Hoyas, S
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4

Direct numerical simulation of thermal channel flow for med..:

Alcántara-Ávila, F. ; Hoyas, S.
International Journal of Heat and Mass Transfer.  176 (2021)  - p. 121412 , 2021
 
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5

Thermal Structures in Turbulent Couette Flows by DNS:

, In: ERCOFTAC Series; Direct and Large Eddy Simulation XII,
 
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6

Effect of the horizontal aspect ratio on thermocapillary co..:

López-Núñez, E. ; Pérez-Quiles, M.J. ; Fajardo, P..
International Journal of Heat and Mass Transfer.  148 (2020)  - p. 119140 , 2020
 
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7

Influence of the computational domain on DNS of turbulent h..:

Lluesma-Rodríguez, F. ; Hoyas, S. ; Perez-Quiles, M.J.
International Journal of Heat and Mass Transfer.  122 (2018)  - p. 983-992 , 2018
 
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8

DNS of thermal channel flow up to Reτ=2000 for medium to lo..:

Alcántara-Ávila, F. ; Hoyas, S. ; Pérez-Quiles, M.J.
International Journal of Heat and Mass Transfer.  127 (2018)  - p. 349-361 , 2018
 
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11

Solución analítica de un filtro de Kalman estacionario para..:

Guardiola, C. ; Hoyas, S. ; Pla, B..
Revista Iberoamericana de Automática e Informática Industrial RIAI.  12 (2015)  2 - p. 230-238 , 2015
 
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13

A sparse mesh for Compact Finite Difference—Fourier solvers..:

Torregrosa, A.J. ; Hoyas, S. ; Gil, A..
Computers & Mathematics with Applications.  67 (2014)  6 - p. 1309-1318 , 2014
 
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15

Analysis of bifurcations in a Bénard–Marangoni problem: Gra..:

Hoyas, S. ; Fajardo, P. ; Gil, A..
International Journal of Heat and Mass Transfer.  73 (2014)  - p. 33-41 , 2014
 
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