Convective heat transfer enhancement inside tubes using inserted helical coils
Author:
Publisher
Pleiades Publishing Ltd
Subject
Energy Engineering and Power Technology,Nuclear Energy and Engineering
Link
http://link.springer.com/content/pdf/10.1134/S0040601516010018.pdf
Reference23 articles.
1. S. Liu and M. Sakr, “A comprehensive review on passive heat transfer enhancements in pipe exchangers,” Renew and Sustain. Energy Rev. 19, 64–81 (2013).
2. S. B. Uttarwar and M. Rao Raja, “Augmentation of laminar flow heat transfer in tubes by means of wire coil inserts,” Trans. ASME 107, 930–935 (1985).
3. H. Inaba, K. Ozaki, and S. Kanakoa, “A fundamental study of heat transfer enhancement and flow-drag reduction in tubes by means of wire coil insert,” Jpn. Soc. Mech. Eng. 60, 240–247 (1994).
4. A. García, J. P. Solano, P. G. Vicente, and A. Viedma, “Flow pattern assessment in tubes with wire coil inserts in laminar and transition regimes,” Int. J. Heat Fluid Flow 28, 516–525 (2007).
5. D. Muñoz-Esparza and E. Sanmiguel-Rojas, “Numerical simulations of the laminar flow in pipes with wire coil inserts,” Comput. Fluids 44, 169–177 (2011).
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