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首页> 外文期刊>International Journal of Naval Architecture and Ocean Engineering >Calculation of ice clearing resistance using normal vector of hull form and direct calculation of buoyancy force under the hull
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Calculation of ice clearing resistance using normal vector of hull form and direct calculation of buoyancy force under the hull

机译:使用船体形式的法向矢量计算抗冰能力并直接计算船体下的浮力

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The ice-resistance estimation technique for icebreaking ships had been studied intensively over recent years to meet the needs of designing Arctic vessels. Before testing in the ice model basin, the estimation of a ship’s ice resistance with high reliability is very important to decide the delivered power necessary for level ice operation. The main idea of previous studies came from several empirical formulas, such as Poznyak and Ionov (1981), Enkvist (1972) and Shimansky (1938) methods, in which ice resistance components such as icebreaking, buoyancy and clearing resistances were represented by the integral equations along the Design Load Water Line (DLWL). The current study pro-poses a few modified methods not only considering the DLWL shape, but also the hull shape under the DLWL. In the proposed methodology, the DLWL shape for icebreaking resistance and the hull shape under the DLWL for buoyancy and clearing resistances can be directly considered in the calculation. Especially, when calculating clearing resistance, the flow pattern of ice particles under the DLWL of ship is assumed to be in accordance with the ice flow observed during ice model testing. This paper also deals with application examples for a few ship designs and its ice model testing programs at the AARC ice model basin. From the comparison of results of the model test and the estimation, the reliability of this estimation technique has been discussed.
机译:近年来,为满足设计北极船的需求,对破冰船的抗冰能力估算技术进行了深入研究。在冰模型盆地中进行测试之前,评估船舶的高抗冰能力对于确定水平冰域运行所需的输出功率非常重要。先前研究的主要思想来自几个经验公式,例如Poznyak和Ionov(1981),Enkvist(1972)和Shimansky(1938)方法,其中,耐冰成分(例如破冰,浮力和耐清除性)由积分表示。设计载水线(DLWL)上的方程。当前的研究提出了一些修改的方法,不仅考虑了DLWL的形状,而且考虑了DLWL下的船体形状。在所提出的方法中,可以在计算中直接考虑耐破冰性的DLWL形状和耐浮性和耐清除性的DLWL下的船体形状。尤其是,在计算清除阻力时,假设船舶在DLWL下的冰粒流型与在冰模型测试期间观察到的冰流一致。本文还介绍了一些船舶设计的应用示例及其在AARC冰模型盆地的冰模型测试程序。通过模型测试和估计结果的比较,讨论了该估计技术的可靠性。

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