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Efficiency improvement of liquid piston compressor using metal wire mesh for near-isothermal compressed air energy storage application

机译:使用金属丝网的液体活塞式压缩机在等温压缩空气储能中的效率提高

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摘要

Intermittent nature of power from renewable energy resources demands a large-scale energy storage system for their optimal utilization. Compressed air energy storage systems have the potential to serve as long-term large-scale energy storage systems. Efficient compressors are needed to realize a high storage efficiency with compressed air energy storage systems. Liquid piston compressor is highly effective in achieving efficient nearisothermal compression. The compression efficiency of the liquid piston can be improved with the use of heat transfer enhancement mechanism inside the compression chamber. In this study, a novel heat transfer enhancement technique using metal wire mesh is experimentally tested in a liquid piston compressor to improve compression efficiency. Metal wire meshes of aluminum and copper materials and different wire diameters along with various stroke times of compression are considered in the experimental design. A distinctive Archimedean spiral form of metal wire mesh is considered to facilitate heat transfer in the axial and radial direction inside the compression chamber. Experiments are conducted for the compression of air from the atmospheric pressure to about 280 kPa pressure at various stroke times of compression. Results show that the peak air temperature was reduced by 26-33 K with the use of metal wire mesh inside the liquid piston compressor. Both the materials are observed to be equally effective for temperature abatement. The use of metal wire mesh in liquid piston shifts the compression process towards the near-isothermal conditions. Furthermore, the isothermal efficiency of compression is evaluated to assess the potential for efficiency improvement with this technique. The metal wire mesh was observed to improve the isothermal efficiency of compression to 88-90% from the base efficiency of 82-84%. A 6-8% improvement in efficiency was observed at faster compression strokes signifying the efficacy of metal wire mesh to accomplish an efficient compression with a high power density.
机译:来自可再生能源的电力的间歇性要求大规模的储能系统以实现其最佳利用。压缩空气储能系统有潜力用作长期的大型储能系统。需要有效的压缩机以利用压缩空气能量存储系统实现高存储效率。液体活塞压缩机在实现有效的近等温压缩方面非常有效。通过在压缩室内使用传热增强机构,可以提高液体活塞的压缩效率。在这项研究中,使用金属丝网的新型传热增强技术在液体活塞压缩机中进行了实验测试,以提高压缩效率。在实验设计中考虑了铝和铜材料的金属丝网以及不同的线径以及不同的压缩冲程时间。金属丝网的独特的阿基米德螺旋形状被认为有利于压缩室内轴向和径向的热传递。进行了在压缩的各种冲程时间将空气从大气压压缩到约280 kPa压力的实验。结果表明,在液体活塞压缩机内使用金属丝网可以使峰值空气温度降低26-33K。观察到两种材料对于降低温度都同样有效。在液体活塞中使用金属丝网将压缩过程移向接近等温的状态。此外,评估了压缩的等温效率,以评估使用该技术提高效率的潜力。观察到金属丝网将压缩的等温效率从82-84%的基础效率提高到88-90%。在较快的压缩冲程中观察到效率提高了6-8%,这表明金属丝网具有以高功率密度完成有效压缩的功效。

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