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Working conditions of an Energy Storage System based on a high temperature PEM Fuel Cell

机译:基于高温PEM燃料电池的能量存储系统的工作条件

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In this paper, a Fuel Cell based Energy Storage System (FC-ESS) was investigated for enhancing the range of a electrical commuter vehicle. While using a special High Temperature Polymer Electrolyte Membrane (HTPEM) fuel cell with a nominal stack output power of 6 kW, the FC-ESS must be heated up to 120??C. A Fuel Cell Control Unit (FCCU) was created to fulfil the stack working conditions on anode and cathode. To evaluate the system concept a test bench including all required components to run the FC-ESS was built up. Results about the thermal heat up process e.g. a thermal heat up gradient of 2 K/min using a 1.3 kW electric heater integrated in the Tri Ethylene Glycol filled thermal system were obtained. The fuel cell stack polarization curve was measured making a ramp measurement from 10 A to 50 A. Hydrogen purge loss was disclosed between 3???12 % on constant stack electric power set points varying between 1???3 kW leading to an overall measured electric efficiency higher than 46 %. Referring on real traction power demand measurements of a demonstrator car for NEDC, WLTP and a specific commuter cycle between Stuttgart (ST) and Lampoldshausen (LA), the requested hydrogen storage capacity for different working conditions of the FC-ESS was calculated using different power set points. It was shown that a 6 kW FC-ESS with 0.5 kg stored hydrogen mass could extend the range of an FC-ESS equipped electric car up to 200 kilometres on NEDC and 196 km on WLTP. While using different fuel cell power set points commuter test cycle between ST-LA-ST can be driven either driven on the motorway or the freeway using the same hydrogen storage.
机译:本文研究了一种基于燃料电池的燃料电池的能量存储系统(FC-ESS),用于增强电气通勤车辆的范围。在使用具有6 kW的标称堆叠输出功率的特殊高温聚合物电解质膜(HTPEM)燃料电池的同时,必须加热至120℃的FC-ES。创建燃料电池控制单元(FCCU)以满足阳极和阴极上的堆叠工作条件。为了评估系统概念,建立了一个测试台,包括运行FC-ESS所需的所有组件。结果热换热过程大。获得了使用1.3 kW电加热器集成在三乙二醇填充的热系统中的2k / min的热加热梯度。测量燃料电池堆偏振曲线,从10A到50 A中测量斜坡测量。在恒定的堆叠电力设定点在1Ω·恒定的电力设定点达到氢气吹扫损失,从而导致总体的3 kW测量电效率高于46%。参考斯图加特(ST)和Lampoldshausen(LAMAL)之间的NEDC,WLTP和特定通勤周期的演示车的真实牵引力测量,使用不同的功率计算用于不同功率的不同工作条件的所要求的储氢容量设定点。结果表明,具有0.5公斤储存的氢气质量的6千瓦FC-ESS可以将装备的FC-ESS的范围扩展到NEDC上可达200​​公里的电动车和196公里。在使用不同的燃料电池电力设定点时,可以在高速公路或使用相同的储氢在高速公路或高速公路上驱动ST-LA-ST之间的通勤试验周期。

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