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制冷系数 meaning in Chinese

coefficient of performance

Examples

  1. After simulating mini refrigerated condition , on the base of confirming the parameter of work state of the maximum refrigerating modulus and quantum in experiment , the article figures put out the comprehensively equivalent power state and the parameter of the best work state , it is hoped that they can make up a deficiency of traditional design theory so as to optimize the design of semiconductor refrigerating machinery
    摘要模拟小空间制冷环境,在实验确定半导体制冷器最大制冷系数状态和最大制冷量状态工作参数基础上,综合分析计算给出了等功率状态和最佳工作状态参数,弥补传统设计理论的不足,为半导体制冷器优化设计提供依据。
  2. A ejector for is applied in this theory . it can not only regulate the evaporating temperature of each high - temperature refrigeratory but also reduce the back - pressure of the compressor when a system applies this theory . at the same time , the exhaust temperature of the compressor becomes low and the refrigerating capacity per unit of swept volume becomes high
    鉴于目前这种现状,本文提出了以喷射器为基础的船舶高、低温冷库制冷新循环,不但可调节高温库的蒸发温度,而且也可使压缩机的回气压力得到提高,压缩机排气温度降低,单位容积制冷量上升,制冷系数提高,火用效率提高。
  3. This paper offers some performance data calculate with computer program and figures which variation of performances of refrigeration in different refrigerants and circle with evaporating temperature . it shows that it is feasible to calculate thermodynamic properties of refrigerants with equation of state pr in ideal circle and new refrigerants sfuch as r134a , r152a have not more coefficient of performance ( cop ) than r22 in single - press circle but still have preferable practical value in freezing refrigeration ; the results also demonstrate the importance and need for applying mixed - refrigerant in freezing
    本文给出了几种制冷工质在单级和双级压缩制冷循环下的一些性能数据及各性能随蒸发温度变化比较图。结果表明,利用pr方程得出的制冷工质物性,可用于计算制冷循环性能;在单级制冷循环中, r12和r22仍具有较高的制冷系数,但新工质如r134a 、 r152a在较低温度制冷中具有很高的研究价值;计算也表明,在较低温度制冷中,混合工质的研究是极有价值的。
  4. It is illustrated that a ferroelectric stirling refrigeration cycle may possess the condition of perfect regeneration and its coefficient of performance ( cop ) is equal to that of a carnot refrigeration cycle , while a ferroelectric ericsson refrigeration cycle does not possess the condition of perfect regeneration so that its cop is smaller than that of a carnot refrigeration cycle
    阐明了铁电斯特林制冷循环具有理想回热条件,其制冷系数等于卡诺制冷系数:铁电埃里克森制冷循环不具有理想回热条件,其制冷系数小于卡诺制冷系数。
  5. The influence of these irreversibilities on the performance of an absorption refrigerator whose working fluid flows continuously is investigated . the optimal relation among the coefficient of performance , cooling rate and overall heat - transfer area of the refrigerator is derived , from which some important performance bounds of the refrigerator are determined
    这些不可逆性对工质作连续流动的吸收式制冷机性能的影响被揭示,并导出了制冷机制冷系数、制冷率和总热传导面积间的优化关系,由此确定了制冷机的重要性能界限。
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Related Words

  1. 真空制冷
  2. 制冷区
  3. 制冷装置
  4. 压缩制冷
  5. 制冷部件
  6. 制冷能力
  7. 制冷加温装置
  8. 中央制冷装置
  9. 制冷暖通
  10. 辐射制冷器
  11. 制冷吸入速度
  12. 制冷吸收系统
  13. 制冷系统
  14. 制冷系统操作工
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