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Performance evaluation of different configurations of biogas-fuelled SOFC micro-CHP systems for residential applications

机译:住宅应用中以沼气为燃料的SOFC微型热电联产系统不同配置的性能评估

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摘要

Three configurations of solid oxide fuel cell (SOFC) micro-combined heat and power (micro-CHP) systems are studied with a particular emphasis on the application for single-family detached dwellings. Biogas is considered to be the primary fuel for the systems studied. In each system, a different method is used for processing the biogas fuel to prevent carbon deposition over the anode of the cells used in the SOFC stack. The anode exit gas recirculation, steamreforming, and partial oxidation are the methods employed in systems I\u2013III, respectively. The results predicted through computer simulation of these systems confirm that the net AC electrical efficiency of around 42.4%, 41.7% and 33.9% are attainable for systems I\u2013III, respectively. Depending on the size, location and building type and design, all the systems studied are suitable to provide the domestic hot water and electric power demands for residential dwellings. The effect of the cell operating voltage at different fuel utilization ratios on the number of cells required for the SOFC stack to generate around 1 kW net AC electric power, the thermal-to-electric ratio (TER), the net AC electrical and CHP efficiencies, the biogas fuel consumption, and the excess air required for controlling the SOFC stack temperature is also studied through a detailed sensitivity analysis. The results point out that the cell design voltage is higher than the cell voltage at which the minimum number of cells is obtained for the SOFC stack.
机译:研究了固体氧化物燃料电池(SOFC)微型热电联产(micro-CHP)系统的三种配置,其中特别强调了单户独立住宅的应用。沼气被认为是所研究系统的主要燃料。在每个系统中,使用不同的方法来处理沼气燃料,以防止碳沉积在SOFC堆中所用电池的阳极上。阳极出口气体再循环,蒸汽重整和部分氧化分别是系统I \ u2013III中使用的方法。通过这些系统的计算机仿真预测的结果证实,系统I \ u2013III的净交流电效率分别约为42.4%,41.7%和33.9%。根据大小,位置以及建筑物类型和设计,所有研究的系统都适合满足住宅的生活热水和电力需求。不同燃料利用率下的电池工作电压对SOFC电池组产生约1 kW净交流电,热电比(TER),净交流电和CHP效率所需的电池数量的影响此外,还通过详细的灵敏度分析研究了沼气燃料消耗和控制SOFC烟囱温度所需的过量空气。结果指出,电池设计电压高于为SOFC堆栈获得最少电池数量的电池电压。

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