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Computational slosh dynamics: theory and industrial application

机译:计算晃荡动力学:理论与工业应用

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摘要

The effect of liquid sloshing upon the performance, control, and acoustics of vehicles is becoming more pronounced with the increasing size of fuel tanks. Especially the fundamental natural frequency and the viscous damping rate are important quantities from an engineering point of view. Theory and industrial application for calculating numerically sloshing effects of viscous liquids within fuel tanks are presented for various container geometries. The numerical treatment uses the volume-of-fluid method for calculating the free surface flows. The efficiency and the error level of the chosen numerical approach are evaluated by academic benchmark tests. The industrial application presented covers a typical contemporary automotive fuel tank and its sloshing problems.
机译:随着油箱尺寸的增加,液体晃动对车辆性能,控制和声学的影响越来越明显。从工程的观点来看,特别是基本固有频率和粘性阻尼率是重要的量。针对各种容器几何形状,提出了用于计算燃料箱内粘性液体的数值晃动效应的理论和工业应用。数值处理使用流体体积法计算自由表面流量。所选数值方法的效率和误差水平通过学术基准测试进行评估。提出的工业应用涵盖了典型的当代汽车油箱及其晃动问题。

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