from    
to    
search  

 


Phase transition of random plaquette models
Tiling with Electrons: fractionalization and emergent symmetry
Pyroptosis & Innate Immunity: Mechanisms & Therapeutics Potentials
【数学之美-杰出学者讲坛】2024年第6期 || Some recent results on conformally in...
报告题目:
Dynamic Partitioning and Quantum Speedup for Turbulent Combustion Simulation
 报告人:
Prof. Peyman Givi
University of Pittsburgh
报告时间:
2017-06-21 15:00
报告地点:
B-515, Lee Shau Kee Building of Science and Technology
主办单位:
热能系
  简介:
AbstractWithin the past thirty years, a variety of subgrid scale closures have been developed for large eddy simulation (LES) of turbulent combustion. The filtered density function (FDF) is one of such closures and has proven very effective in a variety of applications. Despite its demonstrated capabilities, the computational cost associated with FDF can be expensive compared to other (more conventional) methods. This problem can be effectively alleviated by taking advantages of modern developments in computing and information science. A novel strategy is to couple an architecture aware graph partitioning algorithm with a dynamic (re)partitioning framework. This provides an optimal load balance, while minimizing the cost of data migration. Each of the partitions is treated via an entirely self-contained solver (in either Eulerian or Lagrangian contexts). The communication between the solvers is local, and shared information is limited to neighboring partitions. Quantum computing is also very promising for future LES via FDF. Recent developments in quantum enhanced measurements provide an algorithm that facilitates a quadratic speedup over classical FDF solvers. This demonstration identifies FDF as a viableproblem to take advantage of speedups offered by future quantum computers.
 
Brief Biography
Dr.  Peyman Givi is Distinguished Professor, the James T. MacLeod Professor of Mechanical Engineering, and Professor of Petroleum Engineering at the University of Pittsburgh.  Previously he held the position of UB Distinguished Professor of Aerospace Engineering at the SUNY-Buffalo.  He has also worked as a Research Scientist at Flow Research Company (Kent, WA), and  has had  visiting appointments at the NASA Langley and Glenn (Lewis) centers.
He is Deputy Editor of AIAA Journal and on editorial boards of several other journals including Computer and Fluids and Journal of Applied Fluid Mechanics. He is Fellow of AAAS, AIAA, APS and ASME. PhD from Carnegie Mellon and BE from Youngstown State University (Ohio).

今日相关信息
The discrete modelling approach and i...
环境学术沙龙第345期:Molecular Charac...
材料院《材料科学论坛》:Behaviors of ...
Electric-field control of tri-state p...
化学学堂班系列讲座-Molecular Engineer...
 
同类别相关信息
Rayleigh vs Marangoni
Turbine blade cooling design concept
Turbine nozzle cooling design concept
Challenges and opportunities of dec...
气候变化、绿色金融与环境标准(Clima...
学术活动