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Conceptual design of binary/multicomponent fluid ejector refrigeration systems

机译:二元/多组分流体喷射器制冷系统的概念设计

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摘要

Low energy efficiency and limitations of cooling temperatures in the ejector refrigeration systems (ERSs) are major obstacles for its widespread use. The application of binary or multicomponent fluids may prove to be one of the successful ways to increase the ERS performance by 30-50%. Zeotropic mixtures, which have unlimited solubility and evaporate at specified pressures and varying temperatures, are considered as possible candidates to be applied in a binary-fluid ERS (BERS). An ideal candidate working fluid should exhibit high molecular weight, low latent heat of evaporation, high normal boiling temperature and high compressibility factor. A refrigerant fluid should have low molecular weight, high latent heat of evaporation, low boiling point and compressibility factor. BERS pursues simultaneous achievement of two main goals: increase in system's efficiency and take the condensation point up to 45-50℃ at fixed coefficient of performance, i.e. employ atmospheric condenser in ERS. This article presents schematic diagrams of a multicomponent-fluid ERS; its cascade principle based on BERS enables to produce cold at several temperature ramps, using renewable or low-grade heat sources. Research outcomes from this article can improve the effective application of ejector technology.
机译:喷射器制冷系统(ERS)中的低能效和冷却温度的限制是其广泛使用的主要障碍。二元或多组分流体的应用可能被证明是将ERS性能提高30%至50%的成功方法之一。共沸混合物具有无限的溶解性,并在指定的压力和变化的温度下蒸发,被认为是可用于二元流体ERS(BERS)的候选材料。理想的候选工作流体应具有高分子量,低​​蒸发潜热,高正常沸腾温度和高压缩系数。制冷剂流体应具有低分子量,高蒸发潜热,低沸点和可压缩系数。 BERS追求同时实现两个主要目标:提高系统效率,以固定的性能系数将凝结点提高到45-50℃,即在ERS中使用常压冷凝器。本文介绍了多组分流体ERS的示意图。其基于BERS的级联原理可使用可再生或低级热源在多个温度梯度下产生冷量。本文的研究成果可以改善喷射器技术的有效应用。

著录项

  • 来源
    《International journal of low carbon technologies》 |2012年第2期|p.120-127|共8页
  • 作者单位

    Wilson, 25, Mikhailivska Street, 65005 Odessa, Ukraine,Sustainable Refrigeration Technology Centre, Dvoryanskaya str. 1/3, 65026 Odessa,Ukraine;

    Wilson, 25, Mikhailivska Street, 65005 Odessa, Ukraine,Sustainable Refrigeration Technology Centre, Dvoryanskaya str. 1/3, 65026 Odessa,Ukraine;

    Sustainable Refrigeration Technology Centre, Dvoryanskaya str. 1/3, 65026 Odessa,Ukraine;

    University of Central Lancashire, Preston PR1 2HE, UK;

    Wilson, 25, Mikhailivska Street, 65005 Odessa, Ukraine,Sustainable Refrigeration Technology Centre, Dvoryanskaya str. 1/3, 65026 Odessa,Ukraine;

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

    ejector; binary fluid; multicomponent fluid; refrigeration system; cascade system;

    机译:顶出器二元流体多组分流体制冷系统级联系统;

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