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Numerical Evaluation of Mass Flow on Instrument Panel Air Vents: Domain Size Study

机译:仪表板空气通风口质量流量的数值评价:域尺寸研究

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An adequate mass flow distribution on instrument panel air vents is fundamental for passengers thermal comfort in an automobile. Computational fluid dynamics (CFD) is a useful tool to achieve this goal, since one can identify flow patterns and details that cannot be seen during experimental tests. Despite the software and hardware developments in the last years it is still necessary and clever to make simplifications in the numerical models: the simpler and still representative the model the better it is. In this context the present work aims to study the influence of the HVAC (Heating, Ventilation and Air Conditioning) system geometry on mass flow distribution simulation. A total of 8 different domains were studied: Complete HVAC system in recirculation position, Complete HVAC system in external intake position, HVAC cut in the filter area, HVAC cut in the evaporator region and one model without HVAC system. On the first tree studies it was also verified the influence of the evaporator geometry. All the models with HVAC system presented similar results, and closer to experimental when compared with the one without the HVAC. The evaporator geometry had no significant influence in order to justify its modeling. The model with the HVAC cut in the evaporator region (without the evaporator) has demonstrated to be the best combination between accuracy and simplicity.
机译:在仪表板上的充足的质量流量分布是汽车乘客在汽车热舒适性的基础上。计算流体动力学(CFD)是实现这一目标的有用工具,因为人们可以识别在实验测试期间无法看到的流模式和细节。尽管过去几年软件和硬件开发仍然是必要的,并且在数值模型中进行简化仍然是必要和聪明的:模型更简单,仍然代表越好。在这种情况下,本作者旨在研究HVAC(加热,通风和空调)系统几何对质量流分布模拟的影响。研究了总共8个不同的域:完整的HVAC系统在再循环位置,完整的HVAC系统在外部进气位,HVAC切割在过滤区,HVAC切割在蒸发器区域和一个没有HVAC系统的型号中。在第一树研究中,它还验证了蒸发器几何形状的影响。所有带有HVAC系统的型号都呈现了类似的结果,与没有HVAC的一个相比,更接近实验。蒸发器几何形状没有显着影响,以证明其建模。蒸发器区域中HVAC切割的模型(不蒸发器)已经证明是精度和简单性之间的最佳组合。

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