Sergio Hoyas h = 8, 547 Cites Department of Heat Engines Universitat Politècnica de València Researcher id: B

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1 Sergio Hoyas h = 8, 547 Cites Department of Heat Engines Universitat Politècnica de València Researcher id: B Present Associate Professor of Aerospace Engineering 11/24/10. Position Vice Dean of Enterprises Chairs School of Aeronautics and Design, U.P. de València, 11/10/2011 Lecturer, Florida State University International Program, 06/30/2014 Previous Senior Lecturer, 06/10/08-11/23/10 Experience Department of Heat Engines, U. P. de Valencia Lecturer, 01/12/07-10/08/08 Department of Informatics, U. de Valencia Juan de La Cierva Posdoctoral fellow, 01/01/05-01/11/07. School of Aeronautics, U.P. de Madrid Assistant, 10/12/99-12/31/04 Faculty of Chemistry, U. de Castilla-la Mancha Biographical Birthdate: February 10, 1975 Data Place of Birth: Madrid, Spain. Citizenship: Spanish Civil state: Married, three children Languages: Spanish, English. Education Ph.D. (cum laude) Applied Mathematics, December 2003, Title: Supervisors: Bernard-Marangoni convection in annular geometry. Prof. Henar Herrero, Dr. Ana Mancho and Prof. Rosa Pardo Universidad Complutense de Madrid, Spain. Diploma, Applied Mathematics, September 2001, Title: Supervisor: Bifurcation in elliptic systems coupled on the boundary. Dr. Rosa Pardo, Universidad Complutense de Madrid, Spain. Mathematics Degree, Astronomy and Mechanics Program. June 1999, Universidad Complutense de Madrid, Spain. 1

2 Teaching Titular de Universidad (Assoc. Professor), U.P. de Valencia, Experience Advanced Fluid Mechanics(Third year) Fluid Mechanics (Second year) Orbital Mechanics (Fourth year) Numerical Simulation of Turbulence (Fifth year) CFD applications in reciprocating engines (Master level) Contratado doctor (Senior lecturer), U.P. de Valencia, Advanced Fluid Mechanics (Third year) Numerical Simulation of Turbulence (Fifth year) Ayu. Doctor (Lecturer), Universidad de Valencia, Computer Structure (First year) Advanced Computers Architecture (Fourth year) Operative Systems (Second year) High Performance Computing (Fith year) Assistant, Universidad de Castilla-la Mancha, Mathematics Introduction to Matlab and Scientific Computation Computing Head of scientific computation group and system manager, Experience CMT-Motores térmicos, UPV. Member of administration staff, Computational Fluid Dynamics Lab, School of Aeronautics, UPM. System manager and webmaster, Department of Applied Mathematics, UCLM. Operative systems: Windows and GNU/Linux, system manager. Languages: Html, L A TEX, JavaScript. Text processors: vim, kyle, nedit (Linux), WinEdt, Scientific WorkPlace (Windows). High Level Languages: C/C++, Fortran*, Matlab*, Bash. Parallel Languages: OpenMP, MPI, Cuda. Office suite: Microsoft office (Windows), OpenOffice (Linux) Designed and ran one of the three programs that tested MareNostrum, the most powerful Supercomputer in Europe in 2005 Research Interests Fluid Mechanics, Turbulence Dynamics, Aerodynamics, Super-computation. Past: Dynamical systems. Computational Biology. Reciprocating Engines 2

