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AN INVESTIGATION INTO THE EFFECT OF BIOFOULING ON FULL-SCALE PROPELLER PERFORMANCE USING CFD

机译:利用差价合约对生物絮凝剂对全螺旋桨性能的影响进行调查

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The negative effect of biofouling on ship resistance has been investigated since the early days of naval architecture. However, for more precise prediction of fuel consumption of ships, understanding the effect of biofouling on ship propulsion performance is also important. In this study, CFD simulations for the full-scale performance of KP505 propeller in open water, including the presence of marine biofouling, were conducted. To predict the effect of barnacle fouling on the propeller performance, experimentally obtained roughness functions of barnacle fouling were employed in the wall-function of the CFD software. The roughness effect of barnacles of varying sizes and coverages on the propeller open water performance was predicted for advance coefficients ranging from 0.2 to 0.8. From the simulations, drastic effects of barnacle fouling on the propeller open water performance were found. The result suggests that the thrust coefficient decreases while the torque coefficient increases with increasing level of surface fouling, which leads to a reduction of the open water efficiency of the propeller. Further investigations into the roughness effect on the pressure and velocity field, surface pressure and wall shear stress, and propeller vortices were examined.
机译:自海军造船初期以来,就已经研究了生物污染对船舶抵抗力的负面影响。但是,为了更精确地预测船舶的燃油消耗,了解生物污染对船舶推进性能的影响也很重要。在这项研究中,对CP505螺旋桨在开阔水域(包括存在海洋生物污损)下的满量程性能进行了CFD模拟。为了预测藤壶结垢对螺旋桨性能的影响,在CFD软件的墙函数中采用了实验获得的藤壶结垢粗糙度函数。预测了不同大小和覆盖范围的藤壶对螺旋桨开放水性能的粗糙度影响,其推进系数范围为0.2至0.8。从模拟中发现,藤壶结垢对螺旋桨的开放水性能有巨大影响。结果表明,随着表面污垢程度的增加,推力系数减小而转矩系数增大,这导致螺旋桨的敞水效率降低。进一步研究了粗糙度对压力和速度场,表面压力和壁切应力以及螺旋桨涡流的影响。

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