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Automobile shape formation and simulation by a computer-aided systematic method

机译:汽车形状形成和计算机辅助系统仿真方法

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摘要

A systematic method which combines the shape curvature entropy and computational fluid dynamics analyses was proposed in this study for creating automobile shapes. Various automobile shapes were evaluated by the proposed method and the parameters including the curvature entropy and the drag coefficient of each configuration were calculated so as to determine the optimal shape design. First, shapes of commercially available car models were collected and their curvature entropy values were determined by the proposed equation. Meanwhile, the drag coefficient of each car model was determined by computational fluid dynamics simulation. Both values were compared and the results indicated a positive correlation between an automobile shape's curvature entropy value and its drag coefficient. Therefore, the curvature entropy is proven to be a suitable indicator for estimating an automobile shape's aerodynamic performance. For a new automobile shape design, the required number of numerical analyses can be reduced by utilizing the proposed curvature entropy calculation so that the time spent on designing an automobile shape can be greatly reduced.
机译:在这项研究中,提出了一种结合形状曲率熵和计算流体动力学分析的系统方法来创建汽车形状。通过提出的方法对各种汽车形状进行了评估,并计算了包括各种配置的曲率熵和阻力系数在内的参数,从而确定了最佳的形状设计。首先,收集市售汽车模型的形状,并通过提出的方程式确定其曲率熵值。同时,通过计算流体动力学模拟确定每种汽车模型的阻力系数。比较这两个值,结果表明汽车形状的曲率熵值与其阻力系数呈正相关。因此,曲率熵被证明是用于估计汽车形状的空气动力学性能的合适指标。对于新的汽车形状设计,可以通过利用建议的曲率熵计算来减少所需的数值分析次数,从而可以大大减少设计汽车形状所花费的时间。

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