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Hydrodynamic aspects of moving vehicle with sloshing tanks

机译:带晃荡油箱的行驶车辆的流体动力学特性

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Freight vehicles with partially filled liquid tanks will be affected by liquid sloshing during transient motion. The sloshing induced by vehicle motion will lead to extra force on the vehicle and sometimes is a potential threat to safety. Previous studies on this problem usually use a mass-spring analogy to represent the sloshing effect of the liquid tank. Its main disadvantage is that CFD analysis or experimental study has to be performed beforehand, so that an equivalent mass-spring model can be constructed by curve fitting. In this paper, frequency domain boundary element method (BEM) and analytical solution to the sloshing problems are used to derive the modal equation and hydrodynamic parameters of the sloshing fluid. The accuracy of the results will be examined by comparison with available CFD results in the literature. The paper then evaluates the accuracy of equivalent mass-spring model and explores the possibility to approximate the sloshing effects inside cylindrical tanks by using analytical solution to the sloshing inside equivalent rectangular tanks.
机译:液体罐部分填充的货运车辆在瞬态运动过程中会受到液体晃动的影响。车辆运动引起的晃动将在车辆上施加额外的力,有时甚至对安全性构成潜在威胁。以前对此问题的研究通常使用质量弹簧类比来表示储液罐的晃动效果。它的主要缺点是必须事先进行CFD分析或实验研究,以便可以通过曲线拟合构造等效的质量-弹簧模型。本文采用频域边界元方法(BEM)和求解问题的解析方法,导出了流体的模态方程和流体动力参数。将通过与文献中的可用CFD结果进行比较来检查结果的准确性。然后,本文评估了等效质量弹簧模型的准确性,并探索了通过对等效矩形水箱内部晃荡进行分析的方法来近似估计圆柱水箱内部晃荡效果的可能性。

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