首页> 外文OA文献 >The bandwidth of transient yaw effects on vehicle aerodynamics.
【2h】

The bandwidth of transient yaw effects on vehicle aerodynamics.

机译:瞬态偏航带宽对车辆空气动力学的影响。

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

A vehicle on the road encounters an unsteady flow due to turbulence in the natural wind, the unsteady wakes from other vehicles and as a result of traversing through the stationary wakes of road side obstacles. There is increasing concern about potential differences in aerodynamic behaviour measured in steady flow wind tunnel conditions and that which occurs for vehicles on the road. It is possible to introduce turbulence into the wind tunnel environment (e.g. by developing active turbulence generators) but on-road turbulence is wide ranging in terms of both its intensity and frequency and it would be beneficial to better understand what aspects of the turbulence are of greatest importance to the aerodynamic performance of vehicles.ududThere has been significant recent work on the characterisation of turbulent airflow relevant to road vehicles. The simulation of this time-varying airflow is now becoming possible in wind tunnels and in CFD. Less is known about the range of turbulence length scales and intensities that are significant to the performance of vehicles. It is only necessary to simulate (experimentally or computationally) the Venn intersection of the range of conditions experienced and the range that are important to the vehicle's performance.ududThe focus of this work is on transient yaw fluctuations. Time-resolved simulations of simple two dimensional parametric geometries subjected to yaw transients at a range of different time scales were conducted using Exa Powerflow. The effects of model geometry, Reynolds number yaw fluctuation amplitude and superposition were investigated.ududIt was found that, in general, the flow could be treated as quasi-steady for reduced frequencies below 0.3 (based on model length and freestream velocity), which is consistent with theory. The most significant changes were observed in a critical reduced frequency range between ω R = 0.3 and ω R = 1.5 (scales of 4-20 vehicle lengths, or periods of 0.6 to 3s for a vehicle at 30 m/s). Higher frequencies will have significant effects, but these were observed to show little sensitivity to frequency above the critical range. Small physical features on real vehicles will add importance to smaller, but not larger, scales.ududThe dynamic effects were largely independent of Reynolds number, including for near-inviscid conditions, indicating that the sources of the non-quasi-steady response were not viscous in origin. Increasing yaw amplitude or combining multiple frequency components did not have a summative impact suggesting that it may not be possible to describe vehicle response to transient conditions using linear concepts such as transfer or admittance functions.
机译:道路上的车辆由于自然风的湍流而遇到不稳定的流动,该不稳定的噪声是从其他车辆中唤醒的,并且是经过行进路侧障碍物的固定尾迹的结果。人们越来越关注在稳流风洞条件下测得的空气动力学行为的潜在差异以及在道路上的车辆所发生的差异。可以将湍流引入风洞环境中(例如,通过开发主动湍流发生器),但是公路湍流的强度和频率范围很广,因此更好地了解湍流的各个方面将是有益的对于车辆的空气动力性能而言,它是最重要的。 ud ud近期在表征与公路车辆有关的湍流方面有大量工作。现在,在风洞和CFD中模拟这种随时间变化的气流变得可能了。人们对湍流长度标度和强度范围对车辆性能的了解鲜为人知。仅需要(通过实验或计算方式)模拟经历的条件范围和对车辆性能至关重要的范围的维恩相交。 ud ud这项工作的重点是瞬态偏航波动。使用Exa Powerflow对在不同时间范围内发生偏航瞬变的简单二维参数几何进行了时间分辨仿真。研究了模型几何形状,雷诺数偏航波动幅度和叠加的影响。 ud ud发现,通常,对于低于0.3的降低频率,可以将流动视为准稳态(基于模型长度和自由流速度) ,这与理论一致。在ωR = 0.3到ωR = 1.5的临界降低频率范围内观察到最显着的变化(比例为4-20辆车的长度,对于30 m / s的车为0.6到3s的周期)。较高的频率将产生重大影响,但观察到这些对临界范围以上的频率几乎没有敏感性。实际车辆上的较小物理特征将增加较小但不较大的比例尺的重要性。 ud ud动态效果在很大程度上与雷诺数无关,包括在接近不粘稠的情况下,这表明非准稳态响应的来源原产地不是粘性的。偏航幅度的增加或多个频率分量的组合不会产生累加影响,这表明可能无法使用线性概念(如传递函数或导纳函数)来描述车辆对瞬态条件的响应。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号