This book systematically investigates the vibration and enhanced heat transfer of elastic tube bundles in heat exchangers. Using numerical calculation methods, it explores the working principles, optimization design, and performance enhancement of elastic tube bundle heat exchangers. The book presents research findings with clear illustrations and detailed analysis, allowing readers to gain a deep understanding and practical application of the subject. Whether from an academic research or engineering practice perspective, this book serves as a valuable reference and guide. It provides readers…mehr
This book systematically investigates the vibration and enhanced heat transfer of elastic tube bundles in heat exchangers. Using numerical calculation methods, it explores the working principles, optimization design, and performance enhancement of elastic tube bundle heat exchangers. The book presents research findings with clear illustrations and detailed analysis, allowing readers to gain a deep understanding and practical application of the subject. Whether from an academic research or engineering practice perspective, this book serves as a valuable reference and guide. It provides readers with insight and guidance on both theoretical and practical aspects of the field. With its comprehensive coverage and practical approach, this book is essential reading for researchers, engineers, and students interested in the vibration and heat transfer of elastic tube bundles in heat exchangers.
Jiadong Ji is Associate Professor, Master Supervisor, and Young Top Talent at Anhui University of Science and Technology, China. In 2016, he graduated from the School of Mechanical Engineering-Mechanical Design and Theory of Shandong University with a doctorate degree in engineering and joined the School of Mechanical Engineering of Anhui University of Science and Technology in the same year. The main research directions include: high-efficiency compact heat exchanger design, coupled field vibration mechanism, enhanced heat transfer mechanism, vibration control, heat transfer control, etc. Baojun Shi is Professor and Doctoral Supervisor at Hebei University of Technology, Tianjin, China, and Taishan Scholar. He has successively engaged in research or/and teaching in Jinan Foundry and Forging Machinery Research Institute of the Ministry of Machinery, Shandong Jianzhu University, Nanyang Technological University in Singapore, University of California, etc., with many years of overseas study and engineer work experience; he has been to Singapore, the USA, South Korea, Japan, Hong Kong, and other countries or regions for academic exchanges and visits; he was awarded "Taishan Scholar Overseas Distinguished Expert" by the Shandong Provincial Party Committee and Provincial Government and Excellent Graduate Supervisor in Shandong Province. His main research interests include: special robotics and environmental perception, dynamics and reliability, computational fluid dynamics and its applications, 3D printing and lightweight design, etc. Haishun Deng is Professor and Doctoral Supervisor at Anhui University of Science and Technology, China. His teaching and scientific research focuses on fluid power transmission and control. In the past 5 years, he has presided over 1 national first-class professional construction site, 5 provincial education reform projects (teaching team, first-class courses, etc.), 1 national fund, 5 provincial projects such as excellent scientific research and innovation teams in colleges and universities, and collaborative innovation.
Inhaltsangabe
.- Introduction.- Numerical calculation method.- Vibration of ETBs induced by uniform shell side fluid.- Vibration and heat transfer analysis of ETBs induced by actual shell side fluid.- Design of a shell side distributed pulsating flow generator.- Effect of pulsating flow generator on vibration and heat transfer of ETBs.- Effect of baffles on vibration and heat transfer of TETBs.- Research on vibration enhanced heat transfer of IETB heat exchanger.- Effect of baffle structure on the performance of IETB heat exchanger.
.- Introduction.- Numerical calculation method.- Vibration of ETBs induced by uniform shell side fluid.- Vibration and heat transfer analysis of ETBs induced by actual shell side fluid.- Design of a shell side distributed pulsating flow generator.- Effect of pulsating flow generator on vibration and heat transfer of ETBs.- Effect of baffles on vibration and heat transfer of TETBs.- Research on vibration enhanced heat transfer of IETB heat exchanger.- Effect of baffle structure on the performance of IETB heat exchanger.
.- Introduction.- Numerical calculation method.- Vibration of ETBs induced by uniform shell side fluid.- Vibration and heat transfer analysis of ETBs induced by actual shell side fluid.- Design of a shell side distributed pulsating flow generator.- Effect of pulsating flow generator on vibration and heat transfer of ETBs.- Effect of baffles on vibration and heat transfer of TETBs.- Research on vibration enhanced heat transfer of IETB heat exchanger.- Effect of baffle structure on the performance of IETB heat exchanger.
.- Introduction.- Numerical calculation method.- Vibration of ETBs induced by uniform shell side fluid.- Vibration and heat transfer analysis of ETBs induced by actual shell side fluid.- Design of a shell side distributed pulsating flow generator.- Effect of pulsating flow generator on vibration and heat transfer of ETBs.- Effect of baffles on vibration and heat transfer of TETBs.- Research on vibration enhanced heat transfer of IETB heat exchanger.- Effect of baffle structure on the performance of IETB heat exchanger.
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