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http://dx.doi.org/10.5855/ENERGY.2016.25.4.007

Numerical Study for Configuration Design in the Exhaust Gas Cooling System  

Lee, Suk Young (Department of Mechanical Engineering, Inha Technical College)
Publication Information
Abstract
This paper deals with a parametric study on cooling channel configurations to enhance the cooling effect. As a cooling effect has been increased, the exhaust gas by the plant from a manufacture is becoming deceased. To solve this problem, the design of a efficient cooling system is needed. In this paper, the cooling channel was analyzed to improve the cooling performance. The heat transfer rates depending on the number of baffle and the heiht of fin were obtained by using numerical simulation method. Three-dimensional Reynolds-averaged Naiver-Stokes equations were used to estimate flow and heat transfer in cooling channel, and the $k-{\varepsilon}$ model for turbulence closure was employed.
Keywords
Cooling system; Exhaust gas; Configuration design; Numerical analysis;
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1 Hwang, S. D., Kwon, H. G. and Cho, H. H., 2008, Heat transfer with dimple/protrusion arrays in a rectangular duct with a low Reynolds number range, International Journal of Heat and Fluid Flow, Vol. 29, pp. 916-926   DOI
2 Mahmood, G. I. and Ligrani, P. M., 2002, Heat transfer in a dimpled channel: combined influences of aspect ratio, temperature ratio, Reynolds number, and flow structure, International Journal of Heat and Mass Transfer, Vol. 45, pp. 2011-2020   DOI
3 Ligrani, P. M., et al., 2001, Flow structure and local Nusset number variations in a channel with dimples and protrusion on opposite walls, International Journal of Heat and Mass Transfer, Vol. 44, pp. 4413-4425   DOI
4 Elyyan, M. A., Rozati, A. and Tafti, D. K., 2008, Investigation of dimpled fins for heat transfer enhancement in compact heat exchangers, International Journal of Heat and Mass Transfer, Vol. 51, pp. 2950-2966   DOI
5 Isaev, S. A. and Leont, A. I., 2003, Numerical simulation of vortex enhancement of heat transfer under conditions of turbulent flow past a spherical dimple on the wall of a narrow channel, High Temperature, Vol. 44, pp. 665-679
6 Samad, A., Lee, K. D. and Kim, K. Y., 2008, Multiobjective optimization of a dimpled channel for heat transfer augmentation, Heat Mass Transfer, Vol. 45, pp. 207-217   DOI
7 Kim, H. M., Moon, M. A. and Kim, K. Y., 2012, Heat-transfer anaysis of a cooling channel with inclined elliptical dimlles, Journal of Computational Fluids Engineering Vol. 17, No. 3, pp.1-7   DOI