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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Experimental study on the performance of oil-free twin-screw expanders for recovering energy in fuel cell systems
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Experimental study on the performance of oil-free twin-screw expanders for recovering energy in fuel cell systems

机译:无油双螺杆扩张器对燃料电池系统中能量进行性能的实验研究

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摘要

Fuel cell systems are considered to be one of the best alternative power sources for automobiles to replace internal combustion engines. For the Proton Exchange Membrane fuel cell operated at the high pressure, adding an expander downstream the stack to recover the pressure energy of air exhausted from the stack is an effective way to reduce the actual power consumption of the compressor and improve overall system efficiency. This paper aims to explore operating characteristics of the twin-screw expander under different operating conditions and geometric construction, and thus find out proper design parameters. Hence, a detailed contrast experiment is performed on three expanders to investigate the effect of the suction port area and rotor length on the expander performance. Besides, the influences of rotating speed and suction pressure on the performance of expanders including mass flowrate, filling factor and recovered power are analyzed. By analyzing the experimental results, the relevant influence mechanisms of operating conditions on the expander performance are explained according to the equations of these performance parameters. Meanwhile, the reasons why the developed twin-screw expanders have unsatisfactory performance are recognized. Finally, the directions for further improvement and optimization of the oil-free dry twin-screw expanders used in fuel cells in the future work are pointed out based on the research results.
机译:燃料电池系统被认为是用于替换内燃机的汽车的最佳替代电源之一。对于在高压下操作的质子交换膜燃料电池,在堆叠下游添加膨胀机以恢复从堆叠中耗尽的空气的压力是减少压缩机实际功耗的有效途径,提高整体系统效率。本文旨在探讨不同操作条件和几何结构下双螺钉膨胀机的操作特性,从而找出适当的设计参数。因此,在三个扩展器上执行详细的对比实验,以研究吸入口区域和转子长度对扩展器性能的影响。此外,分析了旋转速度和吸入压力对包括质量流量,填充因子和回收功率的扩展器性能的影响。通过分析实验结果,根据这些性能参数的等式来解释扩展器性能的操作条件相关影响机制。同时,识别出现的双螺杆扩张器具有不令人满意的性能的原因。最后,基于研究结果,指出了未来工作中使用的无油干双螺杆扩张器的进一步改善和优化的方向。

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