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Predicting Unsteady Loads in Marine Propulsor Crashback Using Large Eddy Simulation

机译:使用大涡模拟预测船舶推进器回击中的非稳态载荷

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Propulsor crashback is an off-design operating condition where a propulsor rotates in the reverse direction to yield negative thrust. Crashback is characterized by the interaction of the free stream with the reverse flow generated by propulsor rotation. This causes a highly unsteady vortex ring which leads to flow separation and unsteady forces and moments on the blades. Large eddy simulation (LES) is performed for marine propulsors in crashback for various configurations and advance ratios and validated against experiments. The predictive capability of LES as a tool for propulsor crashback is demonstrated on an open propulsor, open propulsor with a submarine hull, and ducted propulsor with and without stator blades. LES is in good agreement with experiments for the mean and RMS levels, and spectra of the unsteady loads on the propulsors.
机译:推进器反冲是一种偏离设计的运行状态,其中推进器会反向旋转以产生负推力。冲撞的特征在于自由流与推进器旋转产生的反向流的相互作用。这会导致高度不稳定的涡流环,从而导致流动分离以及叶片上的不稳定力和力矩。针对各种构型和推进比,对后退式船用推进器进行了大涡模拟(LES),并针对实验进行了验证。 LES作为推进器反冲工具的预测能力在敞开式推进器,带潜艇船体的敞开式推进器以及有无定子叶片的管道推进器上得到了证明。 LES与平均值和RMS水平以及推进器上非稳态载荷谱的实验非常吻合。

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