一、講座題目:能源創(chuàng)新與人才培養(yǎng)的全球視角研討
二、講座時(shí)間:2025年11月13日13:30
三、講座地點(diǎn):浙江工業(yè)大學(xué)朝暉校區(qū)子良樓B5
四、主講嘉賓:
Yasuyuki Takata,Professor and Principal Investigator, International Institute for Carbon-Neutral Energy Research (I2CNER), Kyushu University. He is the Science Council of Japan, JSME fellow, Executive Board Director of Heat Transfer Society of Japan, President of Japan Society of Thermophysical Properties, Vice President of Asian Union of Thermal Sciences. He is Associate Editor of Heat Transfer Engineering, Advisory Board Member of Heat Transfer-Asian Research. He was also Editor-in-Chief of Journal of Thermal Science and Technology during 2006.4-2009.3, Regional Associate Editor of Applied Thermal Engineering during 2006.3-2012.10. His research interests include Effect of surface wettability on heat and fluid flow in two-phase system, Enhancement of Heat Transfer with Liquid-Vapor Phase Change by Superhydrophilic Photocatalyst, Thermophysical properties of hydrogen at ultra high pressure, Micro refrigerator and micro heat transfer device, Stability of Superconductors, Analysis of Advanced Thermodynamic Power Cycles. He was awarded JSME Thermal Engineering Achievement Award in 2010, JSME Outstanding Paper Award in 2016.
Shoji Mori,Shoji Mori is a professor of Mechanical Engineering at Kyushu University. Heearned his Ph.D. from Kyushu University in 2003. After completing his doctoralstudies, he began his academic career as a research associate in the Department ofChemical Engineering at Yokohama National University in 2004. In 2007, he waspromoted to the position of associate professor in the same department.In 2019. he joined the Department of Mechanical Engineering at KyushuJniversity as a professor. His current research interests primarily focus on thedevelopment of innovative thermal systems utilizing porous materials.
五、講座內(nèi)容:
This seminar centers on global responses to energy transition challenges, exploring cutting-edge innovations in high-pressure hydrogen systems, boiling heat transfer enhancement with porous structures, and advanced energy materials. It emphasizes the significance of international academic collaboration in driving technological breakthroughs, while delving into synergistic talent development models—such as Sino-foreign joint education, research project-driven training, and industry-academia integration. By bringing together scholars and young researchers worldwide, it aims to share cross-border experiences, identify cooperation opportunities, and cultivate interdisciplinary, globally competent talents capable of leading future energy innovation.
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