Simulation of Sloshing in Rigid Rectangular Tank and a Typical Aircraft Drop Tank

Shreeharsha Hv, S. Sg, Mallikarjun Sg
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引用次数: 5

Abstract

In this research, the liquid sloshing behavior in a 3D rectangular tank was simulated and validated by applying peak acceleration load using computational fluid dynamics technique. The application of this sloshing phenomenon was carried out on a typical Aircraft Drop tank with and without baffle plates for 7 g peak acceleration. The structural integrity of the drop tank has been taken into consideration during the cruise flight condition. Further, an optimized design of a drop tank has been modeled. The comparison of computed results for 3D rectangular tank case with experimental results showed that the numerical technique is capable of simulating hydrostatic pressure loads exerted on tank walls. Similarly, the necessary sloshing loads in the form of hydrodynamic pressure generated on the tank walls have been estimated for different cases of a typical aircraft drop tank. The kinematic profiles of liquids were observed at different instances for various cases. Computational results indicated that there is a reduction in the peak pressure on aft side of the tank with the use of baffle plates.
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刚性矩形油箱和典型飞机油箱的晃动仿真
本文采用计算流体力学技术,通过施加峰值加速度载荷,模拟并验证了三维矩形槽内液体的晃动行为。将这种晃动现象应用于一个典型的有挡板和没有挡板的飞机油箱,峰值加速度为7g。在巡航飞行条件下,考虑了副油箱的结构完整性。在此基础上,建立了一个优化设计的油罐模型。对三维矩形罐壳的计算结果与实验结果进行了比较,结果表明,数值模拟技术能够模拟施加在罐壁上的静水压力载荷。同样,对一个典型的飞机副油箱的不同情况下,以水动压力形式产生的必要晃动载荷也进行了估计。在不同的情况下,观察了液体的运动曲线。计算结果表明,挡板的使用降低了油箱尾部的峰值压力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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