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艏部构型对内倾船型运动响应和上浪砰击压力的影响研究
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作者 周辉 胡开业 毛丽君 《船舶力学》 EI CSCD 北大核心 2024年第7期995-1007,共13页
内倾船型的艏部构型对船舶在波浪中的运动和上浪载荷特性具有一定的影响。本文基于艏柱倾斜角度选取了倾角为30°、45°和60°的三种艏部构型方案,采用中国数值水池-直角网格有限差分方法(CNTCGFDM),研究了在不同的艏部构... 内倾船型的艏部构型对船舶在波浪中的运动和上浪载荷特性具有一定的影响。本文基于艏柱倾斜角度选取了倾角为30°、45°和60°的三种艏部构型方案,采用中国数值水池-直角网格有限差分方法(CNTCGFDM),研究了在不同的艏部构型方案下内倾船型在规则波中的运动响应以及甲板上浪载荷特性。其中物体边界及运动的模拟采用浸没边界法来实现,并利用THINC/SW方法来捕捉自由液面。选取艏柱倾角为45°和60°的船型进行模型试验研究,与试验值相比,本文的数值模拟结果吻合良好。结果表明:艏部构型对内倾船型在规则波中的运动响应总体上影响较小,只在某些海况下表现出一定的局部差异,但对内倾船型的上浪砰击载荷则有一定的影响,相较于倾角为30°和60°的构型方案,艏柱倾角为45°的内倾船型在甲板上浪中的载荷性能更加优异。 展开更多
关键词 内倾船型 艏柱倾角 直角网格 浸没边界法 thinc/sw方法
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Two-dimensional Numerical Simulation of an Elastic Wedge Water Entry by a Coupled FDM-FEM Method
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作者 Kangping Liao Changhong Hu Wenyang Duan 《Journal of Marine Science and Application》 2013年第2期163-169,共7页
Hydroelastic behavior of an elastic wedge impacting on calm water surface was investigated. A partitioned approach by coupling finite difference method (FDM) and finite element method (FEM) was developed to analyz... Hydroelastic behavior of an elastic wedge impacting on calm water surface was investigated. A partitioned approach by coupling finite difference method (FDM) and finite element method (FEM) was developed to analyze the fluid structure interaction (FSI) problem. The FDM, in which the Constraint Interpolation Profile (CIP) method was applied, was used for solving the flow field in a fixed regular Cartesian grid system. Free surface was captured by the Tangent of Hyperbola for Interface Capturing with Slope Weighting (THINC/SW) scheme. The FEM was applied for calculating the structural deformation. A volume weighted method, which was based on the immersed boundary (IB) method, was adopted for coupling the FDM and the FEM together. An elastic wedge water entry problem was calculated by the coupled FDM-FEM method. Also a comparison between the current numerical results and the published results indicate that the coupled FDM-FEM method has reasonably good accuracy in predicting the impact force. 展开更多
关键词 elastic wedge water entry coupled FDM-FEM method volume weighted method CIP method thinc/sw scheme hydroelastic behavior
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