The influence of the propeller loading on the thrust deduction fraction

IF 1.4 Q3 ENGINEERING, MARINE
Simone Saettone, B. Taskar, S. Steen, P. Andersen
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引用次数: 3

Abstract

ABSTRACT The estimation of the thrust deduction fraction is generally conducted in ideal weather conditions. However, the presence of waves considerably alters the magnitude of this propulsive coefficient. The increased load of the propeller could be the main cause for the variation of the thrust deduction fraction in realistic operating conditions. In this work, load-varying self-propulsion model-scale numerical simulations in calm water conditions for the same ship speed are performed to investigate the influence of the propeller loading on the thrust deduction fraction. The single screw model-scale KVLCC2 tanker is selected as the case study. The results reveal a non-linear inverse correlation between the thrust deduction fraction and the propeller loading. A comparison with model-testing conducted on the KVLCC2 tanker in regular head waves suggests that the propeller loading is the main factor influencing the magnitude of the thrust deduction fraction in waves for the considered case vessel.
螺旋桨载荷对减推率的影响
推力推导分数的估计通常在理想天气条件下进行。然而,波浪的存在极大地改变了这个推进系数的大小。在实际运行条件下,螺旋桨载荷的增加可能是推力扣除率变化的主要原因。在这项工作中,在相同船速的平静水域条件下,进行了变载荷自推进模型规模的数值模拟,以研究螺旋桨载荷对推力推导分数的影响。选择单螺杆型号KVLCC2型油轮作为案例研究。结果表明,推力扣除率与螺旋桨载荷之间存在非线性逆相关关系。与KVLCC2油轮在规则头波中进行的模型试验的比较表明,螺旋桨载荷是影响所考虑情况下船舶波浪中推力扣除分数大小的主要因素。
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来源期刊
Ship Technology Research
Ship Technology Research ENGINEERING, MARINE-
CiteScore
4.90
自引率
4.50%
发文量
10
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