ON THE REFRIGERATION PERFORMANCE OF COOLING PLATES WITH DIFFERENT CHANNEL SHAPES
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Publisher
Begellhouse
Reference8 articles.
1. Murshed, S.S., De Castro, C.N., 'A critical review of traditional and emerging techniques and fluids for electronics cooling,' Renew. Sustain. Energy, 78, pp. 821-833, (2017).
2. Kidegho, G., Njoka, F., Muriithi, C., Kinyua, R., 'Evaluation of thermal interface materials in mediating PV cell temperature mismatch in PV-TEG power generation,' Energy Rep., 7, pp. 1636-1650, (2021).
3. Bejan, A. and Lorente, S., Design with Constructal Theory, New Jersey: John Wiley & Sons, Inc. (2008).
4. Almerbati, A., Lorente, S., Bejan, A., 'The evolutionary design of cooling a plate with one stream,' Int. J. Heat Mass Transf., 116, pp. 9-15, (2018).
5. Samal, B., Barik, A.K., Awad M.M., 'Thermo-fluid and entropy generation analysis of newly designed loops for constructal cooling of a square plate,' App. Therm. Eng., 156, pp. 250-262, (2019).
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