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首页> 外文期刊>Journal of power sources >The Calibration Of A Model For Simulating The Thermal And Electrical Performance Of A 2.8kw_(ac) Solid-oxide Fuel Cell Micro-cogeneration Device
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The Calibration Of A Model For Simulating The Thermal And Electrical Performance Of A 2.8kw_(ac) Solid-oxide Fuel Cell Micro-cogeneration Device

机译:模拟2.8kw_(ac)固体氧化物燃料电池微型热电联产装置热电性能模型的校准

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摘要

The concurrent production of heat and electricity within residential buildings using solid-oxide fuel cell (SOFC) micro-cogeneration devices has the potential to reduce primary energy consumption, greenhouse gas emissions, and air pollutants. A realistic assessment of this emerging technology requires the accurate simulation of the thermal and electrical production of SOFC micro-cogeneration devices concurrent with the simulation of the building, its occupants, and coupled plant components. The calibration of such a model using empirical data gathered from experiments conducted with a 2.8 kW_(AC) SOFC micro-cogeneration device is demonstrated. The experimental configuration, types of instrumentation employed, and the operating scenarios examined are treated. The propagation of measurement uncertainty into the derived quantities that are necessary for model calibration are demonstrated by focusing upon the SOFC micro-cogeneration system's gas-to-water heat exchanger. The calibration coefficients necessary to accurately simulate the thermal and electrical performance of this prototype device are presented and the types of analyses enabled to study the potential of the technology are demonstrated.
机译:使用固体氧化物燃料电池(SOFC)微型热电联产设备在住宅建筑物内同时生产热和电,有可能减少一次能源消耗,温室气体排放和空气污染物。要对这种新兴技术进行现实评估,就需要对SOFC微型热电联产设备的热和电生产进行精确的仿真,同时还要对建筑物,其乘员和耦合的工厂组件进行仿真。演示了使用从2.8 kW_(AC)SOFC微型热电联产设备进行的实验中收集的经验数据对这种模型进行的校准。处理了实验配置,使用的仪器类型以及检查的操作方案。通过关注SOFC微型热电联产系统的气水热交换器,可以证明将测量不确定度传播到模型校准所需的导出量中。介绍了精确模拟该原型设备的热和电性能所必需的校准系数,并展示了能够研究该技术潜力的分析类型。

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