实现等温气体压缩--提高效率的新型翅片活塞缸

Gases Pub Date : 2024-04-08 DOI:10.3390/gases4020004
Alfred Rufer
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摘要

本文提出并分析了一种新型翅片活塞系统概念,在这种系统中,压缩热不断从压缩腔中提取。由此产生的压缩特性向等温过程方向移动,降低了压缩室中被压缩流体的温度,减少了进行压缩过程所需的必要机械功。翅片活塞的概念是在压缩室内部安装一个集成热交换器,该热交换器由放置在定子部分和移动活塞上的嵌入式平翅片构成。与传统的活塞/气缸相比,表面的内部热交换大大增加。在模拟的帮助下,对新系统的能量性能进行了评估。模拟了压缩气体的压力、力和温度以及所需的机械功。不同的曲线与系统的绝热和等温特性进行了比较。
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Towards the Isothermal Gas Compression—A Novel Finned Piston-Cylinder with Increased Efficiency
In this paper, a novel concept of a finned piston system is presented and analyzed in which the compression heat is continuously extracted from the compression chamber. The resulting compression characteristic moves in the direction of an isothermal process, reducing the temperature of the compressed fluid in the compression chamber and reducing the necessary mechanical work required to carry out the process. The finned piston concept consists in an integrated heat exchanger inside of the chamber that is constituted of imbricated flat fins placed on the stator part and on the mobile piston. The internal heat exchange on the surface is strongly increased in comparison with a classical piston/cylinder. The energetic performance of the new system is evaluated with the help of simulation. The pressures, forces, and temperature of the compressed gas are simulated as well as the mechanical work needed. The different curves are compared with the system’s adiabatic and isothermal characteristics.
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