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Experimental Determination of Added Hydrodynamic Resistance Caused by Marine Biofouling on Ships

机译:船舶海洋污损引起的附加水动力阻力的实验确定

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An extensive series of towing tests using flat plates covered with artificial barnacles were carried out at the Kelvin Hydrodynamics Laboratory (KHL) at the University of Strathclyde. The tests were designed to examine the effect of the coverage percentage of barnacles on the resistance and effective power of ships, over a range of Reynolds numbers.This paper presents the added resistances due to calcareous fouling in terms of the added frictional resistance coefficient for a surface coverage of fouling of up to 20%, over different speeds (Reynolds numbers). The drag coefficients and roughness function values of each surface were evaluated. Roughness effects of the given fouling conditions on the frictional resistances of an LNG tanker were then predicted for different ship speeds using an in-house code which was developed based on the similarity law analysis of Granville (1958). Added resistance diagrams were then plotted using these predictions. Finally, powering penalties of the LNG tanker were predicted using the generated diagrams.
机译:在斯特拉斯克莱德大学的开尔文流体力学实验室(KHL)进行了一系列使用覆盖有人工藤壶的平板进行的拖曳测试。这些测试旨在检查在一定的雷诺数范围内,藤壶的覆盖百分比对船舶的阻力和有效功率的影响。本文以钙质结垢所产生的附加阻力为依据,指出了附加的摩擦阻力系数。在不同速度下(雷诺数),污垢的表面覆盖率高达20%。评估每个表面的阻力系数和粗糙度函数值。然后使用内部代码根据给定的结垢条件对LNG油船摩擦阻力的粗糙度影响进行了预测,该内部代码是根据Granville(1958)的相似性规律分析制定的。然后使用这些预测来绘制添加的电阻图。最后,使用生成的图表预测了液化天然气运输船的动力损失。

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