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首页> 外文期刊>International Journal of Engineering (IJE) >Water Sloshing in Rectangular Tanks - An Experimental Investigation & Numerical Simulation
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Water Sloshing in Rectangular Tanks - An Experimental Investigation & Numerical Simulation

机译:矩形水箱内水晃荡的实验研究与数值模拟

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This paper presents the steps involved in designing a test rig to study water sloshing phenomenon in a 560 x 160 x 185 mm PVC rectangular container subjected to sudden (impulsive) impact. The design encompasses the construction of the testing facility and the development of a proper data acquisition system capable of capturing the behavior of pre- and post impact water motion inside the tank. Fluid motion was recorded using a video camera for flow visualization purpose. Two water levels of 50 and 75% full as well as two driving weights of 2.5 and 4.5 kg were used. The experimental study was supplemented by a computational fluid dynamics study to mimic the fluid motion inside the tank. Examination of CFD capability to predict the behavior of the free surface of the fluid during the container initial motion and after impact is the focus of this paper. The flow fields, obtained using the numerical code, are in reasonable agreement with those from experiments. Both experimental and numerical results indicated the presence of a single traveling wave before impact, contrary to what was observed in previous studies.
机译:本文介绍了设计试验装置的步骤,以研究在560 x 160 x 185毫米PVC矩形容器中遭受突然(冲击)冲击的水晃动现象。该设计包括测试设施的建设和适当数据采集系统的开发,该系统能够捕获水箱内撞击前后水流的行为。使用视频摄像机记录流体运动以进行流量可视化。使用了两个充满度分别为50%和75%的水位以及两个驱动重量2.5和4.5 kg。实验研究以计算流体动力学研究为补充,以模拟储罐内部的流体运动。对CFD进行预测以预测容器初始运动过程中以及撞击后流体自由表面行为的能力是本文的重点。使用数字代码获得的流场与实验得到的流场是合理一致的。实验和数值结果均表明,撞击前存在单个行波,这与以前的研究相反。

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