3 JCR Publications 1. Turbulent plane Couette flow at moderately high Reynolds number. V. Avsarkisov, Sergio Hoyas, M. Oberlack, JPG Galache, Journal of Fluid Mechanics. Volume 751, Pages R1, [0 cites] 2. New scaling laws for turbulent Poiseuille flow with wall transpiration. V. Avsarkisov, M. Oberlack, Sergio Hoyas, Journal of Fluid Mechanics. Volume 746, Pages , [0 cites] 3. A sparse mesh for Compact Finite Difference Fourier solvers with radius-dependent spectral resolution in circular domains. A. Torregrosa, Sergio Hoyas, A. Gil, JPG Galache, Computers and mathematics with applications. Volume 67, Pages , [0 cites] 4. A recent Eulerian Lagrangian CFD methodology for modeling direct injection diesel sprays. JM Desantes, Sergio Hoyas, A. Gil, D. Khuong-Anh, Ravet, F. International Journal of Computational Methods. Volume: 11 Issue: 3 Article: , DOI: [0 cites] 5. Analysis of bifurcations in a Bénard Marangoni problem: Gravitational effects. Sergio Hoyas, Pablo Fajardo, Antonio Gil, and Jezabel Pérez-Quiles. International Journal of Heat and Mass Transfer, Volume: 73 pages 33-41, [0 cites] 6. Set-up analysis and Optimization of CFD Simulations for Radial Turbines. José Galindo, Sergio Hoyas, Pablo Fajardo and Roberto Navarro. Engineering Applications of Computational Fluid Mechanics, Volume: 7 pages , [0 cites] 7. Codimension-three bifurcations in a Benard-Marangoni problem. Sergio Hoyas, Antonio Gil, Pablo Fajardo and Jezabel Pérez-Quiles. Physical Review E, Volume: 88 Issue: 1 Article Number: DOI: /PhysRevE , [0 cites] 8. Evaluation of the Eulerian-Lagrangian Spray Atomization (ELSA) model in spray simulations: 2D cases. Sergio Hoyas, A. Gil, X. Margot, D. Khuong-Anh, Ravet, F. Mathematical and Computer Modelling.Volume: 57 Issue: 7-8 Pages: , DOI: /j.mcm , April [2 cites] 9. Bifurcation diversity in an annular pool heated from below: Prandtl and Biot numbers effects. A. Torregrosa, Sergio Hoyas, M.J. Pérez-Quiles, J.M. Mompó-Laborda, Volume 13, Issue 2 Pages , February [2 cites] 10. Numerical modelling of cavitation: validation and parametric studies. X. Margot, Sergio Hoyas, A. Gil, S. Patouna, Engineering Applications of Computational Fluid Mechanics 6,1, 1524, (2012). [8 cites] 11. CFD Study of Needle Motion Influence on the Spray Conditions of Single-Hole Injectors. X. Margot, Sergio Hoyas, P. Fajardo, S. Patouna, Journal of Atomization and Sprays, 1, 31-40, 2011 [3 cites] 12. Numerical simulation and extended validation of two-phase compressible flow in diesel injector nozzles. FJ Salvador, S. Hoyas, R. Novella, J. Martínez. Proceedings of the institution of mechanical engineers, part D-Journal of Automobile Engineering, 225, (D4), , [7 cites] 3

4 13. Theoretical study of a Benard-Marangoni problem. Rosa Pardo, Henar Herrero and Sergio Hoyas, Journal of Mathematical Analysis and Applications, 376, 1, , A moving mesh generation strategy for solving an injector internal flow problem. Xandra Margot, Sergio Hoyas Pablo Fajardo, Stavroula Patouna, Mathematical and Computer Modelling,52 (7-8), , [4 cites] 15. Turbulent boundary layers and channels at moderate Reynolds numbers. Javier Jiménez, Sergio Hoyas, Mark Simens and Yoshinori Mizuno, Journal of fluid mechanics,657, , 2010 [40 cites] 16. Basic networks: Definition and applications. I. Marín and S. Hoyas, Journal of Theoretical Biology, 258 (1) Pages: 53-59, A high-resolution code for turbulent boundary layers. Mark Simens, Javier Jiménez, Sergio Hoyas and Yoshinori Mizuno, Journal of Computational Physics, , , 2009 [52 cites] 18. Chebyshev collocation for optimal control in a thermoconvective flow. M.C. Navarro, H. Herrero and S. Hoyas. Commun. Comput. Phys., 5, pp [4 cites] 19. Heat transfer analysis of intermittent grinding. J. Pérez, S. Hoyas, D. L. Skuratov, Yu. L. Ratis, I. A. Selezneva, P. Fernández