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首页> 外文期刊>Applied Energy >Suitability of coupling a solar powered ejection cycle with a vapour compression refrigerating machine
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Suitability of coupling a solar powered ejection cycle with a vapour compression refrigerating machine

机译:将太阳能喷射循环与蒸汽压缩制冷机耦合的适用性

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摘要

The most commonly employed technology for cold production is vapour compression, mainly due to the high efficiency of such devices. However, a major operating issue is the strong dependency of system efficiency and capacity on ambient temperature, which in turn leads to low yearly performance and to a low capacity factor.On the other hand, solar cooling is gaining an increasing appeal as a way to locally exploit renewable energy sources and reducing carbon footprint. Many thermally driven systems are being currently studied, among these the ejection reverse cycle is being proposed as an interesting alternative due to its simplicity, low cost and reliability.The present paper aims to analyse a complex system in which the solar powered ejection machine is used to increase the efficiency of a traditional vapour compression machine by subtracting heat from the condenser. By means of a transient analysis, performed with a reference building and with climate data corresponding to four different system locations worldwide, the year-round performance of such a system in a space cooling application is estimated in terms of energy balance and savings on power costs with respect to the traditional solutions, in order to evaluate its potential benefits and to highlight some issues related to system design and operation. A sensitivity analysis is also performed with respect to solar collector area and equipment sizing, showing how the latter is an important optimisation parameter when designing the system.
机译:冷加工最常用的技术是蒸汽压缩,这主要是由于这种设备的高效率。但是,一个主要的操作问题是系统效率和容量对环境温度的强烈依赖性,从而导致年度性能低下和容量因子低。另一方面,太阳能制冷作为一种方法越来越受到人们的欢迎。在当地开发可再生能源并减少碳足迹。当前正在研究许多热驱动系统,在这些系统中,由于其简单,低成本和可靠性,提出了将喷射反向循环作为有趣的替代方法。本文旨在分析使用太阳能喷射机的复杂系统通过从冷凝器中减去热量来提高传统蒸汽压缩机的效率。通过对参考建筑物以及与全球四个不同系统位置相对应的气候数据进行的瞬态分析,可以根据能量平衡和节省的电力来估算这种系统在空间制冷应用中的全年性能相对于传统解决方案,为了评估其潜在利益并强调与系统设计和操作相关的一些问题。还针对太阳能集热器面积和设备尺寸进行了敏感性分析,显示了在设计系统时后者是重要的优化参数。

著录项

  • 来源
    《Applied Energy 》 |2012年第2012期| p.374-383| 共10页
  • 作者单位

    University of Florence, Department of Energy Engineering, Via di S. Marta 3, 50129 Firenze, Italy;

    University of Florence, Department of Energy Engineering, Via di S. Marta 3, 50129 Firenze, Italy;

    University of Florence, Department of Energy Engineering, Via di S. Marta 3, 50129 Firenze, Italy;

    University of Florence, Department of Energy Engineering, Via di S. Marta 3, 50129 Firenze, Italy;

  • 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

    refrigeration; ejector; solar cooling; cascade configuration;

    机译:冷藏;顶出器太阳冷却级联配置;

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