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CFD Analysis of Propeller Tip Vortex Cavitation in Ship Wake Fields

机译:船舶唤醒领域推进器尖端涡旋空心的CFD分析

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TVC on marine propellers in behind-hull conditions is a challenging problem for numerical predictions, because it is deformed in turbulent viscous interactions with hull wake, propeller-induced flows and rudder disturbance DES is made for cavitating flows on a propeller and a rudder of a military vessel with a 3.5° shaft inclination in non-uniform hull wake. While a cavitation tunnel test shows TVC extending over the rudder, only a short extent of TVC is reproduced in DES on the initial grid. After an adaptive grid refinement based on the Q-criterion, a larger extent of TVC is simulated and the first- and second-order pressure pulses on two points above the propeller are closer to the experimental measurements. The effects of hull wake, propeller-induced flow, rudder disturbance and shaft inclination on TVC are analyzed by looking into the deformation of the helical trajectory identified by a Q-criterion iso-surface.
机译:在船体条件下的海洋螺旋桨上的TVC是对数值预测的具有挑战性的问题,因为它在与船体唤醒的湍流粘性相互作用中变形,螺旋桨诱导的流动和舵干扰等是用于在螺旋桨上的空化流动和舵扰动的流动。用3.5°轴延伸的军用船舶垂直。虽然空化隧道试验显示在舵上延伸的TVC,但在初始网格上只再现了在DES中再现TVC的短期。在基于Q标准的自适应电网细化之后,模拟了更大程度的TVC,并且螺旋桨上方的两个点上的第一和二阶压力脉冲更靠近实验测量。通过调查由Q标准ISO-Surents识别的螺旋轨迹的变形来分析船体唤醒,螺旋桨诱导的流动,舵扰动和轴倾斜度的影响。

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