Zobrazeno 1 - 10
of 88
pro vyhledávání: '"Hal Gurgenci"'
Publikováno v:
Frontiers in Energy Research, Vol 10 (2022)
This paper presents the results of a numerical study on a supercritical CO2 (SCO2) turboshaft cooling device by considering heat transfer and hydrodynamics. A micro-cooling device with a radius clearance of 50 micron and a nozzle diameter of 4 mm was
Externí odkaz:
https://doaj.org/article/277699612ed2475f97313b4fdfd79f43
Publikováno v:
Energies, Vol 14, Iss 21, p 6886 (2021)
High-temperature latent heat storage (LHS) systems using a high-temperature phase change medium (PCM) could be a potential solution for providing dispatchable energy from concentrated solar power (CSP) systems and for storing surplus energy from phot
Externí odkaz:
https://doaj.org/article/04450be1a02d4432bf7a6114be9a9c7f
Publikováno v:
Numerical Heat Transfer, Part B: Fundamentals. 77:349-400
Extensive computational investigations have been performed to obtain more detailed information about the peculiar phenomena of turbulent supercritical carbon dioxide (sCO2) flow as ideal heat trans...
Publikováno v:
Proceeding of Proceedings of the 26thNational and 4th International ISHMT-ASTFE Heat and Mass Transfer Conference December 17-20, 2021, IIT Madras, Chennai-600036, Tamil Nadu, India.
Publikováno v:
SSRN Electronic Journal.
Autor:
M. Monjurul Ehsan, Muhammad Awais, Sangkyoung Lee, Sayedus Salehin, Zhiqiang Guan, Hal Gurgenci
Publikováno v:
Renewable and Sustainable Energy Reviews. 172:113044
Publikováno v:
Energy Conversion and Management. 278:116714
Publikováno v:
Energies
Volume 14
Issue 21
Energies, Vol 14, Iss 6886, p 6886 (2021)
Volume 14
Issue 21
Energies, Vol 14, Iss 6886, p 6886 (2021)
High-temperature latent heat storage (LHS) systems using a high-temperature phase change medium (PCM) could be a potential solution for providing dispatchable energy from concentrated solar power (CSP) systems and for storing surplus energy from phot
Publikováno v:
International Journal of Heat and Mass Transfer. 193:122938
Publikováno v:
Energy. 180:480-494
The thermal performance of a supercritical CO2 (sCO2) recompression cycle is expressively influenced by main compressor inlet temperature. Design of the cooling system is imperative since the compressor inlet temperature substantially influence the s