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Combined simulation of heavy truck stability under sudden and discontinuous direction change of crosswind with computational fluid dynamics and multi-body system vehicle dynamics software

机译:侧风突然和不连续方向变化下重型卡车稳定性的仿真与计算流体力学和多体系统车辆动力学软件的组合

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The method of yaw model is used to establish aerodynamic property of heavy truck in computational fluid dynamics andwind tunnel test. A model of multi-body system simulation for heavy truck is built based on design and measure datafrom body, driving system, steering system, braking system, and powertrain system with TruckSim. Aerodynamic reference point of Society of Automotive Engineers (SAE) and aerodynamic coefficients are as the interface to integrate computational fluid dynamics and multi-body system simulation. A sudden and discontinuous direction change of crosswindis set up in multi-body system simulation, and dynamic performance of the heavy truck is performed by open-loop andclosed-loop simulation. Under the given simulation case, lateral offset of the truck for open-loop simulation is 1.55mand more than that for closed-loop simulation; the roll rate range of both simulations is 21.49 /s to 1.695 /s, the rangeof lateral acceleration is 20.497 m/s2 to 0.447 m/s2 in open-loop simulation, the range of lateral acceleration is20.467 m/s2 to 0.434 m/s2 in closed-loop simulation; the range of yaw rate is 21.36 /s to 1.284 /s in open-loop simulation, the range of yaw rate is 20.703 /s to 0.815 /s in closed-loop simulation. The results show that combined simulation of the heavy truck stability can be completed by computational fluid dynamics and multi-body system softwareunder sudden and discontinuous direction change of crosswind.
机译:在计算流体动力学和风洞试验中,偏航模型方法用于建立重型卡车的空气动力学特性。基于TruckSim的车身,驱动系统,转向系统,制动系统和动力总成系统的设计和测量数据,建立了重型卡车的多体系统仿真模型。汽车工程师协会(SAE)的空气动力学参考点和空气动力学系数是集成计算流体动力学和多体系统仿真的界面。在多体系统仿真中建立了侧风的突然和不连续的方向变化,并通过开环和闭环仿真来执行重型卡车的动态性能。在给定的仿真情况下,用于开环仿真的卡车的横向偏移量比用于闭环仿真的卡车的横向偏移量大1.55mand。两种模拟的侧倾速率范围为21.49 / s至1.695 / s,开环模拟中的横向加速度范围为20.497 m / s2至0.447 m / s2,横向加速度的范围为20.467 m / s2至0.434 m / s2在闭环仿真中;在开环仿真中,横摆率的范围为21.36 / s至1.284 / s,在闭环仿真中,横摆率的范围为20.703 / s至0.815 / s。结果表明,在侧风突然和不连续变化的情况下,可以通过计算流体力学和多体系统软件完成重型卡车稳定性的组合仿真。

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