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Exergy analysis of a solar assisted absorption cooling system on an hourly basis in villa applications

机译:别墅应用中每小时一次的太阳能辅助吸收式制冷系统的火用分析

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摘要

A solar assisted absorption refrigeration system (SAARS) was designed for acclimatizing of villas in Mardin which is located in Turkey and the performance of the system under different temperatures was analyzed by using MATLAB. Hourly cooling load calculation of the villas was done between 15th of May and 15th of September by considering the season for the cooling. Cooling capacity of the system (SAARS) was calculated as 106 kW. During the cooling period, the temperature of the environment shows the alteration between 40.3℃ and 13.2℃. In the study, hourly exergy loss values are calculated with the software developed in matlab program and for the entire components of SAARS. The effect of the temperature alterations of the dead state on the exergy results is determined by taking dead state temperature as 25℃ and with more realistic approach, by taking it as the environment temperature. It was observed that the most of the exergy losses in the system have taken place in the solar collectors and then in the generator. Exergy loss in the collector changes between 10% and 70% while exergy loss in the generator changes between 5% and 8%. The effects of environmental temperature and solar insolation were stated for optimization.
机译:设计了太阳能辅助吸收式制冷系统(SAARS)以使位于土耳其马尔丁的别墅适应环境,并使用MATLAB分析了该系统在不同温度下的性能。考虑到制冷季节,在5月15日至9月15日之间进行了别墅的每小时制冷负荷计算。系统的制冷量(SAARS)计算为106 kW。在冷却期间,环境温度在40.3℃和13.2℃之间变化。在这项研究中,使用在matlab程序中开发的软件以及SAARS的所有组件来计算每小时的火用损失值。以死态温度为25℃,以更现实的方法,以死态温度变化为环境温度,来确定死态温度变化对火用结果的影响。观察到,系统中的大多数火用损失发生在太阳能收集器中,然后发生在发电机中。集热器的火用损耗在10%到70%之间变化,而发电机的火用损耗在5%和8%之间变化。陈述了环境温度和日照的影响以进行优化。

著录项

  • 来源
    《Energy》 |2010年第12期|p.5277-5285|共9页
  • 作者

    C. Onan; D.B. Ozkan; S. Erdem;

  • 作者单位

    Department of Mechanical Engineering, Yildiz Technical University, TR-34349 Besiktas, Istanbul, Turkey;

    Department of Mechanical Engineering, Yildiz Technical University, TR-34349 Besiktas, Istanbul, Turkey;

    Department of Mechanical Engineering, Yildiz Technical University, TR-34349 Besiktas, Istanbul, Turkey;

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

    exergy analysis; villas; energy; absorption cooling; solar collector;

    机译:火用分析;维拉斯;能量;吸收冷却;太阳能集热器;

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