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High-resolution Crvo-EM Studies of Amyloid Fibrils in Neurodegenerative Diseases
Recent Advances of Phosphorescent Metal Complexes
环境学术沙龙第702期:城市大气新粒子生成与生长
最优潮流的可行性恢复映射深度神经网络
报告题目:
The Science and Art of Combustion Modelling
 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:
2009-07-09 14:00
报告地点:
热能系系馆第一会议室
主办单位:
热能工程系
  简介:

Combustion is and will continue to be the dominant energy technology for the foreseeable future. Climate change and depleting reserves of fossil fuels demand high-efficiency, low-carbon and low-emission combustion technologies using both conventional and unconventional fuels. These challenges will be met through accelerated research and innovation based on advanced experimental, modelling and computational methods. Combustion modelling plays an important role in diagnosis and prediction of complex combustion phenomena, leading to reduced costs and time of development cycles of combustion systems. Combustion modelling consists of physical, chemical and computational models. The talk will examine the state of the art in combustion modelling such as flamelets, PDF and CMC. The models for premixed, non-premixed and partially premixed combustion will be reviewed from a unified framework. The emphasis will be on large eddy simulation (LES) and the associated subgrid-scale (SGS) models for predicting dynamic phenomena such as ignition and quench. Examples of LES for gas combustion and multiphase combustion will be shown. It will be demonstrated that despite decades’ research efforts, combustion modelling is still an art as well as a science. The push towards “green combustion” demands better predictive tools for combustion using conventional and non-conventional fuels. For the most complex combustion systems, a multi-scale multi-physics approach may be needed. The talk will finish with speculation for the future and especially China’s role in combustion science and technology.

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