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Experimental thermodynamic evaluation of a real cooling system with sea water-source and heat pump for a hotel in Turkey

机译:土耳其海水源和热泵真正冷却系统的实验热力学评价

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摘要

It is noteworthy that energy consumption is very high in hotels in order to provide the comfort requirements of human beings. Especially in summer season, cooling is an important condition for comfort in a hotel. In hotel cooling, seawater is an indispensable heat sink. In this study, the thermodynamic performance of a hotel cooling system with seawater-source and heat pump used with the aim of cooling a hotel located by sea is investigated. Using hourly data collected from the existing system during the summer of 2016, exergy analysis is performed. As the cooling system is at an industrial-scale involving copious equipment, it is divided into five different cooling zones. For cooling of a selected hotel room, the heat pump and variable refrigerant flow system in the zone where the room was located is also assessed. The results indicated that the hotel cooling system has the coefficient of performance, exergy efficiency, and improvement potential of 4.37, 66.5% and 77.7% on average, respectively. The zone requiring priority improvement is the fifth cooling zone due to air-conditioning plants and long pipelines. The equipment with the highest exergy destruction is the seawater heat exchanger. Due to low temperature difference between hotel room and seawater, it is necessary to increase use of these systems and develop them in terms of technology.
机译:值得注意的是,宾馆的能源消耗非常高,以提供人类的舒适要求。特别是在夏季,冷却是酒店舒适的重要条件。在酒店冷却,海水是一个不可或缺的散热器。在这项研究中,调查了海水源和热泵的热力学性能和带有海上地区的酒店的热泵。在2016年夏季,使用从现有系统中收集的每小时数据,进行了通风分析。由于冷却系统处于涉及大量设备的工业规模,它分为五个不同的冷却区域。还评估了所选酒店房间的冷却,热泵和可变制冷剂流量系统,房间位于房间的区域。结果表明,酒店冷却系统的性能系数,高度效率,平均水平的效率和改善潜力分别为4.37,66.5%和77.7%。需要优先级改善的区域是由于空调植物和长管道引起的第五冷却区。具有最高的毁灭最高的设备是海水热交换器。由于酒店房间和海水之间的低温差异,有必要增加这些系统的使用,并在技术方面开发。

著录项

  • 来源
    《Environmental progress & sustainable energy》 |2020年第6期|13447.1-13447.11|共11页
  • 作者单位

    Department of Energy Systems Engineering Technology Faculty Mugla Sitki Kocman University Mugla Turkey;

    Department of Energy Systems Engineering Technology Faculty Mugla Sitki Kocman University Mugla Turkey;

    Department of Energy Systems Engineering Graduate School of Natural and Applied Sciences Mugla Sitki Kocman University Mugla Turkey;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    exergy analysis; heat pump; hotel cooling; seawater source; thermodynamic performance;

    机译:Deergy分析;热泵;酒店冷却;海水源;热力学性能;

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