from    
to    
search  

 


世纪物理情系列讲座:Laser ARPES on Electron-Phonon Coupling and Origin of Hig...
【数学之美-杰出学者讲坛】2023年第5期 || On bounded Morse index solutions of A...
天文系Colloquium:Structure and dynamics of the local group galaxies
第454期“工物学术论坛”:Latest progress on X-ray phase contrast breast CTwit...
报告题目:
Dynamic Depletion of Vortex Stretching and Nonlinear Stability of 3D Incompressible Flows
 报告人:
Thomas Hou
Professor, Caltech, USA
报告时间:
2008-06-06 10:00
报告地点:
科学馆104报告厅
主办单位:
数学系
  简介:
Whether the 3D incompressible Euler or Navier-Stokes equations can develop a finite time singularity from smooth initial data has been an outstanding open problem. Here we review some existing computational and theoretical work on possible finite blow-up of the 3D Euler equations. We show that the geometric regularity of vortex filaments, even in an extremely localized region, can lead to dynamic depletion of vortex stretching, thus avoid finite time blowup of the 3D Euler equations. Further, we perform large scale computations of the 3D Euler equations to re-examine the two slightly perturbed anti-parallel vortex tubes which is considered as one of the most attractive candidates for a finite time blowup of the 3D Euler equations. We found that there is tremendous dynamic depletion of vortex stretching and the maximum vorticity does not grow faster than double exponential in time. The stabilizing effect of convection for the 3D incompressible Euler and Navier-Stokes equations will be considered. Finally, we present a new class of solutions for the 3D Euler and Navier-Stokes equations, which exhibit very interesting dynamic growth property. By exploiting the special nonlinear structure of the equations, we prove nonlinear stability and the global regularity of this class of solutions.
今日相关信息
1.Nanosolders for Low Temperature, Le...
1.Barcelona urban growth
2.Archite...
四川震后发展性重建与制度改革
 
同类别相关信息
许宝騄冠名讲座:Covariance Estimati...
许宝騄冠名讲座:From Blackboard to ...
The ν=5/2 Quantum Hall State: Topo...
现代数学报告: Extremal Kähler ...
Introduction to Insight-HXMT: China...
学术活动