时时彩-重庆时时彩 xjssc073_百家乐玩法官网_新全讯网334422开奖结果 (中国)·官方网站

EVENTS
Home > EVENTS > Content
Multiscale Thermal Transport Management for Sustainable Energy Systems

Lecture:Multiscale Thermal Transport Management for Sustainable Energy Systems

Lecturer:Dr. Weihong Li

Time: July 15th, 2021, 10:30-11:30 a.m.

Avenue: A 403, State Key Laboratory of Oil and Gas Reservoir Geology Exploitation

Abstract:Thermal transport processes and engineering play a pivotal role in contributing to sustainable energy systems. Recent thermal transport management techniques are becoming more sophisticated due to emerging advanced materials and manufacturing manners. In this talk, I will elaborate on my efforts to develop advanced thermal materials and structures for aerospace and energy systems. In the first part, I will introduce some solar absorbing materials aiming to control and manipulate interfacial phase change phenomena, e.g., anti-fogging, and anti-icing. The spectral properties of the solar absorbing coatings are tuned to adapt to varied scenarios, e.g., where visible transparency is required. By harnessing unlimited solar energy, these materials can serve as sustainable and eco-friendly anti-fogging and anti-icing coatings andanti-icing materials for aerospace systems. In the second part, I will show my efforts in designing new gas turbine cooling structures for the next-generation gas turbines, followed by detailed thermofluidic studies of impingement cooling, film cooling, and overall conjugate cooling. Improved turbine protection allows higher turbine inlet temperatures and thus increased cycle efficiency, contributing to more sustainable propulsion devices.

Bio

Dr. Weihong Li is a Research Assistant Professor at the Department of Mechanical and Aerospace Engineering of Hong Kong University of Science and Technology. He also served as a Junior Fellow at the HKUST Jockey Club Institute for Advanced Study. He received his B.S. and Ph.D. Degrees from Department of Energy and Power Engineering of the Tsinghua University in 2013 and 2018, respectively. After that he worked as a Research Associate at James Watt School of Engineering, University of Glasgow, UK. His research interests lie in gas turbine thermal management, heat and mass transport, interfacial materials and phenomena, and solar energy utilization. Over the last five years, he has authored/co-authored 25 peer-reviewed journal papers. He has been awarded Young Engineer Award by International Gas Turbine Institute of ASME owing to his contribution to the gas turbine community. Dr. Weihong Li will join City University of Hong Kong as an Assistant Professor and establish the Multiscale Energy Transport Lab (METLAB, https://mecityu.wixsite.com/metlab). His lab has several openings for PhD and Postdocs in the fall 2021 and spring 2022 and welcome anyone to contact him with mewhli@ust.hk.

Organizer and sponsor:Science and Technology Department 

                        Petroleum Engineering School

Previous:Fast Convolution-Type Nonlocal Potential Solvers in Nonlinear Schr?dinger Equation and Lightning Simulation Next:A glimpse of the researches and applications of deep learning for digital rock physics

close

百家乐官网摇色子网站| 博彩| 百家乐路有几家| 香港六合彩的开奖结果| 百家乐官网深圳广告| 大发888备用网址大发娱乐城| 赌百家乐官网怎样能赢| 广州太阳城大酒店| 缅甸百家乐官网的玩法技巧和规则 | 大发888挖掘| 澳门百家乐战法| 百家乐官网双龙出| 大富豪百家乐| 百家乐都是什么人玩的| 香港百家乐官网赌场娱乐网规则| 威尼斯人娱乐城开户地址| 澳门百家乐官网游戏下| 大发888娱乐亚洲| 真人百家乐代理分成| 百家乐官网终端下载| 全讯网最方便的新全讯网| 济州岛百家乐官网的玩法技巧和规则 | 百家乐游戏机子| 大发888明星婚讯| 江山百家乐官网的玩法技巧和规则 | 国际豪门娱乐| 保单百家乐游戏机厂家| 百家乐官网代理在线游戏可信吗网上哪家平台信誉好安全 | 百家乐官网投注方式| 百家乐网上投注作弊| 百家乐官网路子分析| 百家乐游戏唯一官网站| 百家乐官网博国际| 皇博娱乐| 百家乐下注技巧| 百家乐太阳城开户| 永利博国际网| 百家乐过滤| 一共33楼24楼风水怎么说| 网上百家乐官网哪家最好| 大发888官网官方下载|