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Rotating strings and particles in AdS: Holography at weak gaugecouplingand wi...
清华大学材料科学与工程研究院《材料科学论坛》:Next-generation Ultra-high-effi...
Mixed-state quantum anomaly and multipartite entanglement
Mass Gap in AdS Spacetime
报告题目:
Progress and Challenges in Combustion Simulation on High-EndComputing
 报告人:
罗开红
教授  英国南安普敦大学工程科学学院、能源技术研究组主任
报告时间:
2009-07-08 14:00
报告地点:
热能系系馆第一会议室
主办单位:
英国南安普敦大学工程科学学院、能源技术研究组主任
  简介:

Combustion remains one of the most challenging subject, which combines the extreme intricacies of chemical reactions at nanoscales with a large variety of macroscale phenomena such as flow vortices. For a typical application like a gas turbine or rocket engine, the timescales and lengthscales vary by well over ten orders of magnitudes. It is therefore no surprise that our understanding of combustion lags far behind applications, a situation that is similar to biology (we know our brains work but don’t why or how to control). One of the most powerful tools to further our understanding is direct numerical simulation (DNS), which aims to solve the governing equations of combustion without modelling uncertainties. The development of DNS is closely related to advancement in computing technologies. Over the past two decades, computers at the high end increased from megaflops to petaflops, which has greatly expanded the usefulness of combustion DNS and accelerated our understanding of turbulent combustion. The talks will review these advances in the worldwide context (but inevitably from a personal perspective and with a UK focus). Examples will be shown to demonstrate the capabilities of DNS for both gas and multiphase turbulent combustion. The potentials, limitations and future developments of combustion DNS will be discussed. 

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