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首页> 外文期刊>Journal of power sources >The calibration and validation of a model for simulating the thermal and electrical performance of a 1 kW_(AC) proton-exchange membrane fuel-cell micro-cogeneration device
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The calibration and validation of a model for simulating the thermal and electrical performance of a 1 kW_(AC) proton-exchange membrane fuel-cell micro-cogeneration device

机译:用于模拟1 kW_(AC)质子交换膜燃料电池微型热电联产装置的热和电性能的模型的校准和验证

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摘要

The cogeneration of heat and electricity using small-scale fuel-cell devices may lead to reduced energy consumption, lower greenhouse gas emissions, and less reliance on the central electrical grid. Without accurate methods to simulate thermal and electrical production concurrently with the operation of coupled plant components and the demands of the host building and its occupants, these potential benefits can not be fully assessed nor can the deployment of fuel-cell micro-cogeneration be optimally configured. Enhancements are proposed to an existing fuel-cell micro-cogeneration model and then its calibration is demonstrated using empirical data gathered from experiments conducted with a 1.0 kW_(AC) PEMFC micro-cogeneration device. The experimental configuration, types of instrumentation employed, and the operating scenarios examined are treated. The calibration coefficients necessary to accurately simulate the thermal and electrical performance of this device are presented and then the validity of the model's functional form and its calibration are assessed through the comparison of model predictions to measurements from a disjunct set of 10 tests.
机译:使用小型燃料电池设备的热电联产可以减少能源消耗,减少温室气体排放,并减少对中央电网的依赖。如果没有精确的方法来模拟热电生产以及耦合的工厂组件的运行以及主机建筑及其居住者的需求,那么这些潜在的好处将无法得到充分评估,也无法优化配置燃料电池微型热电联产的部署。建议对现有的燃料电池微型热电联产模型进行增强,然后使用从1.0 kW_(AC)PEMFC微型热电联产设备进行的实验收集的经验数据证明其校准。处理了实验配置,使用的仪器类型以及检查的操作方案。提出了精确模拟该设备的热和电性能所必需的校准系数,然后通过将模型预测与从一组10个测试中分离出来的测量结果进行比较,来评估模型功能形式及其校准的有效性。

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