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Thermodynamic and economic evaluation of a small-scale organic Rankine cycle integrated with a concentrating solar collector

机译:集成聚光太阳能集热器的小规模有机朗肯循环的热力学和经济评估

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摘要

Recently, distributed power systems especially with renewable sources have shown an increasing demand all over the world and have been a technical viable solution to demand growth for electricity. Among these, solar-thermal power plants show a trustworthy source for electricity generation especially for rural areas where small-scale plants are needed. Organic Rankine cycle (ORC) is a suitable power cycle for electricity generation from low-grade heat and has shown a good compatibility with parabolic trough solar collectors (PTCs). In this study, a PTC integrated with an ORC is being studied thermodynamically and economically for small-scale electricity generation up to 100 kW electricity. Four schematics of the cycle including the recuperation and superheating are examined. Effect of superheating and recuperating was investigated on the thermal efficiency and costs of the system. A parametric study shows the effect of key parameters such as turbine inlet temperature and pressure on the characteristics of the system such as net work, thermal efficiency, oil temperature, overall heat transfer coefficient and heat transfer area of shell-and-tube heat exchangers and also on costs of the system. Results show the dependence of the system efficiency and system costs on the operating pressure of heat exchangers. Existence of the Recuperator seems quite effective on increasing the cycle efficiency and, in some cases, lowering the total costs due to lowering the condenser load. A comparison of different working fluids including benzene, butane, pentane, isopentane, R123 and R245fa have been done to cover a wide range of operating pressures and temperatures. Results show that benzene has the best thermodynamic performance among other fluids followed by pentane, isopentane, R123, R245fa and butane. Also, benzene has the highest total cost among other fluids followed by pentane, isopentane, butane, R123 and R245fa. This paper helps to evaluate a solar ORC power plant both thermodynamically and economically.
机译:最近,分布式电源系统,尤其是具有可再生资源的分布式电源系统,在世界范围内显示出越来越高的需求,并且已成为解决电力需求增长的技术可行的解决方案。其中,太阳能热电厂是值得信赖的发电来源,特别是在需要小型电厂的农村地区。有机朗肯循环(ORC)是一种适合利用低等级热量发电的功率循环,并且与抛物槽太阳能集热器(PTC)表现出良好的兼容性。在这项研究中,正在热力学和经济地研究与ORC集成的PTC,以用于小规模发电(最大功率为100 kW)。检查了循环的四个示意图,包括换热和过热。研究了过热和回热对系统的热效率和成本的影响。参数研究显示了关键参数(例如涡轮机入口温度和压力)对系统特性(例如管网式换热器的净功,热效率,油温,总传热系数和传热面积)的影响。还涉及系统成本。结果表明,系统效率和系统成本与热交换器的工作压力有关。换热器的存在似乎对提高循环效率非常有效,并且在某些情况下,由于降低了冷凝器负荷,因此可以降低总成本。已对包括苯,丁烷,戊烷,异戊烷,R123和R245fa在内的不同工作流体进行了比较,以涵盖各种工作压力和温度。结果表明,苯在其他流体中具有最佳的热力学性能,其次是戊烷,异戊烷,R123,R245fa和丁烷。此外,苯在其他流体中的总成本最高,其次是戊烷,异戊烷,丁烷,R123和R245fa。本文有助于从热力学和经济角度评估太阳能ORC电厂。

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  • 作者单位

    Renewable Energies and Environmental Department, Faculty of New Science and Technologies, University of Tehran, Tehran, Iran;

    Renewable Energies and Environmental Department, Faculty of New Science and Technologies, University of Tehran, Tehran, Iran;

    Renewable Energies and Environmental Department, Faculty of New Science and Technologies, University of Tehran, Tehran, Iran;

    Renewable Energies and Environmental Department, Faculty of New Science and Technologies, University of Tehran, Tehran, Iran;

    Laboratoire d'Energetique et de Mecanique Theorique et Appliquee, ENSEM, 2, Avenue de laForetde Haye, 60604, Vandoeuvre 54518, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    organic Rankine cycle; efficiency; solar collector; economic evaluation;

    机译:有机朗肯循环;效率;太阳能集热器经济评估;

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