CFD Analysis of Flow and Heat Transfer in Sub-Channels of HPLWR
Authors: Krishna Murari Pandey and Ajoy Debbarma
Description:
This book presents a comprehensive computational fluid dynamics (CFD) analysis of fluid flow and heat transfer characteristics in sub-channels of the High Performance Light Water Reactor (HPLWR). It provides insights into numerical modelling, thermal-hydraulic behaviour, and heat transfer mechanisms relevant to advanced nuclear reactor systems, making it a valuable resource for researchers, graduate students, and engineers working in thermal sciences and nuclear engineering.
Publisher: LAP Lambert Academic Publishing
Publication Date: August 25, 2013
Print Length: 80 pages
ISBN-10: 3659407887
ISBN-13: 978-3659407888
Purchase Link: https://www.amazon.com/Analysis-Flow-Transfer-Sub-Channels-HPLWR/dp/3659407887
Debbarma, A. (2026). Magnetic nanofluids: principles and applications. In Fundamentals and Applications of Nanofluids (pp. 277-315). Elsevier. https://linkinghub.elsevier.com/retrieve/pii/B9780443445026000189
Dixit, A., & Debbarma, A. (2022, July). Experimental Investigation of Cooling Photovoltaic Panel Using Turbo-Ventilator. In International Conference on Advances in Energy Research (pp. 47-59). Singapore: Springer Nature Singapore. https://link.springer.com/chapter/10.1007/978-981-99-2279-6_5
Kishan, D. L., Swapnil, S., & Debbarma, A. (2023). CFD Investigation of Rewetting Behavior on a Hot Vertical Plate Surface with Coolant Jet Impingement. In Emerging Trends in Mechanical and Industrial Engineering: Select Proceedings of ICETMIE 2022 (pp. 85-97). Singapore: Springer Nature Singapore. https://link.springer.com/chapter/10.1007/978-981-19-6945-4_7
Kishan, D. L., Sharma, S. L., & Debbarma, A. (2022). CFD Investigation on Rewetting Temperature and Wetting Delay during Quenching of Hot Surface with Jet Impingement. In Advances in Mechanical and Industrial Engineering (pp. 29-34). CRC Press. https://www.taylorfrancis.com/chapters/edit/10.1201/9781003216742-5