Design And Performance Analysis of Double Pipe Heat Exchanger In Counter Flow

International Journal of Mechanical Engineering
© 2020 by SSRG - IJME Journal
Volume 7 Issue 5
Year of Publication : 2020
Authors : Mr.Deepak Kumar S, Dr.Saravanan P, Mr.Periyannan L
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How to Cite?

Mr.Deepak Kumar S, Dr.Saravanan P, Mr.Periyannan L, "Design And Performance Analysis of Double Pipe Heat Exchanger In Counter Flow," SSRG International Journal of Mechanical Engineering, vol. 7,  no. 5, pp. 8-13, 2020. Crossref, https://doi.org/10.14445/23488360/IJME-V7I5P102

Abstract:

Heat exchangers are important devices commonly used in various industries such as processes, petroleum refining, chemicals, oil industries, power plants, paper, etc. The demand for high-efficiency heat exchangers has been driven by energy and material saving requirements and environmental challenges in the industry. To improve the heat exchanger's efficiency, one must think of heat transfer enhancement in the heat exchanger. In addition, heat transfer improvement makes it possible to reduce the size of the heat exchanger significantly. For a compact heat exchanger, a high heat transfer rate with minimum space requirement is required. The counter flow heat exchanger increases the heat transfer feature of the double pipe heat helical fins that have been mounted on the inner tube's outer surface, and the additional insert is used to improve the effectiveness. The heat pipe model is designed by the software CREO PARAMETRIC and analyses by the ANSYS software. To check the temperature difference in varying hot water flow rates. Furthermore, compare and select the best model of the double pipe heat exchanger.

Keywords:

Double Pipe, Counter Flow, Design, Heat Exchanger

References:

[1] PragneshkumarPrajapati, UmangSoni, AshvinSuthar., Increase the Heat Transfer Rate of Double Pipe Heat Exchanger with Quadratic Turbulator (Baffle) Attached Twisted Tape Insert, International Journal of Advance Engineering and Research Development. 3(5) (2016) 204-212.
[2] Kanika Joshi, ShivasheeshKaushik, Vijay Bisht., Investigation on Heat Transfer Rate in Concentric Tube Heat Exchanger Using Pentagonal Shape Inserts in ANSYS FLUENT 14.5 with Varying Mass Flow Rate for Parallel Flow, International Journal of Scientific & Engineering Research. 8(5) (2017) 1092-1102
[3] KalapalaLokesh, N. Somasankar, Sk. Azharuddin, K. Uma MaheswaraRao, M. Hari Krishna, M. Siva Sankar Mani Kumar., Heat Transfer Enhancement of Double Pipe Heat Exchanger Using Twisted Tape Inserts, International Journal of Mechanical Engineering and Technology. 8(5) (2017) 420-424.
[4] Bandu A.Mule1, D.N.Hatkar, M.S.Bembde., Analysis of Double Pipe Heat Exchanger with Helical Fins, International Research Journal of Engineering and Technology. 4(8) (2017) 961-966.
[5] T. Vijayasagar, Dr.Y.Appalanaidu., Experimental Investigation of Heat Transfer Coefficient and Friction Factor in a Double Pipe Heat Exchanger With and Without Twisted Tape Inserts using ZNO-Propylene Glycol Nano Fluid, International Journal of Mechanical Engineering and Technology. 8(8) (2017) 94-106.
[6] Asoka R.G, Aishwarya N, Rajasekar S, Meyyappan N., Dynamic Simulation of Double Pipe Heat Exchanger using MATLAB Simulink, SSRG International Journal of of Chemical Engineering Research. 4(1) (2017) 6-13.
[7] JSJayakumar, S.M. Mahajani, J.C. Mandal, P.K. Vijayan, RohidasBhoi., Experimental and CFD estimation of heat transfer in helically coiled heat exchangers, Chemical Engineering Research and Design. (2017) 222-232.
[8] YaminiPawar, AshishSarode., An Experimentation of Helical Coil Tube Heat Exchanger with Different Curvature Ratio and Geometry, International Conference Proceeding. (2017) 176-185.
[9] Deepak Sen, Dr. AlkaAgrawal., Enhancing the Heat Transfer Parameters in Double Pipe Heat Exchanger by Creating Turbulence in Inner and Outer Tube, International Journal for Research in Applied Science & Engineering Technology. 6(1) (2018) 2646-2649.
[10] V LokeshVarma, Suresh BabuKoppula, DrN.V.V.S.Sudheer., Influence of Pressure Drop, Reynolds Number and Temperature in the Design of Double Pipe Heat Exchanger on Hot Fluid Side in Inner Pipe, SSRG International Journal of Mechanical Engineering. 4(12) (2017) 28-36.
[11] Harsh Ladani, RajkamalSanepara, MayurMoradiya, Decent Chopda, Prof.Vatsal Patel., Design and Fabrication of Double Pipe Heat Exchanger Using Different Heat Transfer Enhancement Technique, International Journal of Technical Innovation in Modern Engineering & Science. 4(4) (2018) 112-120.
[12] Miyer Valdes, Juan G. Ardila, Dario Colorado, and Beatris A. Escobedo-Trujillo., Computational Model to Evaluate the Effect of Passive Techniques in Tube-In-Tube Helical Heat Exchanger, energies. (2019) 1-12.
[13] Kola David, Abhishekkumar., CFD and Heat Transfer Analysis of Automobile Radiator Using Helical Tubes, International Journal of Innovative Research in Science, Engineering and Technology. 8(5) (2019) 5988-6017.