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首页> 外文期刊>Journal of Zhejiang University. Science, A >Simulation, experimentation, and collaborative analysis of adjacent heat exchange modules in a vehicular cooling system*
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Simulation, experimentation, and collaborative analysis of adjacent heat exchange modules in a vehicular cooling system*

机译:车辆冷却系统中相邻热交换模块的仿真,实验和协作分析*

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A cooling system consisting of several heat exchange modules is a necessary part of an automobile, and its performance has a direct effect on a vehicle’s energy consumption. heat exchangers, such as a charged air cooler (CAC), radiator, oil cooler, or condenser have different structures and can be arranged in various orders, and each combination may produce different effects because of interactions among them. In this study, we aimed to explore the principles governing interactions among adjacent heat exchangers in a cooling system, using numerical simulation and experimental technology. 3D models with different combinations were developed, compared, and analyzed comprehensively. A wind tunnel test platform was constructed to validate the computational results. We found that the heat dissipation of the modules was affected slightly by their relative position (the rules basically comply with the field synergy principle), but was independent of the modules’ spacing within a certain distance range. The heat dissipation of one module could be effectively improved by restructuring, but with a penalty of higher resistance. However, the negative effect on the downstream module was much less than expected. The results indicated that the intensity of heat transfer depends not only on the average temperature difference between cold and hot mediums, but also on the temperature distribution.
机译:由多个热交换模块组成的冷却系统是汽车的必要部分,其性能对车辆的能量消耗直接影响。热交换器,例如带电的空气冷却器(CAC),散热器,油冷却器或冷凝器具有不同的结构,并且可以以各种顺序排列,并且每个组合可能由于它们之间的相互作用而产生不同的效果。在这项研究中,我们旨在利用数值模拟和实验技术探讨冷却系统中相邻热交换器之间的相互作用的原理。与全面分析的3D具有不同组合的模型。构建风洞测试平台以验证计算结果。我们发现模块的散热因其相对位置而略微影响(规则基本上符合现场协同原理),但是与在一定距离范围内的模块间距无关。通过重组可以有效地改善一个模块的散热,但是具有更高的阻力。然而,对下游模块的负面影响远远低于预期。结果表明,传热强度不仅取决于冷和热介质之间的平均温差,还取决于温度分布。

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