Autorenporträt
Prof. Jinyang Zheng’s career in hydrogen energy and pressure equipment has spanned 29 years. After graduation from Zhejiang University (ZJU), China, with Ph.D. in 1992, he joined the Institute of Process Equipment of ZJU, and became a professor in 1997 and Chang Jiang Scholars Distinguished Professor in 2012. As a visiting scholar, he worked in the Oak Ridge National Lab, USA, from August 1999 to August 2000, and the University of Manchester in UK from October 2002 to January 2003. Currently, he is the vice chair of ISO/TC197 Hydrogen Technologies, president of IAHE Code and Standards Division, vice chair of the National Standardization Technical Committee of Hydrogen Energy (SAC/TC309) and president of Engineering Research Center for High Pressure Process Equipment and Safety of the Ministry of Education, China.Prof. Zheng has been specializing in hydrogen storage and transportation, high pressure technology, cryogenic vessels, and pressure equipment under dynamic loading. Under support of more than 20 projects including the National Key Basic Research Program of China (973 Program), the National Key Research & Development Program of China, the National High-tech Research and Development Projects of China (863 Program) and the National Natural Science Foundation of China, he acquired a number of important and innovative achievements in high pressure hydrogen storage, hydrogen safety, steel ribbon or fiber wound pressure equipment, polyethylene pipeline, lightweight cryogenic vessels and explosion containment vessels. He is the author of 355 peer-reviewed papers and 13 books including 5 textbooks, the inventor of 90 patents and the receiver of 12 awards from government as well as industry federation. He is also responsible for the development of 2 Chinese regulations on pressure vessels and 11 Chinese standards on hydrogen energy.
Schlagwörter
Ellipsoidal head, Design method, Fabrication quality, Pressure vessel, Standard and code, Failure mechanism, Local buckling, Plastic collapse, Buckling and burst experiment, Shape deviation, Forming strain, Forming temperature, Finite element method, Non-contact measurement, Mechanical property, Isostrength design