Simulation of fluid sloshing in a tank using the SPH and Pendulum methods

Q3 Earth and Planetary Sciences Acta Hydrotechnica Pub Date : 2018-06-01 DOI:10.15292/ACTA.HYDRO.2018.04
Vesna Vidmar, G. Petkovšek, D. Žagar
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引用次数: 2

Abstract

We simulated liquid sloshing in a circular road tanker during two typical manoeuvres, namely steady-turn and lane change. A quasi-static pendulum, a modified dynamic pendulum with adjustable rod length, and the SPH (Smooth Particle Hydrodynamics) model Tis Isat were applied to simulate liquid oscillations. A simplified vehicle-tanker overturning model was developed and applied in order to determine the overturning threshold for the first manoeuvre. The agreement of liquid oscillations between the applied methods was better in the second manoeuvre, while the maximum inclination of the liquid gravity centre was successfully simulated in both cases. Both dynamic methods, the SPH and the dynamic pendulum, show a significantly lower overturning threshold, while all methods show similar overturning behaviour for a vehicle with liquid cargo. The threshold computed using the SPH model is slightly higher than with the dynamic pendulum due to wall-particle and particle-particle interactions. The results and comparisons confirm the suitability of the SPH method for simulating sloshing in road tankers and also show the method’s advantages: realistic description of the non-linear free surface in real-time, along with a consideration of mixing and friction processes within the fluid.
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用SPH和摆锤法模拟储罐中的流体晃动
我们模拟了圆形油罐车在两种典型操作过程中的液体晃动,即稳定转弯和变道。应用准静态摆、杆长可调的改进动态摆和SPH(光滑粒子流体动力学)模型Tis-Isat来模拟液体振荡。为了确定第一次操纵的倾覆阈值,开发并应用了简化的油罐车倾覆模型。在第二次操纵中,所用方法之间的液体振荡一致性更好,而在这两种情况下都成功模拟了液体重心的最大倾斜度。SPH和动态摆这两种动力学方法都显示出明显较低的倾覆阈值,而所有方法对装有液体货物的车辆都显示出相似的倾覆行为。由于壁粒子和粒子-粒子的相互作用,使用SPH模型计算的阈值略高于动态摆。结果和比较证实了SPH方法用于模拟油罐车晃动的适用性,并显示了该方法的优点:实时真实地描述非线性自由表面,同时考虑了流体中的混合和摩擦过程。
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来源期刊
Acta Hydrotechnica
Acta Hydrotechnica Environmental Science-Environmental Engineering
CiteScore
1.30
自引率
0.00%
发文量
1
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