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首页> 外文期刊>SAE International Journal of Passenger Cars - Mechanical Systems >High Fidelity Quasi Steady State Aerodynamic Model Development and Effects on Race Vehicle Performance Predictions
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High Fidelity Quasi Steady State Aerodynamic Model Development and Effects on Race Vehicle Performance Predictions

机译:高保真准稳态空气动力学模型的发展及其对赛车性能预测的影响

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Presented in this paper is a procedure to develop a high fidelity quasi steady state aerodynamic model for use in race car vehicle dynamic simulations and its application in a race vehicle multi-body full lap simulation. Developed to fit quasi steady state (QSS) wind tunnel data, the aerodynamic model is regressed against three independent variables: front ground clearance, rear ride height, and yaw angle. An initial dual range model is presented and then further refined to reduce the model complexity while maintaining a high level of predictive accuracy. The model complexity reduction decreases the required amount of wind tunnel data thereby reducing wind tunnel testing time and cost. The quasi steady state aerodynamic model for the pitch moment degree of freedom is systematically developed in this paper. This procedure is extended to the other five aerodynamic degrees of freedom to develop a complete, high fidelity, six degree of freedom quasi steady state aerodynamic model. This high fidelity model reduces the QSS aerodynamic fit error compared to conventional aerodynamic model development. Both the newly developed high fidelity aerodynamic model and a conventionally derived aerodynamic model are implemented in a NASCAR Truck multi-body, full lap QSS simulation to determine the effects of the high fidelity QSS aerodynamic model on the simulation results. Performance metrics are calculated from simulation results and compared to assess the effects of the aerodynamic models on the performance predictions. The increased accuracy of the high fidelity aerodynamic model is found to have discernable effects on the vehicle performance predictions resulting from the QSS simulation.
机译:本文提出了一种开发用于赛车动态仿真的高保真准稳态空气动力学模型的程序,并将其应用于赛车多体全程仿真。为适应准稳态(QSS)风洞数据而开发,空气动力学模型针对三个独立变量进行了回归:前离地高度,后方行驶高度和偏航角。提出了初始的双范围模型,然后对其进行了进一步完善,以降低模型的复杂性,同时保持较高的预测精度。模型复杂度的降低减少了所需的风洞数据量,从而减少了风洞测试时间和成本。本文系统地开发了俯仰力矩自由度的准稳态空气动力学模型。该程序扩展到其他五个空气动力学自由度,以开发出完整的,高保真度,六个自由度的准稳态空气动力学模型。与传统的空气动力学模型开发相比,这种高保真模型减少了QSS空气动力学拟合误差。在NASCAR卡车多体全圈QSS仿真中实现了新开发的高保真空气动力学模型和常规推导的空气动力学模型,以确定高保真QSS空气动力学模型对仿真结果的影响。从模拟结果中计算出性能指标,并将其进行比较以评估空气动力学模型对性能预测的影响。发现高保真空气动力学模型精度的提高对QSS仿真得出的车辆性能预测具有明显的影响。

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