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Numerical Analysis of Propeller During Heave Motion Near a Free Surface

机译:螺旋桨在自由表面附近升沉运动的数值分析。

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The interaction between the free surface and the propeller during heave motion near the free surface was analyzed numerically using the Reynolds-Averaged Navier-Stokes (RANS) method. The coupling effect between the rotation and heave motions of the propeller was modeled using a motion equation developed in this study; the heave motion was simplified as a periodic motion based on the sinusoidal motion law; and the transfer of numerical values for unsteady flow fields was implemented using overset grid technology. A comparative analysis of the unsteady thrust coefficient and torque coefficient under different advance coefficient conditions was conducted, and the air ingestion phenomenon of the propeller was analyzed. The research highlighted the interaction between the coupled heave and rotation motions of the propeller and the free surface. The results showed that, when the advance coefficient was low, the hydrodynamic performance of the propeller during heave motion near a free surface was strongly influenced by the free surface and that a remarkable interaction existed between the propeller and the free surface. As the advance coefficient increased, the interaction between the propeller and the free surface weakened. The air ingestion that the propeller exerts upon the free surface during heave motion is a complex coupled superposition process. This phenomenon is correlated to the motion state and working time of the propeller, as well as the distance between the propeller and the free surface.
机译:使用雷诺平均Navier-Stokes(RANS)方法对自由表面附近的起伏运动期间自由表面和螺旋桨之间的相互作用进行了数值分析。螺旋桨的旋转运动与升沉运动之间的耦合效应是使用本研究开发的运动方程建模的。根据正弦运动定律,升沉运动简化为周期性运动。非定常流场的数值传递是使用过冲网格技术实现的。对不同推进系数条件下的非定常推力系数和转矩系数进行了比较分析,分析了螺旋桨的进气现象。该研究强调了螺旋桨和自由表面的耦合升沉和旋转运动之间的相互作用。结果表明,当推进系数低时,螺旋桨在自由表面附近升沉运动期间的水动力性能受到自由表面的强烈影响,并且螺旋桨与自由表面之间存在显着的相互作用。随着前进系数的增加,螺旋桨和自由表面之间的相互作用会减弱。在升沉运动期间螺旋桨施加在自由表面上的进气是一个复杂的耦合叠加过程。这种现象与螺旋桨的运动状态和工作时间以及螺旋桨与自由表面之间的距离有关。

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