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扑朔迷离的磁场化学
稀土纳米晶-分子界面三线态能量调控
基于糖基供体“预活化”策略的聚糖合成
Quantum Criticality of Liquid-Gas Transition in a Binary Bose Mixture
报告题目:
Lecture on Liquid Fuel Flame Research
 报告人:
Professor Fokion N. Egolfopoulos
Editor in Chief of the Combustion and Flame in USA
Department of Aerospace and Mechanical Engineering
University of Southern California, Los Angeles, CA 90089-1453
报告时间:
2011-05-26 10:00
报告地点:
热能系热能所西会议室
主办单位:
热能系
  简介:
Liquid fuels play a dominant role in transportation and power generation and it is not expected that this will change in the foreseeable future.  At the same time, the present volatility of oil prices and issues associated with fuel availability and the environment, have generated an urgent need for their more efficient and environmentally benign use.  While traditional engineering has achieved major advances in engine technology, further improvements will be at best incremental unless a better understanding of the science behind the controlling processes of the combustion of those fuels is obtained.  Gasoline, Diesel, and jet fuels typically contain hundreds or even thousands of components.  Simulation of their combustion characteristics becomes prohibitively difficult at a fundamental level.  Fuel surrogates, typically mixtures of a small number of neat hydrocarbon compounds, can be used to mimic the physical and chemical characteristics of real fuels.  Thus, the combustion of a single surrogate component or a mixture of these components can be examined experimentally and simulated accurately using detailed chemical kinetic models.  Higher molecular weight compounds dominate the composition of all practical fuels.  While experimental data are abundant for low molecular weight gaseous hydrocarbons, they are scarce for the heavier liquid counterparts, typically with carbon number greater than 5.  Given the importance of the surrogate fuels in current efforts towards science-based design of fuel-flexible engines, there is a growing interest in developing a fundamental database of combustion properties for neat liquid hydrocarbons and their mixtures.  In this lecture, on overview of current research of the combustion of low-vapor pressure heavy liquid fuels will be given.  In particular, the needs, challenges, and opportunities will be emphasized.
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