from    
to    
search  

 


第九期“城市前沿讲堂”——Household Sustainability
Beyond the Green Facade: A Field Experiment on Environmental Narrativesin Fin...
”行业前沿讲堂”第3期——数据治理赋能数字化转型和数据资产化
量子计算+化学小型研讨会
报告题目:
High-Pressure Experiments and Modeling of Propulsion Systems: Fuel Pyrolysis/Oxidation/Emissions
 报告人:
Prof. Harsha Chelliah
Mechanical and Aerospace Engineering ,University of Virginia
报告时间:
2018-08-23 10:00
报告地点:
B-518, Lee Shau Kee Building of Science and Technology
主办单位:
清华大学燃烧能源中心
  简介:
Abstract
Storable fuels containing large hydrocarbon molecules will continue to be used in propulsion systems in the foreseeable future, especially in high-pressure gas turbine and hypersonic propulsion systems. These two applications also have intense cooling needs due to temperature limitation of materials. By taking advantage of the endothermic pyrolysis processes of large hydrocarbon molecules, the fuels could be used in a regenerative manner to enhance the cooling capacity, and the resulting pyrolyzed species injected into the combustion chamber could promote flame stabilization and minimize soot emissions. They could also influence the turbulence-chemistry interactions in flame stabilization regions due to modification of the rate controlling chemical reaction pathways. In this presentation, ongoing research at the University of Virginia aimed at addressing some of the above elements will be discussed.
 
Bio:
 Harsha Chelliah is a professor in Mechanical and Aerospace engineering at the University of Virginia. He received his PhD in Mechanical and Aerospace Engineering from Princeton University in 1988. His research is focused on fundamental interactions between finite-rate kinetics and fluid flow using both experimental and modeling approaches.  He has developed several unique high-pressure reactors to experimentally investigate fundamental issues related hypersonic and gas-turbine propulsions systems. These reactors are instrumented with advanced diagnostic tools to measure molecular species via GC-MS and MBMS, soot via LII and SMPS, and flow field via PIV. He has also developed systematic model reduction algorithms based on principal component analysis with sensitivities and quasi steady-state approximations. These methodologies have been applied to predict ignition, flame propagation, and extinction phenomena for a range of fuels.
He is a Fellow of American Society of Mechanical Engineers, an Associate Fellow of American Institute Aeronautics and Astronautics, Visiting Fellow at Peterhouse College, Cambridge University, and the 2016 Thomas Jefferson Visiting Fellow at Downing College, Cambridge University.  He is also a member of the editorial board of the Combustion Theory and Modeling Journal.
  
今日相关信息
4D Diagnostics at UVA
 
同类别相关信息
积极应对全球气候变化 推动绿色低碳可...
Coordination in Multi-Agent Systems...
AI for Imperfect-Information Games:...
Equations of State in Three Centuries
北京地区广受关注学术论文系列报告会(生...
学术活动