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首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >An investigation of plate-type windborne debris flight using coupled CFD-RBD models. Part I: Model development and validation
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An investigation of plate-type windborne debris flight using coupled CFD-RBD models. Part I: Model development and validation

机译:使用耦合CFD-RBD模型研究板状风载碎片飞行。第一部分:模型开发和验证

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The development of a coupled computational fluid-dynamics rigid body (CFD-RBD) model is presented. The RBD model deploys rotational quaternions, which are free from the gimbal lock that is associated with Euler rotational matrix. The quaternion model means that the complex 3D spinning flight modes associated with the flight of plate-type windborne debris can be modelled robustly. This paper attempts to determine the accuracy of the CFD-RBD model by comparing the predicted trajectories from a large number of debris simulations with experimentally derived equations of best fit. Agreement is found to be good and, based on the findings, an alternative form for the dimensionless flight distance is presented, which extends the range of the experimental study to longer flight times.The predictions from the CFD-RBD model are then compared against two quasi-steady analytical debris flight models. The second model is based on modified force and moment coefficients, which are informed by the findings from the CFD-RBD model. For plates that have attained a stable, autorotational flight mode, the CFD-RBD and analytical models are in good agreement. Their predictions differ during the initial stages of flight, where the complex non-linear interactions between the plate and its wake are not captured by the analytical models.
机译:提出了耦合计算流体动力学刚体(CFD-RBD)模型的开发。 RBD模型部署旋转四元数,该四元数没有与欧拉旋转矩阵相关联的万向节锁定。四元数模型意味着可以稳健地建模与板状风生碎片飞行相关的复杂3D旋转飞行模式。本文试图通过比较大量碎片模拟的预测轨迹与实验得出的最佳拟合方程来确定CFD-RBD模型的准确性。发现一致性好,并根据发现提出了无量纲飞行距离的另一种形式,将实验研究的范围扩展到更长的飞行时间,然后将CFD-RBD模型的预测与两个准稳态分析碎片飞行模型。第二个模型基于修改后的力和力矩系数,这些系数是根据CFD-RBD模型的发现得出的。对于已获得稳定,自动旋转飞行模式的车牌,CFD-RBD和分析模型非常吻合。在飞行的初始阶段,他们的预测是不同的,在解析的模型中,板块及其尾流之间复杂的非线性相互作用未被捕获。

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