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Design of simulation platform for the two automotive air conditioning devices

机译:两款汽车空调设备的仿真平台设计

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The current design process of the two automotive air conditioning devices (condenser and evaporator) mainly use a large number of experiments which are very time-consuming. In view of this flaw, this paper presents a structurized procedure to develop the simulation platform of the two devices. Firstly, the physical and mathematical models of the two devices were established. The heat transfer situation was simulated to exclude unreasonable model. Secondly, the finite element analysis of the two devices was carried on using FLUENT. The simulated model was constantly modified by comparing the results with that of the mathematical model. In this study, FLUENT numerical analysis about the heat transfer and flow characteristics was taken on the model under four conditions. The conclusion obtained from that had great significance for the design. Finally, simulation system of the two devices was developed by the tool of MATLAB programming language and GUI design module. This simulation system can replace actual experiments by the way of analog computation. It can not only simulate performance of the system on different initial conditions to provide a decision-making basis for the optimal design of condenser and evaporator, but also shorten design cycles.
机译:目前的两个汽车空调装置(冷凝器和蒸发器)的设计过程主要使用大量的实验,这非常耗时。鉴于此缺陷,本文提出了一种结构化程序,可开发两个设备的仿真平台。首先,建立了两个设备的物理和数学模型。模拟传热情况以排除不合理的模型。其次,使用流畅的两种器件的有限元分析。通过将结果与数学模型的结果进行比较,不断修改模拟模型。在该研究中,在四种条件下对型号进行了对传热和流动特性的流畅数值分析。从这一点获得的结论具有重要意义。最后,由MATLAB编程语言和GUI设计模块的工具开发了两种设备的仿真系统。该仿真系统可以通过模拟计算的方式取代实际实验。它不仅可以在不同初始条件下模拟系统的性能,以提供冷凝器和蒸发器的最佳设计的决策基础,而且还缩短了设计周期。

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