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CFD Water Management Design for a Passenger Coach with Correlation

机译:CFD水管理设计与相关性的乘客教练

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Side window clarity and its effect on side mirror visibility plays a major role in driver comfort. Driving in inclement weather conditions such as rain can be stressful, and having optimal visibility under these conditions is ideal. However, extreme conditions can overwhelm exterior water management devices, resulting in rivulets of water flowing over the a-pillar and onto the vehicle’s side glass. Once on the side glass, these rivulets and the pooling of water they feed, can significantly impair the driver’s ability to see the side mirror and to see outwardly when in situations such as changing lanes. Designing exterior water management features of a vehicle is a challenging exercise, as traditionally, physical testing methods first require a full-scale vehicle for evaluations to be possible. Additionally, common water management devices such as grooves and channels often have undesirable aesthetic, drag, and wind noise implications. Being able to detect water management issues such as A-pillar overflow, as well as to develop strategies to resolve them in parallel with early design cycle exterior aerodynamic development, is highly desirable for this reason. This paper details a collaborative effort where a CFD method is first validated against on road testing and then applied to a design study. The Lattice Boltzmann code based results presented show an excellent correlation with on-road test data. One successive design variants is created, with the design process being driven by the understanding provided by the CFD results.
机译:侧窗清晰度及其对侧视镜可视性的影响在驾驶员舒适性中起着重要作用。在恶劣的天气条件下驾驶,如雨水可能会压力,并且在这些条件下具有最佳的可视性是理想的。然而,极端条件可以压倒外部水管理装置,导致流过a柱的水流,并进入车辆的侧玻璃。一旦放在侧面玻璃上,这些ripulets和他们饲料的水汇集,可以显着损害驾驶员看到侧面镜子的能力,并且在诸如改变车道的情况下的情况下向外看到。设计车辆的外部水管理特征是一个具有挑战性的运动,传统上,物理测试方法首先需要满量程的载体进行评估。另外,诸如凹槽和通道之类的普通水管理装置通常具有不希望的美学,阻力和风噪声。能够检测水管理问题,如柱溢流,以及开发与早期设计周期外部空气动力学开发并行解决它们的策略,这是非常理想的。本文详细介绍了一种合作努力,其中CFD方法首先在道路测试中验证,然后应用于设计研究。提出了基于格式的基于基于基于码的结果,显示了与道路上测试数据的出色相关性。创建一个连续的设计变体,设计过程由CFD结果提供的理解驱动。

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