Abstract
AbstractIn the present work, the influence of inclined baffles and an elastic vibrating beam is investigated on the flow pattern and heat transfer rate in a rectangular channel. The cylinder with the elastic vibrating beam develops the vibrating flow. The computations are based on the finite element method (FEM); Galerkin least-squares scheme and Newton–Raphson iterative method are implemented to solve the governing equations. The fluid structure-interaction (FSI) method is used to analyze the elastic vibrating beam. The friction factor coefficient and Nusselt number are examined for the inclined and conventional baffles. The flow regime is assumed to be laminar for various baffle angles and Reynolds numbers. The vibrating beam is connected to the cylinder located in the channel entrance. Optimized cases with the maximum heat transfer and minimum friction factor are introduced. The novelty of this study is the simultaneous use of the elastic vibrating beam and inclined baffles in a rectangular channel. The results show that mounting an elastic vibrating beam on the cylinder leads the heat transfer rate to increase. The channel with an elastic vibrating beam and inclined baffles at 135° is the optimized case compared to other cases.Article Highlights
Take advantage of using an elastic vibrating beam in a rectangular channel.
Influences of inclined baffles on thermal performance are examined numerically.
The optimum case for the channel with inclined-baffles is reported.
Publisher
Springer Science and Business Media LLC
Subject
General Earth and Planetary Sciences,General Physics and Astronomy,General Engineering,General Environmental Science,General Materials Science,General Chemical Engineering
Reference26 articles.
1. Jamalabadi MYA (2020) Optimal design of vibrating beam behind a cylinder. Ocean Eng 195:106759
2. Gu H, Chen Y, Wu J, Yang S (2017) Numerical study on performances of small incline angle helical baffle electric heaters with axial separation. Appl Therm Eng 126:963–975
3. Li G, Zheng Y, Yang H, Xu Y (2016) Numerical investigation of heat transfer and fluid flow around the rectangular flat plane confined by a cylinder under pulsating flow. J Appl Fluid Mech 9(4):1569–1577
4. Hu J, Wang W (2016) An Approximate Method for the Evaluation of the Normal Force Acting on a Flexible Plate Normal to the Wind Flow. J Appl Fluid Mech 9(4):1559–1568
5. Promvonge P, Tamna S, Pimsarn M, Thianpong C (2015) Thermal characterization in a circular tube fitted with inclined horseshoe baffles. Appl Therm Eng 75:1147–1155
Cited by
3 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献