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Comparison of experimental and numerical sloshing loads in partially filled tanks.

机译:比较部分填充水箱中的实验晃荡载荷和数值晃荡载荷。

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摘要

Sloshing describes the movement of liquids inside partially filled tanks, generating dynamic loads on the tank structure. The resulting impact pressures are of great importance in assessing structural strength, and their correct evaluation still represents a challenge for the designer due to the high level of nonlinearities involved, with complex free surface deformations, violent impact phenomena and influence of air trapping. In the present paper, a set of two-dimensional cases, for which experimental\udresults are available, is considered to assess the merits and shortcomings of different numerical methods for sloshing evaluation, namely two commercial RANS solvers (FLOW-3D and LS-DYNA), and two academic software (Smoothed Particle Hydrodynamics and RANS). Impact pressures at various critical locations and global moment induced by water motion in a partially filled rectangular tank, subject to a simple harmonic rolling motion, are evaluated and predictions are compared with experimental measurements.
机译:晃荡描述了部分填充的水箱内液体的运动,在水箱结构上产生了动态载荷。由此产生的冲击压力在评估结构强度方面非常重要,由于涉及高水平的非线性,复杂的自由表面变形,剧烈的冲击现象和空气滞留的影响,对它们的正确评估仍然对设计人员构成挑战。在本文中,考虑了一组二维案例,这些案例都具有实验性\结果,可以用来评估用于晃动评估的不同数值方法的优缺点,即两个商用RANS求解器(FLOW-3D和LS-DYNA)。 )和两个学术软件(平滑粒子流体动力学和RANS)。对部分填充的矩形水箱中水运动引起的各个关键位置的冲击压力和整体力矩进行简单的谐波滚动运动进行评估,并将预测值与实验测量值进行比较。

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