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首页> 外文期刊>Journal of Advanced Mechanical Design, Systems, and Manufacturing >Optimization design of duct fan and evaporator module in refrigeration system with heat exchange and fan power
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Optimization design of duct fan and evaporator module in refrigeration system with heat exchange and fan power

机译:热交换和风扇电力制冷系统管道风扇和蒸发器模块的优化设计

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Since the evaporator system has been wildly applied in industry, its operating performance needs to be optimized to reduce energy consumption. Considering the evaporator, duct and fan as basic module, the matching relationship of these components must be analyzed and discussed. In this paper, to improve the design efficiency in module structure, the method to identify the design parameters and establish their mapping relationship is presented, and the structural design model of rectangular duct with finned evaporator is given. After analyzing the structural parameters of evaporator and fan in air cooling duct, the structural design of the evaporator and duct fan is identified in three geometrical parameters, which are the basic design variables in this evaporation structure. First, the simulation model of duct fan and evaporator is established, and air flow and heat distribution under variable structural parameters is simulated and compared with the experimental data gathered from the refrigeration module platform. Then, the relationship between three structural parameters and operating performance (the heat transfer and fan power) are discussed, and this quantitative mapping model is established as the design reference for evaporation structure. Finally, the optimized design is given with the energy performance evaluation in the evaporation and duct module, and this optimized design results are proposed as the structural parameter references in the case study.
机译:由于蒸发器系统在工业中被野外应用,因此需要优化其操作性能以降低能耗。考虑到蒸发器,管道和风扇作为基本模块,必须分析和讨论这些组件的匹配关系。本文在模块结构中提高了设计效率,提出了识别设计参数的方法,并给出了具有翅片蒸发器的矩形管道的结构设计模型。在空气冷却管道中分析蒸发器和风扇的结构参数之后,蒸发器和管道风扇的结构设计在三个几何参数中识别,这是该蒸发结构中的基本设计变量。首先,建立了管道风扇和蒸发器的仿真模型,模拟了可变结构参数下的空气流量和热分布,并与从制冷模块平台收集的实验数据进行比较。然后,讨论了三个结构参数和操作性能(传热和风扇功率)之间的关系,并且该定量映射模型建立为蒸发结构的设计参考。最后,优化设计具有蒸发和管道模块中的能量性能评估,并提出了这种优化的设计结果作为案例研究中的结构参数参考。

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