Zobrazeno 1 - 10
of 122
pro vyhledávání: '"Antonio L. Sánchez"'
Publikováno v:
Flow, Vol 3 (2023)
Developed in this paper is a theoretical description of the fluid flow involved in contactless transport systems that operate using squeeze-film levitation. Regular perturbation methods are employed to solve the appropriate Reynolds equation that gov
Externí odkaz:
https://doaj.org/article/222dd55707704a22ac394b49a4879193
Publikováno v:
Combustion Science and Technology. :1-12
Publikováno v:
Combustion Science and Technology. :1-7
Publikováno v:
Combustion Theory and Modelling. 26:637-653
Autor:
Alba Domínguez-González, Forman A. Williams, Luca Scotzniovsky, Antonio L. Sánchez, Daniel Martínez-Ruiz
Publikováno v:
AIAA Journal. :1-12
The present work exploits simplifications arising in weakly exothermic detonations when the postshock conditions are supersonic to investigate the structure of wedge-induced oblique detonations. Th...
Publikováno v:
Proceedings of the Combustion Institute.
Autor:
Jenna J Lawrence, Wilfried Coenen, C. Gutiérrez-Montes, Antonio L. Sánchez, Carlos Martinez-Bazan, Juan C. Lasheras
Publikováno v:
Applied Mathematical Modelling. 94:516-533
The motion of the cerebrospinal fluid in the spinal subarachnoid space, a slender annular canal surrounding the spinal cord, exhibits an oscillatory velocity component driven by the pressure oscillations induced by the cardiac and respiratory cycles.
Publikováno v:
Combustion and Flame. 250:112633
Autor:
Raquel S. P. Hakes, Forman A. Williams, Wilfried Coenen, Antonio L. Sánchez, Michael J. Gollner
Publikováno v:
Proceedings of the Combustion Institute. 38:4515-4523
Experiments have found substantial morphological differences between buoyancy-driven flames developing on the upper and lower surfaces of inclined burning plates. These differences cannot be explained on the basis of existing analytical solutions of
Publikováno v:
Proceedings of the Combustion Institute. 38:2041-2048
This numerical investigation is focused on determining the structures of blue whirls, recently found to occur in laboratory investigations of fire whirls when the circulation becomes sufficiently large to produce a vortex breakdown that drastically s