首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Thermodynamic optimization of organic Rankine cycles at several condensing temperatures: case study of waste heat recovery in a natural gas compressor station
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Thermodynamic optimization of organic Rankine cycles at several condensing temperatures: case study of waste heat recovery in a natural gas compressor station

机译:几种冷凝温度下有机朗肯循环的热力学优化:天然气压缩机站废热回收的案例研究

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In this article, the authors performed the thermodynamic optimization of organic Rankine cycles (ORCs) using several working fluids and considered the effect of three heat rejection media in the condenser: cooling water, ambient air, and hot water at high temperature for co- or trigeneration applications. The ORC system was modelled and optimized using the Aspen Hysys process simulator. The objective function is the maximization of turbine power output. Most natural gas compression stations use no heat recovery system. In this study, they applied the optimization procedure to the recovery of waste heat from gas turbines used to drive natural gas compressors in natural gas pumping stations. They used operational data from an existing pumping station to illustrate the potential benefits of ORC systems for this application, taking into account also non-thermodynamic aspects such as toxicity, flammability, and investment cost return. The highest ORC turbine output powers were obtained with aromatic hydrocarbons, then with aromatic fluorocarbons, rc-hydrocarbons, and siloxanes (in that order). For the case studied here - a gas turbine of 2.6 MW of mechanical power- the proposed ORC can produce around 1 MWe, with a thermal efficiency of up to 24 per cent depending on the working fluid and condensing temperature.
机译:在本文中,作者使用几种工作流体对有机朗肯循环(ORC)进行了热力学优化,并考虑了冷凝器中三种散热介质的影响:冷却水,环境空气和高温下的热水,以共同冷却或冷却。三代应用。使用Aspen Hysys过程模拟器对ORC系统进行建模和优化。目标函数是使涡轮机功率输出最大化。大多数天然气压缩站不使用热回收系统。在这项研究中,他们将优化程序应用于从用于驱动天然气泵站中天然气压缩机的燃气轮机中回收废热。他们使用来自现有泵站的运行数据来说明ORC系统在此应用中的潜在优势,同时还考虑了非热力学方面,例如毒性,可燃性和投资成本回报。使用芳烃,然后使用芳烃,碳氢化合物和硅氧烷(依次)获得最高的ORC涡轮机输出功率。对于此处研究的案例(机械功率为2.6 MW的燃气轮机),拟议的ORC可以产生约1 MWe,根据工作流体和冷凝温度的不同,热效率最高可达24%。

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