Zobrazeno 1 - 10
of 260
pro vyhledávání: '"A C Hewson"'
Publikováno v:
Case Studies in Thermal Engineering, Vol 60, Iss , Pp 104702- (2024)
The response of objects engulfed in, and adjacent to, large-scale pool fires is of interest in accident and safety assessments. In this study, Fuego, a low-Mach turbulent reacting flow code was used to study conjugate heat transfer in a 7.9 m diamete
Externí odkaz:
https://doaj.org/article/c6756011165c481b89bc40528ae072ae
Autor:
Elizabeth Armstrong, Michael A. Hansen, Robert C. Knaus, Nathaniel A. Trask, John C. Hewson, James C. Sutherland
Publikováno v:
Combustion Science and Technology. :1-18
Publikováno v:
Combustion Science and Technology. :1-20
Publikováno v:
MRS Bulletin. 46:402-409
Energy storage using lithium-ion cells dominates consumer electronics and is rapidly becoming predominant in electric vehicles and grid-scale energy storage, but the high energy densities attained lead to the potential for release of this stored chem
Publikováno v:
Journal of Heat Transfer. 144
Medium scale (30 cm diameter) methanol pool fires were simulated using the latest fire modeling suite implemented in Sierra/Fuego, a low Mach number multiphysics reacting flow code. The sensitivity of model outputs to various model parameters was stu
Autor:
Alexander L. Brown, John C. Hewson
Publikováno v:
Proceeding of 7th Thermal and Fluids Engineering Conference (TFEC).
Autor:
Summer Ferreira, Yuliya Preger, John C. Hewson, Randy C. Shurtz, Joshua Lamb, Loraine Torres-Castro
Publikováno v:
Journal of The Electrochemical Society. 166:A2498-A2502
Publikováno v:
Proposed for presentation at the 38th International Symposium on Combustion..
Thermal runaway of lithium-ion batteries is a risk that is magnified when stacks of lithium-ion cells are used for large scale energy storage. When limits of propagation can be identified so that systems can be designed to prevent large scale cascadi
Publikováno v:
Proposed for presentation at the PRIME 2020. Pacific Rim Meeting of the joint Electrochemical Societies held October 4-9, 2020 in Honolulu, HI..
Thermal runaway of lithium-ion batteries is a risk that is magnified when stacks of lithium-ion cells are used for large scale energy storage. When limits of propagation can be identified so that systems can be designed to prevent large scale cascadi