Turbulent Flow in Forced Convection Heat Transfer-Numerical Validation

被引:0
|
作者
Santhosh N. [1 ]
Harish H.V. [2 ]
Sunil G.S. [3 ]
Manjunath N. [4 ]
Manjunath K. [5 ]
Gowda A.C. [6 ]
Huddar V.B. [1 ]
机构
[1] Dept. of Mech. Engg, MVJ College of Engg, Karnataka, Bangalore
[2] Dept. of Mech. Engg, Debre Markos University
[3] Mercedes Benz Research and Development India, Karnataka, Bangalore
[4] Dept. of Sci. and Humanities Engg, School of Engg. and Tech, CHRIST (Deemed to be University), Karnataka
[5] Dept. of Mech. Engg, Govt. Engg. College, Karnataka, Hassan
[6] Dept. of PG Studies, Visvesvaraya Tech. Univ, Chickaballapura, Muddenahalli
关键词
Correlation; Forced Convection; Heat transfer; Numerical validation; Wind tunnel;
D O I
10.4273/ijvss.14.1.05
中图分类号
学科分类号
摘要
Forced convective heat transfer of airflow through circular pipe with constant heat input and different free stream velocities is numerically validated. The significance of the present work is that the suction flow has been employed in the forced convection set up domain kept in the wind tunnel. From first law of thermodynamics and applying the energy balance equation, experimental heat transfer coefficient is determined. Further correlations are used to validate the experimental results. Although correlations provide reasonable estimates from the point of feasibility and accuracy, computational methods are used to estimate the convective heat transfer coefficient. Hence in this paper experimental, theoretical and computational analysis is carried out. The results reveal that the numerical validation is an effective tool from the point of feasibility and accuracy to determine the convective heat transfer coefficient. © 2022. MechAero Foundation for Technical Research & Education Excellence.
引用
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页码:18 / 21
页数:3
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