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地震波标量方程的小波自适应网格有限差分法数值模拟 被引量:5
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作者 裴正林 《石油地球物理勘探》 EI CSCD 北大核心 2005年第3期267-272,共6页
现有的地震波数值模拟算法都不能自适应地调整空间网格的大小,从而造成波场计算需要大量的储存空间和计算时间,同时局部波场模拟精度也不高。本文提出了基于平均插值小波的自适应网格算法,并给出了非均匀介质二维一阶压力-速度标量方程... 现有的地震波数值模拟算法都不能自适应地调整空间网格的大小,从而造成波场计算需要大量的储存空间和计算时间,同时局部波场模拟精度也不高。本文提出了基于平均插值小波的自适应网格算法,并给出了非均匀介质二维一阶压力-速度标量方程小波自适应数值解法。该方法将一般边界条件情况下的地震波传播问题放在小波插值空间中进行,波场的非均匀变化得到自适应响应,极大地提高了局部模拟精度和计算效率。数值模拟结果表明了该方法的正确性和有效性。 展开更多
关键词 有限差分法 自适应网格 方程 标量 数值模拟算法 模拟精度 非均匀介质 地震波传播 空间网格 计算时间 储存空间 波场计算 网格算法 插值小波 数值解法 插值空间 边界条件 计算效率 模拟结果 正确性 局部 平均 一阶
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Numerical Simulation and Experiment on Dam Break Problem 被引量:7
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作者 胡长洪 末吉诚 《Journal of Marine Science and Application》 2010年第2期109-114,共6页
In this paper, two novel numerical computation methods are introduced which have been recently developed at Research Institute for Applied Mechanics ( R/AM ), Kyushu University, for strongly nonlinear wave-body inte... In this paper, two novel numerical computation methods are introduced which have been recently developed at Research Institute for Applied Mechanics ( R/AM ), Kyushu University, for strongly nonlinear wave-body interaction problems, such as ship motions in rough seas and resulting green-water impact on deck. The first method is the CIP-based Cartesian grid method, in which the free surface flow is treated as a multi-phase flow which is solved using a Cartesian grid. The second method is the MPS method, which is a so-called particle method and hence no grid is used. The features and calculation procedures of these numerical methods are described. One validation computation against a newly conducted experiment on a dam break problem, which is also described in this paper, is presented. 展开更多
关键词 CIP method MPS method darn break experiment
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Design of Underwater Robot Lines Based on a Hybrid Automatic Optimization Strategy 被引量:2
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作者 Wenjing Lyu Weilin Luo 《Journal of Marine Science and Application》 2014年第3期274-280,共7页
In this paper, a hybrid automatic optimization strategy is proposed for the design of underwater robot lines. Isight is introduced as an integration platform. The construction of this platform is based on the user pro... In this paper, a hybrid automatic optimization strategy is proposed for the design of underwater robot lines. Isight is introduced as an integration platform. The construction of this platform is based on the user programming and several commercial software including UG6.0, GAMBIT2.4.6 and FLUENT12.0. An intelligent parameter optimization method, the particle swarm optimization, is incorporated into the platform. To verify the strategy proposed, a simulation is conducted on the underwater robot model 5470, which originates from the DTRC SUBOFF project. With the automatic optimization platform, the minimal resistance is taken as the optimization goal;the wet surface area as the constraint condition; the length of the fore-body, maximum body radius and after-body's minimum radius as the design variables. With the CFD calculation, the RANS equations and the standard turbulence model are used for direct numerical simulation. By analyses of the simulation results, it is concluded that the platform is of high efficiency and feasibility. Through the platform, a variety of schemes for the design of the lines are generated and the optimal solution is achieved. The combination of the intelligent optimization algorithm and the numerical simulation ensures a global optimal solution and improves the efficiency of the searching solutions. 展开更多
关键词 hybrid optimization strategy automatic optimization platform underwater robot lines hydrodynamic numerical simulation computational fluid dynamics
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An improvement to the simulation of phase-change heat-transfer during soil freezing and thawing 被引量:6
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作者 YANG Tao ZHENG Mao-yu 《Mining Science and Technology》 EI CAS 2009年第2期262-268,共7页
A new variable time step method,which is called the backwards calculating time step method,is presented in this paper.It allows numerical simulation of soil freezing and thawing while avoiding "phase change missi... A new variable time step method,which is called the backwards calculating time step method,is presented in this paper.It allows numerical simulation of soil freezing and thawing while avoiding "phase change missing and overflowing".A sensitive heat capacity model is introduced through which the calculation errors are analyzed.Then the equation using the self-adjusted time step is presented and solved using finite differences.Through this equation,the time needed for a space cell to reach the phase change point temperature is calculated.Using this time allows the time step to be adjusted so that errors caused by "phase change missing and overflowing" are successfully eliminated.Above all,the obvious features of this method are an accelerated rate for adjusting the time step and simplifing the computations.An actual example proves that this method can accurately calculate the temperature fields during soil freezing and thawing.It is an improvement over traditional methods and can be widely used on complicated multi-dimensional phase change problems. 展开更多
关键词 backwards calculating time step method phase change missing phase change overflowing
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Active Control of Structurally Radiated Sound from an Elastic Cylindrical Shell 被引量:2
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作者 靳国永 刘小玲 刘志刚 《Journal of Marine Science and Application》 2011年第1期88-97,共10页
A numerical and experimental study was presented on active control of structurally radiated sound from an elastic cylindrical shell.An analytical model was developed for the active structural acoustic control (ASAC) o... A numerical and experimental study was presented on active control of structurally radiated sound from an elastic cylindrical shell.An analytical model was developed for the active structural acoustic control (ASAC) of the cylindrical shell.Both global and local control strategies were considered.The optimal control forces corresponding to each control strategy were obtained by using the linear quadratic optimal control theory.Numerical simulations were performed to examine and analyze the control performance under different control strategies.The results show that global sound attenuation of the cylindrical shell at resonance frequencies can be achieved by using point force as the control input of the ASAC system.Better control performance can be obtained under the control strategy of minimization of the radiated sound power.However,control spillover may occur at off-resonance frequencies with the control strategy of structural kinetic energy minimization in terms of the radiated sound power.Considerable levels of global sound attenuation can also be achieved in the on-resonance cases with the local control strategy,i.e.,minimization of the mean-square velocity of finite discrete locations.An ASAC experiment using an FXLMS algorithm was implemented,agreement was observed between the numerical and experimental results,and successful attenuation of structural vibration and radiated sound was achieved. 展开更多
关键词 cylindrical shell radiated sound power active structural acoustic control (ASAC) FXLMS algorithm
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