de Córdoba and J. F.Urchueguía, Int. J. Heat Mass Tra., 51 (2008) [4 cites] 20. Turbulent fluctuations above the buffer layer of wall-bounded flows. J. Jiménez and S. Hoyas, J. Fluid. Mech. 611, SEP [57 cites] 21. Reynolds number effects the Reynolds-stress budgets in channels. S. Hoyas and J. Jiménez. Phys. of Fluids, 20, , [46 cites] 22. Mathematical modelling of Ru(VI)-Catalyzed Oxidation of Alcohols by Hexacyanoferrate(III). O. Sanchez, A.E. Mucientes, H. Herrero and S. Hoyas. J. Math. Chem. 42 (3): OCT Filtering of singularities in a Marangoni convection problem. H. Herrero, A.M. Mancho, S. Hoyas, Numerical Mathematics and Advanced Applications, , Scaling of the velocity fluctuations in turbulent channels up to Re τ = S. Hoyas and J. Jiménez. Phys. of Fluids. 18, [222 cites] 25. Bénard-Marangoni convection in a differentially heated cylindrical cavity. S. Hoyas, A.M. Mancho, H. Herrero, N. Garnier and A. Chiffaudell. Phys. of Fluids. 17, [18 cites] 26. Thermocapillary and thermogravitatory waves in a convection problem. S. Hoyas, H. Herrero and A.M. Mancho, Theoretical and Computational fluid dynamics, , [5 cites] 27. Chebyshev Collocation for a Convective Problem in Primitive Variables Formulation. H. Herrero, S. Hoyas A. Donoso, A.M. Mancho, J.M. Chacon, R.F. Portugués and B. Yeste. J. Scientific Computing. 18 (2), , [5 cites] 4

5 28. Bifurcation diversity of dynamic thermocapillarity liquid layers. S. Hoyas, H. Herrero and A.M. Mancho. Physical Review E, 66, [15 cites] 29. Thermal convection in an annulus heated Laterally. S. Hoyas, H. Herrero and A.M. Mancho. J. Phys. A: Math Gen. 35, , [29 cites] 30. Nonlinear planes waves in a convection model. A.M. Mancho, H. Herrero, L. Vázquez, and S. Hoyas. Int. J. of Bifurcat. Chaos. 11 (11), , Non JCR communications and divulgation articles 1. A large-eddy simulation of diesel-like gas jets. Sergio Hoyas, Antonio Gil, Juan Manuel Mompó-Laborda, Dung Khuong-Anh, International Journal of Vehicle Systems Modelling and Testing (IJVSMT), 6 DOI: /IJVSMT (2011) 2. Evaluation of the Eulerian-Lagrangian spray atomization (ELSA) in spray simulations. S Hoyas, JM. Pastor, D. Khuong-Anh JM Mompó-Laborda and F. Ravet, International Journal of Vehicle Systems Modelling and Testing (IJVSMT) 6 - Issue 3/4, DOI: /IJVSMT , (2011) 3. Application and Evaluation of the Eulerian- Lagrangian Spray Atomization (ELSA) Model on CFD Diesel Spray Simulations. S Hoyas, JM. Pastor, D. Khuong-Anh JM Mompó-Laborda and F. Ravet, SAE papers, ISSN , , doi: / (2011) 4. Entry length requirements for direct simulations of turbulent boundary layers Annual Research Briefs 2008, Center for Turbulence Research, Stanford University, J. Jiménez, M. P. Simens, S. Hoyas and Y. Mizuno, jimenez.pdf 5. A direct numerical simulation code for incompressible turbulent boundary layers ETSIA Technical Notes, MF-071, M. P. Simens, J. Jimenez, S. Hoyas, Gwenael Hauet and Samuel Vaux, etal ETSIA MF071.pdf 6. A Grand Challenge DNS at BSC. S.Hoyas and J. Jiménez, Channel 2000: Computing wall turbulence at experimental Reynolds numbers. S. Hoyas and J. Jiménez. DEISA Newsletter, Newsletter Vol2 06.pdf 8. Scaling of the velocity fluctuations in turbulent channels up to Re τ = 2003 Annual Research Briefs 2005, Center for Turbulence Research, Stanford University, S. Hoyas and J. Jiménez, Research Projects, last 5 years 1. Elecfilter: Design of compressor air inlet protection for electrical ECS, funded by UE Seventh framework, Cleansky Joint Technology Initiative , 500ke, PI: Francisco Payri, UPVLC 2. Clean and efficient combustion processes in reciprocating engines using Dual-fuel concept, funded by Spanish government, ke, PI: Jose Vicente Pastor, UPVLC. 5

