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Numerical Modeling of Liquid Piston Gas Compression

机译:液体活塞气体压缩的数值模拟

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摘要

Prior research has shown that the use of liquid-pistons in place of conventional solid pistons within gas compression technologies can significantly improve the efficiency of gas compression. The liquid-piston provides the prospect for a consistent and high rate of heat extraction from the compressed gas during system operation. Consequently, the input power requirements during each individual compression are lowered. To validate this concept, analytical studies of the thermal-fluids and heat transfer mechanisms during gas compression were performed. The analysis involved the development of a numerical model, using the finite-difference method, which simulated a single compression stroke and quantified the crucial parameters during compression. This model was utilized to obtain theoretical efficiency values and to recognize optimal system characteristics. The results obtained from the simulation indicated double-digit increase in efficiency with the introduction of the liquid-piston.
机译:先前的研究表明,在气体压缩技术中使用液体活塞代替传统的固体活塞可以显着提高气体压缩效率。液体活塞为系统运行期间从压缩气体中获得稳定且高速率的热量提取提供了前景。因此,降低了每个单独压缩期间的输入功率要求。为了验证这一概念,对气体压缩过程中的热流体和传热机理进行了分析研究。分析涉及使用有限差分方法开发数值模型,该方法可模拟单个压缩冲程并量化压缩过程中的关键参数。该模型用于获得理论效率值并识别最佳系统特性。从模拟获得的结果表明,随着液体活塞的引入,效率提高了两位数。

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