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人工智能拓展火灾安全研究的进展
From The Sky To The Sea
清华大学材料科学与工程研究院《材料科学论坛》:基于拓扑缺陷理论的轻合金组织设计新...
Quantum information processing based on bosonic modes
报告题目:
Particle-Based Multi-scale and Multi-physics Computation with the MPM for Simulation-Based Engineering Science
 报告人:
Chen Zhen
Professor
报告时间:
2014-06-30 15:00
报告地点:
清华大学液晶大楼三层猫头鹰实验室
主办单位:
清华大学微纳米力学与多学科交叉创新研究中心(CNMM)
  简介:
Abstract
 
To effectively describe the multi-phase interactions within a multi-scale and multi-physics framework, a robust spatial discretiaztion method is a necessity. Over the last twenty years, the Material Point Method (MPM), which is a spatial discretization extension from Computational Fluid Dynamics to Computational Solid Dynamics, has evolved with applications to Simulation-Based Engineering Science (SBES), as well as the movie industry. Recently, a particle-based computer test-bed is being developed for multi-scale and multi-physics modeling and simulation of modern engineering problems, with a concurrent link between the Dissipative Particle Dynamics (DPD) method and the MPM, and a hierarchical bridge from Molecular Dynamics (MD) to DPD. It appears that the DPD forces can be effectively coarse-grained using the MPM background grid, and that the concurrent link between the MPM and DPD enables near-seamless integration of constitutive modeling at the continuum level with force-based modeling at the mesoparticle level. Recent advances with representative examples and future research directions will be presented in the seminar to demonstrate the potential of SBES.
 
主讲人简介
 
主讲人:Professor Chen Zhen
 
 

 

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