首页> 外文会议>International Conference on Ocean, Offshore and Arctic Engineering >FREE FALL WATER ENTRY OF A TWO-DIMENSIONAL ASYMMETRIC WEDGE IN OBLIQUE SLAMMING: A NUMERICAL STUDY
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FREE FALL WATER ENTRY OF A TWO-DIMENSIONAL ASYMMETRIC WEDGE IN OBLIQUE SLAMMING: A NUMERICAL STUDY

机译:自由落体水分进入二维不对称楔形斜掠夺:数值研究

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This paper examines the hydrodynamic problem of a two-dimensional symmetric and asymmetric wedge water entry through freefall motion. The gravity effect on the flow is considered and because of precise simulation close to the real phenomenon, the oblique slamming is analyzed. The defined problem is numerically studied using SIMPLE and HRIC schemes and by implementing an overset mesh approach. In order to evaluate the accuracy of the numerical model, the present results are compared and validated with previous experimental studies and showed good agreement. The results are presented and compared for each symmetry and asymmetry in different deadrise angles, drop heights and heel angles. Based on a comparison of the measured vertical acceleration of the experimental wedge data, it is determined that the proposed numerical method has relatively good accuracy in predicting the slamming phenomenon and wedge response. The influence of viscous regime on water entry simulations is investigated, in according to results, effect of viscosity is negligible. Results show that the heel angle dramatically affects the wedge dynamics, pile-up evolution, and pressure distribution. These results suggest evidence for a complex interaction between geometric parameters on the water entry of rigid wedges, which could finally develop our understanding of planing vessels operating in real sea conditions.
机译:本文研究了通过自由落体运动的二维对称和不对称楔形水进入的流体动力学问题。对流动的重力效应被认为是因为精确模拟接近真实现象,分析了倾斜掠夺。使用简单和HRINCE方案以及通过实现监视网格方法进行数值研究定义的问题。为了评估数值模型的准确性,对目前的结果进行了比较和验证了以前的实验研究,并达成了良好的一致性。呈现并比较各个对称性和不对称的结果,以不同的失踪角度,下降高度和脚跟角度。基于实验楔数的测量垂直加速度的比较,确定所提出的数值方法具有相对良好的准确性,可预测猛击的现象和楔形响应。研究了粘性制度对水处理模拟的影响,根据结果,粘度的效果可忽略不计。结果表明,脚跟角度显着影响楔形动力学,堆积演化和压力分布。这些结果表明了几何参数在刚性楔形水处理的复杂相互作用的证据,这最终可能会培养我们对实际海洋状况运行的刨花的理解。

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