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首页> 外文期刊>International Journal of Automotive Technology >EFFECT OF REAR SLANT ANGLE ON VEHICLE CROSSWIND STABILITY SIMULATION ON A SIMPLIFIED CAR MODEL
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EFFECT OF REAR SLANT ANGLE ON VEHICLE CROSSWIND STABILITY SIMULATION ON A SIMPLIFIED CAR MODEL

机译:在简化的汽车模型上,后倾斜角对车辆横风稳定性的影响

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摘要

It is important to know the effect of the aerodynamic forces and moments on driving stability because it is responsible for the excitation and influences the response of the vehicle. The purpose of this paper is to study the effect of rear slant angle of a surface vehicle on crosswind sensitivity for stability analysis. The vehicle mathematical model used to conduct a dynamic simulation was based on a simple reduced order lateral dynamics of sideslip and yaw rate motion coupled with aerodynamics model. The intention here is to compare the effect of rear slant angles response to crosswind and to rank the crosswind sensitivity ratings. The aerodynamic loads are defined as the function of the aerodynamic derivatives from the static wind tunnel tests. Result shows a 20° rear slant angle demonstrates the highest rating of crosswind sensitivity, while zero degree slant exhibits the least.
机译:重要的是要了解空气动力和力矩对行驶稳定性的影响,因为它会引起激励并影响车辆的响应。本文的目的是研究用于稳定分析的地面车辆的后倾斜角对侧风灵敏度的影响。用于进行动态仿真的车辆数学模型基于侧滑和横摆率运动的简单降阶横向动力学以及空气动力学模型。这里的目的是比较后倾角对侧风的影响,并对侧风灵敏度等级进行排名。空气动力学负荷定义为静态风洞试验中空气动力学导数的函数。结果表明,后倾角为20°表示侧风灵敏度最高,而零度后倾角最小。

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