6 3. LES methods applied to Diesel Sprays., funded by Spanish goverment, ke, PI: José María Desantes, UPVLC 4. Simulation de Spray Diesel, funded by Renault, ke+ PhD student, PI: Francisco Payri, UPVLC 5. Implementation of a advanced algorithm for the resolution of ODE systems and its application to the modeling of combustion processes in OpenFOAM Funded by UPVLC, 8.5ke, PI Sergio Hoyas 6. Analysis of the aerodynamics characteristics and stability of a new guided bomb model, funded by Embention s.l., ke, PI: Francisco Payri, UPVLC 7. CFD simulation of Diesel sprays: The prymary break-up, funded by UPVLC and local govenment, ke, PI Sergio Hoyas 8. Supercomputación y e-ciencia, funded by Spanish Goverment, Consolider Program Me, PI: Mateo Valero, BSC. 9. CometNano: Project,Technologies for Synthesis, Recycling and Combustion of Metallic Nanoclusters as Future Transportation Fuels, funded by UE Seventh framework project, , 1.8Me, PI: Athanasios Konstandopoulos 10. Evaluation du modele WERC sour base moteurs Renault, funded by Renault, ke, PI: Francisco Payri, UPVLC 11. WALLTURB: A European Synergy for the assessment of wall turbulence, funded by UE Sixth framework project, PI: Michel Stanislas. 12. Turbulence simulation at High Reynolds numbers, funded by Spanish goverment, ke,PI: Javier Jiménez, Contributions at Conferences and Seminars 1. Evaluation and Validation of ELSA Model in Diesel Sprays: 3D Cavitating Nozzles Case 12th International Conference on Liquid Atomization and Spray Systems ICLASS 2012, Heidelberg, A recent Eulerian-Lagrangian CFD methodology for modelling direct injection diesel sprays International Conference on Advances in Computational Mechanics Ho-Chi- Minh city, Vietnam Application and Evaluation of the Eulerian-Lagrangian Spray Atomization (ELSA) Model on CFD Diesel Spray Simulations, TO ZEV (Torino, Zero Emissions Vehicle), Highlighting the latest Powertrain, Vehicle and Infomobility Technologies, Turin, Italy, A LES approach to the simulation of Diesel Sprays: Boundary Conditions Configuration, International Conference on Mechanical, Automotive and Aerospace Engineering 2011 ICMAAE 11, Kuala Lumpur, Malaysia, may Evaluation of the Eulerian-Lagrangian spray atomization (ELSA) model on CFD Diesel injection Simulations, International Conference on Mechanical, Automotive and Aerospace Engineering 2011 ICMAAE 11, Kuala Lumpur, Malaysia, may CFD study of needle motion influence on the spray conditions of single-hole injectors, 23rd European Conference on Liquid Atomization and Spray Systems, Brno University of Technology, Brno, Czech Republic, September

7 7. Large eddy simulation of diesel sprays, Mathematical Models of Addictive Behaviour, Medicine & Engineering Valencia, September 8th-11th, Moving mesh generation strategy for solving an injector internal flow problem, Mathematical Models in Medicine, Business & Engineering Valencia, September 8th-11th, Reynolds number effects in the Reynolds stress statistics and balances, WALLTURB (European Synergy for the Assessment of Wall Turbulence) - 18 month meeting, Munich October Channel 2000: A highly parallel algorithm for computing wall turbulence using 2K processors, DEISA (Distributed European