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Comparative analysis of a solar trigeneration system based on parabolic trough collectors using graphene and ferrofluid nanoparticles

机译:基于石墨烯和铁磁流体纳米颗粒的抛物线槽式集热器太阳能三联产系统的对比分析

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摘要

In this comparative study, the thermodynamic analysis of a trigeneration system driven by a parabolic trough solar collector based on two different types of nanofluid is performed. A standard trigeneration system consists of two subsystems, including an absorption heat pump and the organic Rankine cycle. Two types of nanoparticles (graphene and ferrofluid) that possess excellent and diverse physical properties within a base fluid (Syltherm 800) were selected to be the absorption fluids in the solar cycle. Four organic fluids, namely R123, R401a, R601, and R601a, for the organic Rankine cycle are examined. The results clearly depicted improvement in the system performance. It was found that graphene nanoparticles performed better as compared to the ferrofluid nanoparticles. The largest temperature of the collector outlet was obtained at 257.4? with Syltherm 800/graphene. The highest net power produced by the system was 134.1 kW and the maximum overall energy and exergy efficiencies of the system were 160.5 and 21.84, respectively. The highest net power produced by the system was 134.1 kW and the maximum overall energy and exergy efficiencies of the system were 160.5 and 21.84, respectively. The solar collectors are the main source of the exergy destruction and the highest value was recorded about 683kW.
机译:在这项比较研究中,对基于两种不同类型的纳米流体的抛物面槽式太阳能集热器驱动的三联产系统进行了热力学分析。标准三联供系统由两个子系统组成,包括吸收式热泵和有机朗肯循环。选择在基础流体(Syltherm 800)中具有优异和多样物理性质的两种纳米颗粒(石墨烯和铁磁流体)作为太阳周期中的吸收流体。研究了用于有机朗肯循环的四种有机流体,即 R123、R401a、R601 和 R601a。结果清楚地描绘了系统性能的改善。结果发现,与铁磁流体纳米颗粒相比,石墨烯纳米颗粒的性能更好。集热器出口的最大温度为257.4?使用 Syltherm 800/石墨烯。系统最高净功率为134.1 kW,最大总能效和效率分别为160.5%和21.84%。系统最高净功率为134.1 kW,最大总能效和效率分别为160.5%和21.84%。太阳能集热器是能量破坏的主要来源,最高值记录在683kW左右。

著录项

  • 来源
    《Thermal science》 |2021年第4apartaa期|2549-2563|共15页
  • 作者

    Ibrahim Alla; Kayfeci Muhammet;

  • 作者单位

    Department of Mechanical Engineering, Graduate School of Natural and Applied Sciences, Karabük University;

    Department of Energy Systems Engineering, Faculty of Technology, Karabük University;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类
  • 关键词

    solar collector; trigeneration; nanofluids; energy; exergy;

    机译:太阳能集热器;三代联产;纳米流体;能源;发挥力;
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