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首页> 外文期刊>International journal of hydrogen energy >Performance investigation of a multi-stage sorption hydrogen compressor
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Performance investigation of a multi-stage sorption hydrogen compressor

机译:多级吸附氢气压缩机的性能研究

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Among several thermodynamic applications of metal hydrides, sorption hydrogen compressor (SHC) is more attractive for real-time application due to ease of construction and operation. In the present study, a four-stage sorption hydrogen compressor is proposed with detailed working principle for the compression output of 500 bar pressure. By adopting the screening methodology, four metal hydrides, i.e. La0.9Ce0.1Ni5, Ti0.99Zr0.01V0.43Fe0.99Cr0.05Mn1.5, MmNi(5) and TiCrMn are selected for stages - 1, 2, 3 and 4 respectively with the supply temperature of 298 K and discharge temperatures of 373 K. The performance of sorption hydrogen compressor is estimated through finite volume approach and thermodynamic simulation in terms of variations in metal hydride bed pressure, temperature, hydrogen transmission, compressor work and efficiency. The numerical model is validated with experimentally measured metal hydride bed temperature and hydrogen concentration for single-stage hydrogen compressor, which are observed to be in good agreement. The cycle time of multi-stage SHC is predicted to be similar to 100 min with the maximum compression ratio of 73 with an overall efficiency of 10.62% employing 0.5 kg of each alloy and supply pressure of 9.5 bar. It is also observed that the discharge temperature greatly influences system performance. The dynamic performance of the system is also estimated with the implementation of simulation generated property data and observed that the performance parameters increased with the progression of hydrogen transmission. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在金属氢化物的几种热力学应用中,由于易于施工和操作,吸附氢气压缩机(SHC)对于实时应用更具吸引力。在本研究中,提出了一种四阶段吸附氢气压缩机,具有详细的工作原理> 500巴压的压缩输出。通过采用筛选方法,分别为分别为阶段 - 1,2,3和4选择四种金属氢化物,即LA0.9CE0.1NI5,TI0.99CCO.01V0.43FE0.99CR0.05MN1.5,MMNI(5)和TICRMN随着298 k的供应温度和373 K的放电温度。通过有限体积接近,在金属氢化物床压力,温度,氢气传动,压缩机工作和效率方面的变化方面估计吸附氢气压缩机的性能。用实验测量的金属氢化物床温度和用于单级氢气压缩机的氢浓度验证了数值模型,观察到良好的一致性。预测多级SHC的循环时间与100分钟相似,最大压缩比为73,总效率为10.62%,采用0.5千克的每合金和9.5巴的供应压力。还观察到,放电温度大大影响系统性能。系统的动态性能也估计了模拟产生的属性数据的实现,并且观察到性能参数随着氢传输的进展而增加。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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