首页> 外文会议>OCEANS 2016 MTS/IEEE Monterey >Temperature abatement using hollow spheres in liquid piston compressor for Ocean Compressed Air Energy Storage system
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Temperature abatement using hollow spheres in liquid piston compressor for Ocean Compressed Air Energy Storage system

机译:用于海洋压缩空气储能系统液体活塞式压缩机中空球体中的温度减去

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This paper deals with a novel technique to curb the temperature raise during compression in a liquid piston compressor used in Ocean Compressed Air Energy Storage (OCAES) system. Hollow spheres made of various materials, viz. Silicon Carbide (SiC), High Density Polyethylene (HDPE), and Polypropylene (PP) were made to float on the top surface of the liquid column. It was observed that the temperature abatement in each of the three cases was very evident. The heat transfer does not depend on the material of the sphere, but the fact that there is a solid surface between water and air itself plays an important role along with the size of the sphere. The heat transfer per unit area from the simulation and the analytical model have been compared and the values are found to be very similar. Also, polytropic index of the compression process was evaluated in case without and with SiC spheres, and it was found to be closer to the isothermal index of 1 when the spheres are used.
机译:本文涉及一种新颖的技术来抑制在海洋压缩空气储能(OCAES)系统中使用的液体活塞式压缩机中的压缩期间温度升高。空心球由各种材料制成,viz。碳化硅(SiC),高密度聚乙烯(HDPE)和聚丙烯(PP)漂浮在液柱的顶表面上。观察到这三种情况中的每一个的温度减去非常明显。传热不依赖于球体的材料,但是在水和空气本身之间存在固体表面的事实起着重要作用以及球体的尺寸。已经比较了来自仿真和分析模型的每单位面积的热传递,并且发现该值非常相似。此外,在没有SiC球的情况下评估压缩过程的多细胞率指数,并且发现当使用球时,发现它更接近等温指数。

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