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Numerical Prediction of Propeller-Hull Interaction Characteristics Using RANS Method

机译:使用RAN方法的Propeller-Hull交互特性的数值预测

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The paper presents the results of computational evaluation of the hull-propeller interaction coefficients, also referred to propulsive coefficients, based on the unsteady RANS flow model. To obtain the propulsive coefficients, the ship resistance, the open-water characteristics of the propeller, and the flow past the hull with working propeller were computed. For numerical evaluation of propeller open-water characteristics, the rotating reference frame approach was used, while for self-propulsion simulation, the rigid body motion method was applied. The rotating propeller was modelled with the sliding mesh technique. The dynamic sinkage and trim of the vessel were considered. The free surface effects were included by employing the volume of fluid method (VOF) for multi-phase flows. The self-propulsion point was obtained by performing two runs at constant speed with different revolutions. The well-known Japan Bulk Carrier (JBC) test cases were used to verify and validate the accuracy of the case studies. The solver used in the study was the commercial package Star-CCM+ from SIEMENS.
机译:本文介绍了船体螺旋桨交互系数的计算评估结果,也基于不稳定的RAN流模型提及推进系数。为了获得推进系数,船舶阻力,螺旋桨的开放式水特性,并计算出与工作螺旋桨的船体的流量。对于螺旋桨开放水特性的数值评估,使用旋转参考框架方法,而用于自推进模拟,施加刚体运动方法。旋转螺旋桨用滑动网格技术进行建模。考虑了船的动态沉降和修剪。通过使用用于多相流动的流体方法(VOF)的体积来包括自由表面效果。通过以不同的速度执行两个运行来获得自推进点。众所周知的日本批量载体(JBC)测试用例用于验证和验证案例研究的准确性。该研究中使用的求解器是来自西门子的商业包星星-CCM +。

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