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Thermal Transpiration Based Pumping and Power Generation Devices

机译:基于热蒸腾的抽水和发电设备

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A combustion-driven thermal transpiration-based combustor is presented. The combustor was successfully applied in a self-sustaining gas pump system having no moving parts and using readily storable hydrocarbon fuel. Thermal transpiration was accomplished by meeting two essential conditions: (1) gas flow in the transitional or molecular regime using glass microfiber filters as transpiration membranes and (2) a temperature gradient through the membrane using catalytic combustion downstream of the membrane. The effect of the transpiration membrane pore size on the performance of the gas pump was studied, and the experimental result which was quantitatively consistent with theoretical predictions was reported. The gas pump system was then converted to a novel, complete portable power generation system by incorporating a single-chamber solid-oxide fuel cell (SOFC). The SOFC exhibited a maximum power density of 40 mW/cm~(2) at the temperature and fuel/oxygen concentrations within the transpiration gas pump.
机译:提出了一种燃烧驱动的基于热蒸腾的燃烧器。该燃烧器已成功应用于没有活动部件且使用易于储存的碳氢燃料的自持式气泵系统。通过满足两个基本条件来实现热蒸发:(1)使用玻璃微纤维过滤器作为蒸发膜的过渡或分子状态气流,以及(2)使用膜下游的催化燃烧通过膜的温度梯度。研究了蒸腾膜孔径对气泵性能的影响,并报道了与理论预测定量吻合的实验结果。然后,通过结合单腔固体氧化物燃料电池(SOFC),将气泵系统转换为新颖,完整的便携式发电系统。在蒸腾气泵内的温度和燃料/氧气浓度下,SOFC的最大功率密度为40 mW / cm〜(2)。

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