ព្រឹត្តិបត្រស្រាវជ្រាវ (Research Articles)

Title
Heat transfer phenomena on waste heat recovery of combustion stack gas with deionized water in helical coiled heat exchanger
Author(s)Rithy Kong, Thoranis Deethayat, Attakorn Asanakham, Tanongkiat Kiatsiriroat
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Keywords   Deionized water     Heat transfer data     Helical coil     Waste heat recovery  
Abstract

Theoretical and experimental studies on waste heat recovery of combustion stack gas and heat transfer phenomena of a fully developed laminar flow of deionized water in vertical helical coils were carried out with coil dimensions: tube diameter to coil diameter, di/D=0.04-0.06 and pitch to coil diameter, p/D=0.1-0.25. The calculation of heat transfer data was based on countercurrent flow LMTD method. The result showed that deionized water (DI-water) possessed better heat transfer than that of normal water. The effect of coil pitch, coil diameter, and coiled tube diameter on heat transfer phenomena of helical coils had been discussed and a new set of correlation of heat transfer data was created and it could be found that the results from the correlation agreed well with the experimental data. In addition, the overall heat transfer coefficient between the hot exhaust gas and the heat transfer fluid in the helical coil was also considered. Smaller tube diameter gave better overall heat transfer coefficient at low water-side Reynolds number and when the Reynolds number was over 3,500 the bigger tube diameter showed the advantage. Smaller coil diameter seemed to get better overall heat transfer coefficient at low water-side Reynolds number.

JournalCase studies in thermal engineering
Publisher/InstitutionElsevier
Field/FacultyFaculty of Engineering
Publication Year2018
Volumn12
Issue-
Pages213-222
DOIhttps://doi.org/10.1016/j.csite.2018.04.010
Recommended CitationRithy Kong, Thoranis Deethayat, Attakorn Asanakham, Tanongkiat Kiatsiriroat. (2018). Heat transfer phenomena on waste heat recovery of combustion stack gas with deionized water in helical coiled heat exchanger. Case studies in thermal engineering, 12, 213-222
Contact Emailkongrithyitc@gmail.com