首页> 外文会议>American Society of Mechanical Engineers(ASME) Summer Heat Transfer Conference(HT2005); 20050717-22; San Francisco,CA(UA) >ANALYSIS AND OPTIMIZED DESIGN OF A PACKAGED LIQUID CHILLER (PART Ⅰ -ANALYTICAL MODELLING)
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ANALYSIS AND OPTIMIZED DESIGN OF A PACKAGED LIQUID CHILLER (PART Ⅰ -ANALYTICAL MODELLING)

机译:包装式冷水机的分析与优化设计(Ⅰ部分-解析模型)

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The purpose of this work is to develop a physical simulation model for the purpose of studying the effect of various design parameters on the performance of a packaged liquid chiller. A computer model which simulates the steady-state cyclic performance of a vapor compression chiller is developed for the purpose of performing detailed physical design analysis of actual industrial chillers. The model can be used for optimizing design and for detailed energy efficiency analysis of packaged liquid chillers. The simulation model takes into account presence of all chiller components such as compressor, shell-and-tube condenser and evaporator heat exchangers, thermostatic expansion valve and connection pipes and tubing's by thermo-hydraulic modeling of heat transfer, fluids flow and thermodynamics processes in each one of the mentioned components. To verify the validity of the developed model, a 7.5 USRT packaged-liquid chiller is used and a laboratory test stand for brining the chiller to its standard steady-state performance condition is build. Experimental results obtained from testing the chiller in various load and temperature conditions are shown to be in good agreement with those obtained from simulating the performance of the chiller using the computer prediction model. In part Ⅱ of this work, an entropy-minimization-optimization analysis is performed based on the developed analytical performance model of the chiller. The variation of design parameters in construction of shell-and-tube condenser and evaporator heat exchangers are studied using the developed performance and optimization analysis and simulation model and a best-match condition between the physical design and construction of chiller heat exchangers and its compressor is found to exist. It is expected that manufacturers of chillers and research organizations interested in developing energy-efficient design and analysis of chillers can take advantage of the presented study and its results.
机译:这项工作的目的是开发一种物理仿真模型,以研究各种设计参数对成套液体冷却器性能的影响。为了对实际的工业冷水机进行详细的物理设计分析,开发了一种模拟蒸汽压缩冷水机稳态循环性能的计算机模型。该模型可用于优化设计和用于包装式液体冷却器的详细能效分析。该模拟模型考虑了所有冷却器组件的存在,例如压缩机,管壳式冷凝器和蒸发器热交换器,恒温膨胀阀以及连接管和管道,它们通过热液模型进行热传递,流体流动和热力学过程建模提到的组件之一。为了验证所开发模型的有效性,使用了7.5 USRT的包装式液体冷却器,并建立了将冷却器冷却至其标准稳态性能条件的实验室测试台。通过在各种负载和温度条件下测试冷却器获得的实验结果表明与使用计算机预测模型模拟冷却器性能获得的实验结果非常吻合。在工作的第二部分,基于已开发的冷水机性能分析模型,进行了熵最小化优化分析。利用开发的性能和优化分析与仿真模型,研究了管壳式冷凝器和蒸发器换热器的设计参数的变化,并设计了冷水换热器与压缩机的物理设计和施工的最佳匹配条件。发现存在。可以预期,对冷水机的节能设计和分析感兴趣的冷水机制造商和研究机构可以利用本研究报告及其结果。

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