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首页> 外文期刊>IPTEK The Journal for Technology and Science >Evaluation on Expressions for Optimum Intermediate Condition of Two-Stage Vapor Compression Refrigeration Cycle
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Evaluation on Expressions for Optimum Intermediate Condition of Two-Stage Vapor Compression Refrigeration Cycle

机译:两阶段蒸汽压缩制冷循环的最佳中间条件表达式的评价

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摘要

Mathematical expressions for estimating the optimum intermediate condition of two-stage vapor compression refrigeration cycle have been investigated. The objective is to evaluate the expressions for optimum intermediate condition (pressure or temperature) for maximum COP. A set of governing equations on two-stage vapor compression refrigeration cycle are developed and solved numerically. The two-stage cycle is analyzed using commonly used refrigerants for air-conditioning use, they are R12, R22, and R134a. There are six expressions for optimum intermediate condition found in literature. These expressions are divided into two group, expression for optimum pressure and expression for optimum temperature. These expressions are evaluated using the developed model. The results show that deviation of the expressions for optimum pressure can be up to 18.38%. On the other hand, the maximum deviation for optimum temperature is only 6.74%. This fact suggests that expressions for optimum temperature are better than pressure one. However, the expressions found in literature only specific for a particular refrigerant. Those can’t be used for all refrigerants.
机译:研究了用于估算两级蒸气压缩制冷循环的最佳中间条件的数学表达式。目的是评估最大COP的最佳中间条件(压力或温度)的表达式。建立了一套两级蒸汽压缩制冷循环的控制方程,并进行了数值求解。使用空调中常用的制冷剂分析了两阶段循环,分别是R12,R22和R134a。在文献中找到了六个最佳中间条件表达式。这些表达式分为两组,分别是最佳压力表达式和最佳温度表达式。使用开发的模型评估这些表达式。结果表明,最佳压力表达式的偏差可以达到18.38%。另一方面,最佳温度的最大偏差仅为6.74%。这一事实表明,最佳温度的表达式优于压力一。但是,文献中发现的表述仅特定于特定制冷剂。并非所有制冷剂都可以使用。

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