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Improved passenger thermal comfort prediction in the preprototype phase by transient interior CFD analysis including mannequins

机译:通过瞬态室内CFD分析改进了预谓型相位的乘客热舒适预测,包括人体模特

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It is the overall objective in the development of automotive climate control systems to guarantee a subjective feeling of thermal comfort for each passenger. The fulfillment of all physical specification parameters of a HVAC unit, such as airflow, temperature, etc., does not automatically achieve this goal. Engineers need to ensure that the consequences of the HVAC design lead to the desired demands inside the passenger compartment. In this paper a method will be presented that enables a time-dependent detailed prediction of personal thermal comfort for each passenger in standard cool-down or warm-up tests. In addition to calculating overall comfort ratings for each passenger, transient local body segment comfort ratings can be calculated to determine local variations in comfort. It is therefore possible to discover reasons for potential discomfort in a much more detailed way. To accomplish this, mannequins are added to the CFD model of the cabin. These mannequins are subdivided into different body parts, such as head, chest, arms, etc. This is done in conformance with VISTEON's comfort model that is used to convert the results of the CFD analysis, such as temperature and velocity on the mannequin surfaces, into a subjective comfort rating. The basis of the time-dependent CFD calculation is a very robust, fast and accurate finite element flow solver. VISTEON has developed a parametric three-dimensional modelling technique which allows the engineer to rapidly build and change a CFD model of the passenger cabin. The tool is used in the early stages of the development process before detailed CAD data of the interior and prototypes are available.
机译:这是汽车气候控制系统开发的整体目标,以保证每个乘客的主观热情感觉。 HVAC单元的所有物理规格参数的实现,例如气流,温度等,不会自动实现这一目标。工程师需要确保HVAC设计的后果导致乘客舱内的所需需求。在本文中,将提出一种方法,这使得能够在标准冷却或预热测试中为每个乘客进行时间依赖的个人热舒适性的详细预测。除了计算每个乘客的整体舒适度评级外,还可以计算出瞬态局部体段舒适度评级以确定舒适性的局部变化。因此,可以以更详细的方式发现潜在的不适的原因。为实现此目的,人体模型将添加到机舱的CFD模型中。这些时装模特被细分为不同的身体部位,例如头部,胸部,臂等。这是一致性地与visteon的舒适模型进行,用于转换CFD分析的结果,例如时装型表面上的温度和速度,陷入主观舒适评级。时间依赖性CFD计算的基础是一种非常坚固,快速准确的有限元流求解器。 Visteon开发了一种参数三维建模技术,使工程师能够快速构建和改变乘客舱的CFD模型。该工具用于开发过程的早期阶段,在提供内部和原型的详细CAD数据之前。

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