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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Design analysis of a liquid-piston compression chamber with application to compressed air energy storage
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Design analysis of a liquid-piston compression chamber with application to compressed air energy storage

机译:液活塞压缩室的设计分析及其在压缩空气储能中的应用

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摘要

The present study focuses on a design analysis of a shaped liquid piston compression chamber based on CFD. The liquid piston compression chamber is for application to Compressed Air Energy Storage (CAES), which can be used to even the mismatch between power generation and power demand, and, thus, the objective of the design exploration is to maximize the compression efficiency. Within the compression chamber is an open-cell metal foam medium for enhancement of heat transfer. Traditionally, the chamber has a cylindrical shape. The present study explores the effects on compression efficiency of varying the profile of cross-sectional diameter along the axis of the chamber. This leads to a compression chamber with curved walls that assume a gourd-like shape. A set of exploratory design cases is completed using the orthogonal array concept based on the Taguchi method, hence reducing the number of realizations. CFD simulations provide insight into how the chamber shape affects the flow physics during compression. A quantitative design analysis shows that, in general, a large aspect ratio and a steep radius change of the chamber is preferred, which is in line with a visualization of the CFD flow fields. The relative importance of each different shape parameter is analyzed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本研究的重点是基于CFD的成形液体活塞压缩室的设计分析。液体活塞压缩室用于压缩空气能量存储(CAES),可用于平衡发电和电力需求之间的不匹配,因此,设计探索的目的是最大程度地提高压缩效率。在压缩室内是一种开孔金属泡沫介质,用于增强热传递。传统上,腔室为圆柱形。本研究探讨了沿腔室轴线改变横截面直径轮廓对压缩效率的影响。这导致具有弯曲壁的压缩室,该弯曲壁呈葫芦状。使用基于Taguchi方法的正交数组概念完成了一组探索性设计案例,从而减少了实现数量。 CFD模拟可洞察压缩过程中腔室的形状如何影响流场。定量设计分析表明,通常,较大的长径比和较大的腔室半径变化是首选,这与CFD流场的可视化相符。分析了每个不同形状参数的相对重要性。 (C)2016 Elsevier Ltd.保留所有权利。

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