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人工智能拓展火灾安全研究的进展
From The Sky To The Sea
清华大学材料科学与工程研究院《材料科学论坛》:基于拓扑缺陷理论的轻合金组织设计新...
Quantum information processing based on bosonic modes
报告题目:
清华大学清洁能源讲坛系列学术报告之二十四:Clean Energy from Gas Turbines – Some Combustion Research Issues
 报告人:
James F. Driscoll,
A.B. Modine Professor of Aerospace Engineering, University of Michigan, USA
报告时间:
2015-11-05 10:00
报告地点:
Lectuer Hall, Department of Thermal Engineering
主办单位:
清华大学热能工程系
  简介:

Abstract:
The speaker has been conducting research that is sponsored by General Electric and by the U.S. Department of Energy to understand how to minimize nitric oxide using new Lean Premixed Prevaporized (LPP) technology. Another study involves syngas (hydrogen and carbon monoxide). In both cases, realistic swirl burners are used that produce very low levels of nitric oxide, but further improvements are limited by undesirable combustion dynamics, including acoustic instabilities. A challenge is to understand these combustion dynamics to find ways to avoid them to operate at ultra-lean conditions.
Kilohertz PLIF and PIV laser imaging methods were used to take high-speed movies of the flames and the velocity fields (at 4,000 images/second) to measure the turbulent mixing within an ultra-lean gas-turbine like combustor with different fuels. Low nitric oxides are achieved and the boundaries are measured where the combustion instabilities begin. Another challenge is to develop a CFD model of the unsteady dynamics. A reduced-order model was developed that contains two ordinary differential equation; it adequately explains the trends associated with the combustion instability (frequency, intensity, phase angles). The simple model is a useful tool to help develop more accurate CFD simulations of combustion dynamics in the future.

Driscoll abreviated resume 2015-short.pdf

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