from    
to    
search  

 


The Rise and Promise of Artificial Molecular Machines in PolymerChemistry and...
世纪物理情系列讲座 第20讲:Topology, Spin and Orbital in DNA-type Chiral Quan...
Construction of mode based reduced order models (ROM) for moving bodies& ...
Trustworthy Machine Learning in the Real World: Distributional Robust Extrapo...
报告题目:
Scalable Solvers for Computational Plasma Physics in the SciDAC Program
 报告人:
David E. Keyes
Professor of at Columbia University
报告时间:
2006-05-12 10:00
报告地点:
高研中心地下报告厅
主办单位:
工物系
  简介:

The "Scientific Discovery through Advanced Computing" (SciDAC) initiative is a set of interconnected projects --- science, software development, and research to directed toward the latter --- designed to support simulation, data exploration, and collaboration in many thrust areas of the U.S. Department of Energy, including: climate modeling, fusion energy, chemistry and materials science, astrophysics, and high energy and particle physics.

Optimal complexity solution algorithms, such as multigrid/multilevel preconditio-

ners, keep the time spent in dominant algebraic kernels close to linear as the applications scale on parallel computers. Krylov accelerators and Jacobian-free variants of Newton's method are wrapped outside to deliver robustness in multirate, multiscale coupled systems, which are solved implicitly.

We illustrate with a range of applications in magnetically confined fusion energy, as the fusion community gears up for participation in the International Thermonuclear Experimental Reactor (ITER) consortium.    

今日相关信息
微纳米结构的生物应用
中外专利数据库的检索与利用
 
同类别相关信息
清华论坛第43讲暨陈嘉庚科学奖报告会:...
核能化学中的微纳米技术
我国核燃料组件制造产业发展现状和展望
【星火论坛】科学家与科学之路
Respiratory Motion Correction in PE...
学术活动