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Numerical Investigation on Hydrodynamic Characteristics of a Tunneled Planing Hull in Calm Water
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作者 WANG Hui ZHU Ren-chuan +2 位作者 LI Guo-huan xu de-kang LI Chao-fan 《船舶力学》 EI CSCD 北大核心 2024年第12期1864-1879,共16页
A tunneled planing hull has unique hybrid hydrodynamic and aerodynamic characteristics due to the presence of a tunnel.In this paper,experimental and numerical investigations on hydrody namic analysis of a tunneled pl... A tunneled planing hull has unique hybrid hydrodynamic and aerodynamic characteristics due to the presence of a tunnel.In this paper,experimental and numerical investigations on hydrody namic analysis of a tunneled planing hull are carried out.The resistance tests of models with three dif ferent masses(127.4 kg,159.5 kg,202.9 kg)are conducted for the Froude number in the range of 0.761≤Fn≤1.925.The results of resistance measured by towing tank imply that the tunneled planing hull with a larger displacement has a superior resistance performance.The numerical simulation of Reynolds Average Navier Stokes(RANS)equations based on the finite volume method is performed to analyze the hull characteristics in calm water(M=159.5 kg)with two degrees of freedom(sinkage and trim).The numerical results are compared with the experimental data,which shows good agreement.Pressure distribution,wave profiles and lift forces obtained by SST k-ωand Realizable k-εturbulence models are compared and discussed.Finally,the local fluid flow of streamline around the hull can be divided into four regions due to the presence of a tunnel,which is different from the behaviors of the conventional planing monohull with prismatic form. 展开更多
关键词 tunneled planing hull experimental test overset mesh method pressure distribution lift force
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重心纵向位置对滑行艇阻力性能的影响研究
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作者 王慧 朱仁传 +1 位作者 徐德康 李超凡 《船舶力学》 EI CSCD 北大核心 2023年第6期803-815,共13页
高速滑行艇姿态和阻力的准确预测对于提高船舶水动力性能具有重要意义。为了研究重心纵向位置对滑行艇阻力和水动力性能的影响,验证CFD方法的适用性,本文采用动态重叠网格方法进行CFD数值模拟,采用有限体积法求解湍流模型为SST k-ω的... 高速滑行艇姿态和阻力的准确预测对于提高船舶水动力性能具有重要意义。为了研究重心纵向位置对滑行艇阻力和水动力性能的影响,验证CFD方法的适用性,本文采用动态重叠网格方法进行CFD数值模拟,采用有限体积法求解湍流模型为SST k-ω的雷诺平均方程,水气两相流的自由界面采用VOF方法捕获,给出并分析了不同速度下三个不同重心纵向位置的结果比较。不同重心纵向位置情况下的数值结果比较表明:下沉和纵倾角随XCG的减小而增加,同时导致润湿面积减少;当重心纵向位置向后移动时,水动升力使滑行艇更容易进入滑行状态。 展开更多
关键词 滑行艇 重叠网格方法 重心纵向位置 压力分布 升力
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