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Numerical research on aerodynamic characteristic optimization of pantograph fixing place on high speed train

机译:高速列车受电弓固定位置空气动力特性优化的数值研究

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At present, the aerodynamic characteristic of the pantograph has been attached more importance to with the improvement of the high speed train. The excellent aerodynamic characteristic of the pantograph is a significant factor ensuring the current collecting stability between the pantograph and catenary and increasing the using life. The studying methods on it include theoretical computing, numerical simulation and experimentation. Using the commercial soft Fluent, the numerical research of the pantograph aerodynamic characteristic has been made in the different installing place. The calculation precision has been obtained with the suitable meshing, selecting appropriate turbulent model and adopting the right boundary conditions. The simulation results show that the lifting force changes with the fixing place and the dragging force does not transform basically when not considering crosswind. When the crosswind is taken into account, the lifting force changes obviously and the total rolling moment do not change with the installing location. By optimization, the fixing position with the best aerodynamic characteristic is found.
机译:目前,随着高速列车的改进,受电弓的空气动力学特性已变得更加重要。受电弓的优良空气动力学特性是确保受电弓和悬链线之间的电流收集稳定性并延长使用寿命的重要因素。其研究方法包括理论计算,数值模拟和实验。使用商业化的Fluent,在不同的安装位置进行了受电弓空气动力学特性的数值研究。通过选择合适的网格,选择合适的湍流模型并采用正确的边界条件,可以获得计算精度。仿真结果表明,在不考虑侧风的情况下,举升力随固定位置的变化而变化,曳引力基本没有变化。当考虑侧风时,提升力明显变化,总滚动力矩不随安装位置而变化。通过优化,找到具有最佳空气动力学特性的固定位置。

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