from    
to    
search  

 


天文系 Colloquium: Galaxy-halo connection and near-field cosmology withnumeri...
2024春化工系过程系统工程研究所“智能化工”学术报告
理学院科学之美讲坛: Molecular Structures in Hadron and Nuclear Physics
物理系colloquium: 超导量子计算与模拟及云量子计算
报告题目:
Flame and Wall Interactions & Flame and Acoustic Wave Interactions
 报告人:
Yang Zhang
Professor of Combustion of Energy, 
Mechanical Engineering Department, University of Sheffield
报告时间:
2011-04-19 14:00
报告地点:
热能工程系动力机械与工程研究所 会议室
主办单位:
热能系
  简介:
学术报告
 
Flame and Wall Interactions & Flame and Acoustic Wave Interactions
 
Yang Zhang
Professor of Combustion of Energy,
Mechanical Engineering Department, University of Sheffield
 
*Flame and Wall Interactions: Flame modes, Wall materials, Fuel mixtures and
Thermal loading
 
Flame and wall interactions an important role in many combustion devices. In
some of the applications the heat transfer has to be as high as possible
while in some other cases the wall temperature should be kept as low as
possible. The investigation of flame of wall interactions is therefore of
great importance. In this study, impinging flames at different modes, fuel
mixture and thermal loading on different wall material has been studied. It
has been observed that the wall temperature is a strong function of both the
wall materials and fuel mixtures. The thermal loading can have very
different wall temperature patterns if the flame modes are different.
 
 
*Flame and Acoustic Wave Interactions: Acoustic streaming measurement and
Schlieren observation of flame dynamics
 
Flame and acoustic wave coupling can affect the combustion dynamics in a
significant way. For example, unwanted thermoacoustic instability could
interrupt the normal operation of power generation gas turbines causing
unwanted economic loss and inconvenience. In this study, flame and acoustic
wave interaction in an acoustically excited tube has been studied using PIV
and high speed schlieren visualization. The PIV measurements are
phase-locked with the acoustic excitation. Very interesting acoustic
streaming flow patterns caused by acoustic streaming have been observed. The
schlieren observation has shown the detail structure of the fuel and burnt
gas. The results provide insights into the complex interaction resultant
flame patterns.
 
时间: 2011年4月19日 (星期二), 下午 2:00
地点:热能工程系动力机械与工程研究所  会议室
今日相关信息
百年校庆系列学术活动、清华大学科学社会学...
Interference of Pulses and Transient ...
 
同类别相关信息
清华论坛第69讲:双一流:内涵、关键词...
抽水蓄能专题
Optical Emission Studies of the Las...
Development of counter-rotating typ...
经济全球化与金融业规范发展——2017清...
学术活动