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Numerical Study on Propeller Performance for a Vessel in restricted water

机译:限制水中血管螺旋桨性能的数值研究

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Ship-bank hydrodynamic interaction effect in shallow water on ship manoeuvrability, steering performance and navigation in restricted waters has been a main challenge to safe navigation. The objectives of this research are firstly to investigate the effect of non-symmetric sloped bank and shallow water on hydrodynamic characteristics of propeller for a LNG ship, secondly to determine the flow wake pattern at propeller plane in different water depth and ship-bank distance. The numerical and experimental research methodologies were applied to achieve the objectives. The data contributes to the surface-ship resistance and propulsion model-scale database for computational fluid dynamics validation, as part of an international collaborative project between Malaysia International Shipping Corporation Berhad (MISC) and Hydrodynamic Research Group of MTC in UTM Institute (HRG-MTC-UTM). The tests were conducted in Marine technology Centre (MTC)-Universiti Teknologi Malaysia (UTM) to validate the computational fluid dynamic simulations using ANSYS-CFX 14. The thrust deduction factor decreased due to suction effect in stern region of ship above Also propeller thrust and torque increased. These results can be applied for as a valuable guideline for evaluating the manoeuvring and navigation of the vessel in restricted waters.
机译:船舶银行流体动力学互动效应在船舶机动性上,限制水域中的转向性能和导航是安全导航的主要挑战。本研究的目的首先是研究非对称倾斜的堤岸和浅水对LNG船舶螺旋桨流体动力学特性的影响,其次是在不同水深和船库距离中确定螺旋桨平面的流动唤醒图案。应用数值和实验研究方法来实现目标。这些数据有助于用于计算流体动力学验证的表面船舶电阻和推进模型数据库,作为马来西亚国际航运公司Berhad(MISC)和UTM Institute的MTC流体动力学研究组之间的国际协同项目的一部分(HRG-MTC -utm)。该测试是在海洋技术中心(MTC)-Universiti Teknologi Malaysia(UTM)中进行的,以使用ANSYS-CFX 14验证计算流体动态模拟。由于在上面的船舶船尾区域的抽吸效果,推力扣除因子也降低了螺旋桨推力和扭矩增加。这些结果可作为评估受限制水域中船舶的机动和导航的有价值指导。

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