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Solar-powered single-and double-effect directly air-cooled LiBr-H_2O absorption prototype built as a single unit

机译:太阳能单效和双效直接风冷的LiBr-H_2O吸收原型机

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摘要

This work describes an installation in Madrid, Spain, designed to test a new solar-powered air-cooled absorption refrigeration system. This installation essentially consists of a-48 m~2 field of flat-plate solar collectors, a 1500-L hot water storage tank and a single and-double effect air-cooled lithium bromide absorption prototype. Designed and built by our research group, this prototype is able to operate either as a single-effect unit (4.5 kW) or as a double-effect unit (7 kW). In operation as single-effect mode, the prototype is driven by solar energy, whereas in operation as a double effect mode, an external energy source may be used. The prototype's evaporator is connected to a fan-coil placed inside an 80-m~2 laboratory that represent the average size of a Spanish housing unit. In August 2009, the cooling system was tested in the single-effect operation mode. The results show that the system is able to meet approximately 65% of the laboratory's seasonal cooling demand, although 100% may be reached for a few days. The prototype can also operate in double-effect mode to meet the cooling demand. In that case, the prototype is fed by thermal oil, which is warmed until it reaches the process temperature in the high-temperature generator. The prototype can operate in either single-effect mode or in double-effect mode or can also operate simultaneously both modes using the components common to both modes, namely, the absorber, evaporator, condenser, solution pumps and control equipment. This paper reports the experimental results from the prototype operating separately in single-effect and double-effect mode.
机译:这项工作描述了西班牙马德里的一个装置,旨在测试一种新的太阳能风冷吸收式制冷系统。该装置主要由一个48 m〜2的平板太阳能集热器,一个1500 L的热水储罐和一个单效和双效风冷溴化锂吸收原型组成。该原型是由我们的研究小组设计和制造的,既可以单效装置(4.5 kW)运行,也可以双效装置(7 kW)运行。在以单效模式运行时,原型由太阳能驱动,而在以双效模式运行时,可以使用外部能源。原型的蒸发器连接到放置在80平方米〜2实验室内的风机盘管,该风机盘管代表西班牙住房单位的平均尺寸。 2009年8月,冷却系统在单效运行模式下进行了测试。结果表明,该系统能够满足实验室季节性制冷需求的约65%,尽管几天后可能达到100%。该原型还可以双效模式运行,以满足冷却需求。在这种情况下,向原型提供导热油,将其加热直至达到高温发生器中的过程温度。该原型可以单效模式或双效模式运行,也可以使用两种模式的共同组件(即吸收器,蒸发器,冷凝器,溶液泵和控制设备)同时运行两种模式。本文报告了分别以单效和双效模式运行的原型的实验结果。

著录项

  • 来源
    《Applied Energy》 |2014年第1期|7-19|共13页
  • 作者单位

    Instituto de Ciencias de la Construccion Eduardo Torroja (CSIC), C/Serrano Galvache n° 4, 28033 Madrid, Spain,Universidad Carlos Ⅲ de Madrid, Departamento de Ingenieria Termica y de Fluidos, Unidad Asociada CSIC-UC3M de Ingenieria de Sistemas Energeticos, Avda de la Universidad 30, 28911 Leganes, Madrid, Spain;

    Instituto de Ciencias de la Construccion Eduardo Torroja (CSIC), C/Serrano Galvache n° 4, 28033 Madrid, Spain;

    Escuela Universitaria de Ingenieria Tecnica Industrial (UPM), Honda de Valencia 3, 28012 Madrid, Spain;

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

    Absorption; Lithium bromide; Direct air-cooled; Solar cooling; Single-double effect;

    机译:吸收溴化锂;直接风冷;太阳能冷却;单双效;

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