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Design of a novel and efficient hydrogen compressor for wind energy based storage systems

机译:基于风能存储系统的新型高效氢气压缩机的设计

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In a hybrid wind power system, the excess wind energy is stored in the form of compressed hydrogen. Wind turbine generates electricity from the wind. The excess power (after meeting the load requirements) is used to generate hydrogen using an electrolyzer. The generated hydrogen is compressed using a compressor and sent to storage in a high pressure storage tank. The compressor should be operated at near isothermal conditions to reduce the power consumed by the compressor, thereby increasing the efficiency of the system. This paper deals with CFD modeling of a novel water spray cooled reciprocating hydrogen compressor which provides efficient cooling of the system during compression. Water is sprayed directly into the compressor cylinder during the compression stage. The water spray breaks into droplets, which provides large surface area to absorb the heat of compression thereby reducing the temperature. The heat capacity of water being order of magnitudes higher than that of hydrogen provides efficient cooling of the compressed gas with small water to hydrogen volumetric ratio. The concept of water spray cooling during compression is demonstrated through a three dimensional computational fluid dynamics (CFD) simulation.
机译:在混合风力发电系统中,多余的风能以压缩氢的形式存储。风力涡轮机从风中发电。多余的功率(满足负载要求后)用于通过电解器产生氢气。产生的氢气使用压缩机压缩,并输送到高压储罐中。压缩机应在接近等温的条件下运行,以减少压缩机消耗的功率,从而提高系统效率。本文涉及新型喷水冷却往复式氢气压缩机的CFD建模,该压缩机在压缩过程中可有效冷却系统。在压缩阶段,水直接喷入压缩机气缸。水喷雾破裂成液滴,液滴提供大的表面积以吸收压缩热,从而降低温度。水的热容量比氢的热容量高几个数量级,从而以较小的水与氢的体积比提供了压缩气体的有效冷却。通过三维计算流体动力学(CFD)模拟来演示压缩过程中喷水冷却的概念。

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