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Shape Effectiveness of HVAC Outlets on Automobile Thermal Comfort

机译:暖通空调插座对汽车热舒适性的形状影响

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摘要

Thermal comfort in automobile cabin can affect drivers and passenger's health, performance and comfort. Due to spatial and temporal variation of state variables and boundary conditions in the automobile cabin , the heating ventilating and air-conditioning (HVAC) does not have to be designed to provide a uniform environment, especially because of individual differences regarding to physiological and psychological response, clothing insulation, activity, air temperature and air movement preference, etc. The main objective of this research is to study the air flow regimes and thermal comfort in automobile cabin using computational fluid dynamics (CFD) software. For this purpose, the CFD software from ANSYS Inc., called FLUENT 17.2, is employed. In which the solar load model is embedded s2s (surface to surface) as a solar radiation model. The CFD modeling techniques solved the continuity, momentum and energy conservation equations in addition to standard k - e model equations for turbulence closure. Meshing is processed around 4.0 million unstructured tetra-elements approximately. The performance of the air conditioning system is characterized by airflow regimes (air temperature, air velocity, relative humidity, PMV and PPD contours), the present work is focus on the effect of air terminal shape of Hvac system, two configurations are used case (1) and case (2). Case (1) is the existing design of air terminals of the HVAC system of the selected car (Skoda Superb), the air terminals are in rectangular shape. While case (2) are in circle shape.
机译:车厢内的热舒适性会影响驾驶员和乘客的健康,性能和舒适性。由于车厢中状态变量和边界条件的时空变化,不必设计供暖通风和空调(HVAC)来提供统一的环境,尤其是由于生理和心理反应方面的个体差异这项研究的主要目的是使用计算流体力学(CFD)软件研究汽车机舱中的空气流态和热舒适性。为此,使用了来自ANSYS Inc.的CFD软件,称为FLUENT 17.2。其中太阳负荷模型嵌入s2s(面对面)作为太阳辐射模型。除了用于湍流封闭的标准k-e模型方程式之外,CFD建模技术还解决了连续性,动量和能量守恒方程式。网格划分大约处理了400万个非结构化四元素。空调系统的性能以气流状态(空气温度,空气速度,相对湿度,PMV和PPD等高线)为特征,目前的工作着眼于Hvac系统的空气终端形状的影响,使用两种配置( 1)和情况(2)。情况(1)是所选汽车(Skoda Superb)的HVAC系统的空气终端的现有设计,空气终端为矩形。而情况(2)是圆形的。

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  • 来源
    《ASHRAE Transactions》 |2019年第1期|520-527|共8页
  • 作者单位

    Department of Mechanical Power, Faculty of Engineering, Cairo University;

    Department of Mechanical Power, Faculty of Engineering, Cairo University;

    Department of Mechanical Power, Faculty of Engineering, Cairo University;

    Department of Mechanical Power, Faculty of Engineering, Cairo University;

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