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Geothermal driven micro-CCHP for domestic application - Exergy, economic and sustainability analysis

机译:地热驱动的微型CCHP用于国内应用 - Deergeny,经济和可持续性分析

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摘要

Geothermal energy is going to play a key role in future smart energy systems. Geothermal-driven domestic energy systems, specifically, will largely contribute to the baseload supply of heating and cooling demand of societies. A low-temperature geothermal resource is considered to drive a domestic-scaled multi-generation system supplying power, heating, and cooling. The proposed cogeneration system includes a small-scale organic Rankine cycle (ORC), a single effect LiBr-H_2O absorption chiller, and heat exchangers to supply domestic space heating and hot water. The waste heat of the ORC is harvested, also, to be used in space heating. Energy, exergy, economic, and sustainability principles are applied to the system to evaluate the system thermodynamic and thermos-economic performance. Results associated with the exergy destruction are obtained and effects on the system performance of chiller supply are investigated. Besides, the thermodynamic performance of the system is evaluated under the summertime and wintertime conditions. Under the base condition, the generator employed in the absorption chiller is found to be the most exergy destructive unit followed by the evaporator utilized in the ORC. Furthermore, results revealed that by increasing the chiller supply rate, the system sustainability index enhances from 1.6 to 2.5 while the system's first law efficiency reduces.
机译:地热能将在未来的智能能源系统中发挥关键作用。地热驱动的国内能源系统,具体而言,将在很大程度上有助于对社会的加热和冷却需求的基础供应。低温地热资源被认为是推动国内缩放的多代系统供电,加热和冷却。所提出的热电联产系统包括小型有机朗肯循环(ORC),单一效果Libr-H_2O吸收式冷却器,以及供应国内空间加热和热水的热交换器。也收获了兽人的废热,也可以用于空间加热。能源,走动,经济和可持续性原则适用于系统,以评估系统热力学和热水效果。研究了与漏洞破坏相关的结果,并研究了对冷却器供应的系统性能的影响。此外,在夏季和冬季条件下评估系统的热力学性能。在基础条件下,吸收冷却器中采用的发电机被发现是最强烈的破坏性单元,然后是在ORC中使用的蒸发器。此外,结果表明,通过增加冷却器供应率,系统可持续性指数从1.6到2.5增强,而系统的第一法效率降低。

著录项

  • 来源
    《Energy》 |2020年第15期|118195.1-118195.16|共16页
  • 作者单位

    Department of Mechanical Engineering Faculty of Engineering University of Maragheh P.O.Box 83111-55181 Maragheh Iran;

    Department of Energy Technology Aalborg University 9220 Aalborg East Denmark Faculty of Electrical and Computer Engineering University of Tabriz Tabriz Iran;

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

    Geothermal-driven CCHP; Exergy; ORC; District heating; District cooling; Sustainability;

    机译:地热驱动的CCHP;obergy;orc;区域供热;区冷却;可持续性;

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