化质量,以进行系统的整体热控制。 URFC堆栈在充电和放电过程中产生的废热通过环路热管从电池堆栈传递到每个池的表面,这些环路围绕每个池盘绕,并覆盖有一层导热碳复合材料。碳复合材料的薄层充当鳍状结构,将热量从热管散布开来,并散布到整个储罐表面。用集成的热管构造了两个不同尺寸的商业级复合储罐,并在热真空室内进行了测试,以检验将储罐用作系统散热器的可行性。储罐散热器受到不同的稳态热负荷和变化的热负荷曲线。计算每个槽的表面发射率和比热容。将来,该结果将被纳入一个模型,该模型使用轻巧的,间隔开的碳复合材料储罐来模拟类似散热器的性能。

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