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基于多核平台多流体网格法的MPI-OMP嵌套并行实现
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作者 晏益慧 《计算机工程与科学》 CSCD 北大核心 2009年第A01期214-215,240,共3页
多核体系结构的问世为开发人员设计和实现应用软件提供了一个更强大的并行计算平台,本文提出了一种多流体网格法的MPI-OMP嵌套并行方案,并给出了其在多核平台上的计算结果。
关键词 多核体系结构 多流体网格 OMP MPI
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用于风险评估的二维爆炸场的数值模拟 被引量:6
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作者 涂侯杰 恽寿榕 丁儆 《中国安全科学学报》 CAS CSCD 1994年第2期1-6,共6页
采用多流体Uuler型方法,对爆轰产物采用可变指数的多方气体状态方程,给出了对二维爆炸场进行模拟的方法,该法可为用压力一冲量准则对可能发生的爆炸事故进行风险评估提供基础。数值计算结果表明,该法适合于各种不同的几何外型... 采用多流体Uuler型方法,对爆轰产物采用可变指数的多方气体状态方程,给出了对二维爆炸场进行模拟的方法,该法可为用压力一冲量准则对可能发生的爆炸事故进行风险评估提供基础。数值计算结果表明,该法适合于各种不同的几何外型,与现有实验结果符合较好。 展开更多
关键词 数值模拟 多流体网格方法 风险 评估
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Numerical Simulation of the 2-D Explosive Field for the Effect of Protective Wall's Shape 被引量:5
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作者 沈玉玲 宁建国 《Journal of Beijing Institute of Technology》 EI CAS 2001年第1期39-44,共6页
研究二维爆炸场中挡墙的形状对冲击波传播的影响.在整个模拟过程中不考虑外力、外源和热交换的影响,采用流体网格得到了可压缩流体的偏微分守恒方程;并且通过使用多流体网格方法及运用“和”分裂格式完成了输运步的计算;同时对于爆... 研究二维爆炸场中挡墙的形状对冲击波传播的影响.在整个模拟过程中不考虑外力、外源和热交换的影响,采用流体网格得到了可压缩流体的偏微分守恒方程;并且通过使用多流体网格方法及运用“和”分裂格式完成了输运步的计算;同时对于爆轰产物采用了JWL状态方程,并将空气简化成理想气体.最终获得了挡墙的两侧边缘的形状对冲击波传播影响的具体情况,并列出了二者之间的关系.可以看出靠近爆源一侧的挡墙形状对冲击波传播的影响更明显. 展开更多
关键词 爆炸场 冲击波 多流体网格 数值模拟
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机库内爆炸流场的三维数值模拟分析 被引量:4
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作者 吴开腾 宁建国 《太原理工大学学报》 CAS 北大核心 2005年第6期725-728,共4页
采用有限差分数值方法和三维多流体网格法,利用MMIC3D程序,对机库中内爆流场进行了三维数值模拟分析,具体讨论、分析了爆轰波在飞机以及飞机与机库内壁之间的相互作用,并用三维可视化程序Vis3D对三维数值计算结果进行可视化分析,得到一... 采用有限差分数值方法和三维多流体网格法,利用MMIC3D程序,对机库中内爆流场进行了三维数值模拟分析,具体讨论、分析了爆轰波在飞机以及飞机与机库内壁之间的相互作用,并用三维可视化程序Vis3D对三维数值计算结果进行可视化分析,得到一些系列重要的数值结果,这些结果对机库内爆的预防和爆炸灾害的控制均有重要的参考价值和指导意义。 展开更多
关键词 三维数值模拟 多流体网格 机库 飞机
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挡墙对爆炸形成的空气冲击波防护效应的三维数值模拟研究 被引量:10
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作者 吴开腾 《内江师范学院学报》 2003年第2期5-11,共7页
本文对爆轰产物采用 JWL状态方程 ,通过多流体网格的 Euler型算法 ,应用自行编制的MMIC3D程序 ,模拟了在爆点附近有无障碍物的三维爆炸场的初始发展的情况 ,以及不同形状的防护挡墙对爆炸效应的影响 ,计算结果基本符合物理规律 ,这说明... 本文对爆轰产物采用 JWL状态方程 ,通过多流体网格的 Euler型算法 ,应用自行编制的MMIC3D程序 ,模拟了在爆点附近有无障碍物的三维爆炸场的初始发展的情况 ,以及不同形状的防护挡墙对爆炸效应的影响 ,计算结果基本符合物理规律 ,这说明本文采用的模型及算法是合理的 ,并可用来进一步模拟爆炸对远场的作用效应 。 展开更多
关键词 爆炸场 冲击波 防护挡墙 三维数值模拟 多流体网格
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一种三维数值方法及其应用分析
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作者 吴开腾 牟廉明 《内江师范学院学报》 2005年第6期5-12,共8页
为了提高包含有交界面的三维复杂流动问题的求解精度,将二维坐标系中的Youngs算法公式推 广到三维坐标系应用,根据流体体积分数的定义,在二维直角坐标系Youngs算法的基础上,把介质分界面近 似为平面,通过引入修正系数,实现了Youngs算法... 为了提高包含有交界面的三维复杂流动问题的求解精度,将二维坐标系中的Youngs算法公式推 广到三维坐标系应用,根据流体体积分数的定义,在二维直角坐标系Youngs算法的基础上,把介质分界面近 似为平面,通过引入修正系数,实现了Youngs算法在三维坐标系中的应用,给出计算方法,并编写程序进行算 例验证,数值模拟了具有复杂边界的空中爆炸形成冲击波的形成和传播过程,通过数值试验,证明了Youngs 算法在三维坐标系中成功的应用. 展开更多
关键词 三维数值模拟 多流体网格 界面处理
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Numerical simulation on conjugate heat transfer of turbine cascade
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作者 周驰 颜培刚 +1 位作者 姜澎 冯国泰 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2009年第6期741-745,共5页
Numerical simulation on conjugate heat transfer of an internal cooled turbine vane was carried out. Numerical techniques employed included the third-order accuracy TVD scheme, multi-block structured grids and the tech... Numerical simulation on conjugate heat transfer of an internal cooled turbine vane was carried out. Numerical techniques employed included the third-order accuracy TVD scheme, multi-block structured grids and the technique of arbitrary curved mesh. Comparison between results of commercial CFD codes with several turbulence models and those of this code shows that it is incorrect of commercial CFD codes to predict the thermal boundary layer with traditional turbulence models, and that turbulence models considering transition lead to more accurate heat transfer in thermal boundary layer with some reliability and deficiency yet. The results of this code are close to those of CFX with transition model. 展开更多
关键词 TURBINE conjugate heat transfer heat conduction numerical validation
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Shape optimization of the caudal fin of the three-dimensional self-propelled swimming fish 被引量:7
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作者 XIN ZhiQiang WU ChuiJie 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2013年第2期328-339,共12页
