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科研机构
力学研究所 [2]
山东大学 [1]
天津大学 [1]
内容类型
期刊论文 [3]
会议论文 [1]
发表日期
2011 [3]
1994 [1]
学科主题
Computer S... [1]
Computer S... [1]
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An immersed boundary method based on the lattice Boltzmann approach in three dimensions, with application
会议论文
6th International Conference for Mesoscopic Methods in Engineering Science (ICMMES-09), Guangzhou, PEOPLES R CHINA, JUL 13-17, 2009
作者:
Wang SZ(王士召)
;
Zhang X(张星)
;
He GW(何国威)
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浏览/下载:33/0
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提交时间:2012/04/01
Immersed boundary method
Lattice Boltzmann method
Fluid-structure interaction
Deformable body
Drag scaling
Computational fluid dynamics
Incompressible viscous flow
FLUID-STRUCTURE INTERACTIONS
INCOMPRESSIBLE VISCOUS-FLOW
FINITE-ELEMENT-METHOD
LEVEL-SET METHOD
ELASTIC BOUNDARIES
MOVING-BOUNDARIES
SIMULATING FLUID
INTERFACE METHOD
NONIDEAL GASES
FLEXIBLE FIBER
An immersed boundary method based on the lattice Boltzmann approach in three dimensions, with application
期刊论文
Computers & Mathematics With Applications, 2011, 卷号: 61, 期号: 12, 页码: 3506-3518
作者:
Zhu LD
;
He GW(何国威)
;
Wang SZ(王士召)
;
Miller L
;
Zhang X(张星)
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浏览/下载:45/0
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提交时间:2012/04/01
Immersed Boundary Method
Lattice Boltzmann Method
Fluid-Structure Interaction
Deformable Body
Drag Scaling
Computational Fluid Dynamics
Incompressible Viscous Flow
Fluid-Structure Interactions
Incompressible Viscous-Flow
Finite-Element-Method
Level-Set Method
Elastic Boundaries
Moving-Boundaries
Simulating Fluid
Interface Method
Nonideal Gases
Flexible Fiber
Fracture characterization of Carbon fiber-reinforced polymer-concrete bonded interfaces under four-point bending
期刊论文
ENGINEERING FRACTURE MECHANICS, 2011, 卷号: 78, 期号: 6, 页码: 1247-1263
作者:
Qiao, Pizhong
;
Zhang, Lei
;
Chen, Fangliang
;
Chen, Ying
;
Shan, Luyang
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浏览/下载:2/0
  |  
提交时间:2019/12/23
Cracking
Concrete beams
Fiber-reinforced polymer
Interfaces
Bonding
Bending
Transverse shear
Shear deformation
Interface deformable
bi-layer beam theory
COALESCENCE BETWEEN 2 SMALL BUBBLES OR DROPS
期刊论文
Journal of Colloid and Interface Science, 1994, 卷号: Vol.163, 页码: 108-119
作者:
Li, D.
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浏览/下载:2/0
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提交时间:2019/11/21
FLUID-FLUID INTERFACE
THIN LIQUID-FILMS
LONDON-VANDERWAALS FORCES
BUOYANCY-DRIVEN MOTION
HORIZONTAL SOLID PLANE
LOW REYNOLDS-NUMBER
DOUBLE-LAYER FORCES
CRITICAL THICKNESS
DEFORMABLE DROPS
SURFACE
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