globalchange  > 影响、适应和脆弱性
项目编号: 1457960
项目名称:
Conference proposal: International Symposium on High-Order Methods for Computational Fluid Dynamics (San Diego, CA, July 26-30, 2015)
作者: Chunlei Liang
承担单位: George Washington University
批准年: 2014
开始日期: 2015-04-01
结束日期: 2016-09-30
资助金额: USD16000
资助来源: US-NSF
项目类别: Standard Grant
国家: US
语种: 英语
特色学科分类: Engineering - Chemical, Bioengineering, Environmental, and Transport Systems
英文关键词: high-order ; high-order method ; computational fluid dynamics ; international symposium ; high-fidelity simulation ; san diego ; computational mathematics ; efficient method ; fluid dynamics ; naval application ; fluid problem ; fluid-structure interaction ; high-order computation mesh generation ; high-order computational mathematics method ; accurate method ; biomedical application ; computational modeling ; complicated geometry
英文摘要: The symposium will be attended by both prominent and young scientists in computational mathematics and computational fluid dynamics from around the world, who will be discussing future directions of research and research challenges that, if addressed rigorously, would have a strong impact in technology. Better computational modeling of fluid dynamics in complicated geometries can lead to improved understanding of a number of engineering problems in aerospace and naval applications, biomedical applications, wind energy production and energy conservation, etc.

The proposal seeks funds to partially cover travel expenses of speakers and student participants to the conference entitled, "2015 International Symposium on High-Order Methods for Computational Fluid Dynamics", to be held in San Diego, CA, during July 26-30, 2015. This international symposium emphasizes the fundamental development of high-order computational mathematics methods for solving fluid problems with complex geometry. The meeting will emphasize the development of methods for robust and accurate methods for shock capturing; efficient methods for turbulence modeling (Large Eddy Simulations and Reynolds Averaged Navier-Stokes simulations); high-order computation mesh generation with curved elements and resolving wall flow physics; moving and deforming grids to enable high-fidelity simulation of fluid-structure interaction; implementing high-order methods using more efficient computer architectures and GPU systems; and using high-order methods for predicting new flow physics.
资源类型: 项目
标识符: http://119.78.100.158/handle/2HF3EXSE/94923
Appears in Collections:影响、适应和脆弱性
气候减缓与适应

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Chunlei Liang. Conference proposal: International Symposium on High-Order Methods for Computational Fluid Dynamics (San Diego, CA, July 26-30, 2015). 2014-01-01.
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