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 Engine, Emission Technology
PERFORMANCE DESIGN OF AN EXHAUST SUPERHEATER FOR WASTE HEAT RECOVERY OF CONSTRUCTION EQUIPMENT
Hyung Seok Heo, Suk Jung Bae, Sung Mok Hong, Seung Uk Park
Int J Automot Technol. 2018;19(2):221-231.    DOI: https://doi.org/10.1007/s12239-018-0021-4
         Cited By 1
 Heat Transfer, Fluid and Thermal Engineering
DYNAMIC MODEL OF SUPERCRITICAL ORGANIC RANKINE CYCLE WASTE HEAT RECOVERY SYSTEM FOR INTERNAL COMBUSTION ENGINE
Jahedul Islam Chowdhury, Bao Kha Nguyen, David Thornhill
Int J Automot Technol. 2017;18(4):589-601.    DOI: https://doi.org/10.1007/s12239-017-0059-8
         Cited By 17
 Heat Transfer, Fluid and Thermal Engineering
AUTOMOTIVE WASTE HEAT RECOVERY: WORKING FLUID SELECTION AND RELATED BOUNDARY CONDITIONS
S. GLOVER, R. DOUGLAS, L. GLOVER, G. MCCULLOUGH, S. MCKENNA
Int J Automot Technol. 2015;16(3):399-409.    DOI: https://doi.org/10.1007/s12239-015-0041-2
         Cited By 13
 Heat Transfer, Fluid and Thermal Engineering
VIABLE COMBINED CYCLE DESIGN FOR AUTOMOTIVE APPLICATIONS
K.-B. KIM, K.-W. CHOI, K.-H. LEE
Int J Automot Technol. 2012;13(3):401-407.    DOI: https://doi.org/10.1007/s12239-012-0037-0
         Cited By 4
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