Shape optimization of the caudal fin of the three-dimensional self-propelled swimming fish,to increase the swimming efficiency and the swimming speed and control the motion direction more easily,is investigated by com... Shape optimization of the caudal fin of the three-dimensional self-propelled swimming fish,to increase the swimming efficiency and the swimming speed and control the motion direction more easily,is investigated by combining optimization algorithms,unsteady computational fluid dynamics and dynamic control in this study.The 3D computational fluid dynamics package contains the immersed boundary method,volume of fluid method,the adaptive multi-grid finite volume method and the control strategy of fish swimming.Through shape optimizations of various swimming speeds,the results show that the optimal caudal fins of different swimming modes are not exactly the same shape.However,the optimal fish of high swimming speed,whose caudal fin shape is similar to the crescent,also have higher efficiency and better maneuverability than the other optimal bionic fish at low and moderate swimming speeds.Finally,the mechanisms of vorticity creation of different optimal bionic fish are studied by using boundary vorticity-flux theory,and three-dimensional wake structures of self-propelled swimming of these fish are comparatively analyzed.The study of vortex dynamics reveals the nature of efficient swimming of the 3D bionic fish with the lunate caudal fin. 展开更多
关键词 3D bionic fish caudal fin shape optimization swimming performance vortex dynamics
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A study of a three-dimensional self-propelled flying bird with flapping wings 被引量:2
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作者 ZHU LinLin GUAN Hui WU ChuiJie 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2015年第9期52-67,共16页
In this paper, a study of a three-dimensional(3D) self-propelled bionic flying bird in a viscous flow is carried out. This bionic bird is propelled and lifted through flapping and rotating wings, and better flying can... In this paper, a study of a three-dimensional(3D) self-propelled bionic flying bird in a viscous flow is carried out. This bionic bird is propelled and lifted through flapping and rotating wings, and better flying can be achieved by adjusting the flapping and rotation motion of wings. In this study, we found that the bird can fly faster forward and upward with appropriate center of rotation and oscillation without more energy consumption and have perfect flight performance at a certain angle of attack by adjusting the center of oscillation. The study utilizes a 3D computational fluid dynamics package which constitutes combined immersed boundary method and the volume of fluid method. In addition, it includes adaptive multigrid finite volume method and control strategy of swimming and flying. 展开更多
关键词 SELF-PROPELLED bird flying numerical simulation THREE-DIMENSIONAL
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Numerical simulations and vorticity dynamics of self-propelled swimming of 3D bionic fish 被引量:5
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作者 XIN ZhiQiang WU ChuiJie 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2012年第2期272-283,共12页
Numerical simulations and the control of self-propelled swimming of three-dimensional bionic fish in a viscous flow and the mechanism of fish swimming are carried out in this study,with a 3D computational fluid dynami... Numerical simulations and the control of self-propelled swimming of three-dimensional bionic fish in a viscous flow and the mechanism of fish swimming are carried out in this study,with a 3D computational fluid dynamics package,which includes the immersed boundary method and the volume of fluid method,the adaptive multi-grid finite volume method,and the control strategy of fish swimming.Firstly,the mechanism of 3D fish swimming was studied and the vorticity dynamics root was traced to the moving body surface by using the boundary vorticity-flux theory.With the change of swimming speed,the contributions of the fish body and caudal fin to thrust are analyzed quantitatively.The relationship between vortex structures of fish swimming and the forces exerted on the fish body are also given in this paper.Finally,the 3D wake structure of self-propelled swimming of 3D bionic fish is presented.The in-depth analysis of the 3D vortex structure in the role of 3D biomimetic fish swimming is also performed. 展开更多
关键词 3D bionic fish self-propelled swimming boundary vorticity-flux 3D vortex structure
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