Infrastructure for Supercomputing Applications ) Training Session, Paris July 3-5, Computing wall turbulence at experimental Reynolds Numbers, DEISA symposium, Bologna, Italy, 4-5 May, Large-box DNS of a turbulent channel at Re τ 2000, APS Division of Fluid Dynamics 58th Annual Meeting (DFD05), Chicago, USA, DNS in Turbulent channels using up to 2100 processors, CEDYA XIX, Leganés, Spain, Influence Rayleigh and Marangoni numbers in Thermal convection in a cylindrical annulus, International Marangoni association, IMA-2, Brussels, A Runge-Kutta solver for convection problems, I jornada sobre inestabilidades hidrodinã micas, Ciudad Real, Spain, Influence of Aspect Ratio in Thermal Convection in a Cylindrical Annulus, 13th Taylor-Couette Workshop, Barcelona, Spain, Codimension two bifurcations un a Bénard-Marangoni problem, XVIII CEDYA/VIII CMA, Tarragona, Spain, Bifurcation diversity in thermocapillary layers, Eleventh Annual Conference of the CFD Society of Canada (CFD03), Vancouver, Canada, Influence of aspect ratio in dynamic thermocapillary layers, Nonlinear waves 2002, Spain, Thermal convection in a cylindrical annulus. A numerical approach, Non-equilibrium phenomena and phase transitions in complex systems Avila, Spain, A model of convection in cylindrical geometry, No lineal 2002, Spain, Codimension-two bifurcations in laterally heated convection, No lineal 2002, Spain, A numerical study of a convective problem in cylindrical geometry, CEDYA XVII, Salamanca, Spain, Nonlinear plane waves in a convection model, CEDYA XVII, Salamanca, Spain, Original formulation for convective problems in cylindrical domains, ICFD Conference on Numerical Methods for Fluid Dynamics, Oxford, UK,

8 26. Thermal convection in a cylindrical annulus heated laterally, ICOSAHOM 01, Uppsala, Sweden, Numerical model for Thermal convection in a cylindrical annulus heated laterally, Nonlinear waves, Ciudad Real, Spain, Heat transfer by convection in a non convex domain, No Lineal 2000, Almagro, Spain, Theses directed 1. Dung Anh-Khuong (PhD), CMT-Motores Térmicos, Valencia, 14/09/12 The Eulerian- Lagrangian Spray Atomization (ELSA) Model of the Jet Atomization in CFD Simulations: Evaluation and Validation. 2. J. Mompó-Laborda (PhD), CMT-Motores Térmicos, Valencia 22/04/12, Cum Laude, LES modelling of Diesel-like sprays. 3. Ignacio Delgado de Molina, 26/07/2013 Estudio cfd del flujo de entrada a los compresores en el nuevo ecs eléctrico para aeronaves business 4. Diego Devis, (MSc) CMT-Motores Térmicos, 07/03/13, Computational structural mechanics: from aeronautics to superelasticity 5. S. Zafón, (MSc) CMT-Motores Térmicos, 14/09/12, Análisis del fenómeno del levantamiento del balasto en trenes de alta velocidad 6. D. Merayo, (MSc) CMT-Motores Térmicos, 14/09/12,Herramientas cuda para la simulación de flujo turbulento 7. C. Peris, (MSc), CMT-Motores Térmicos, 20/06/12,Optimización del perfil alar supercrítico para un avión en configuración Joined wings mediante CFD 8. I. Robles, (MSc), CMT-Motores Térmicos, 28/03/12, Characterization of testing conditions for re-entry aerospace vehicles. 9. C. Furquet, (MSc), CMT-Motores Térmicos, 29/09/11, Análisis CFD de los Fenómenos de histéresis en toberas de motores cohete. 10. A. Alemany, (MSc), CMT-Motores Térmicos, 07/29/11, Caracterización Aerodinámica De Alas En Configuración Joined Wing Mediante CFD. 11. D. García, (MSc), CMT-Motores Térmicos, 07/22/11, Técnicas De Parametrización Automáticas En Estudios Cfp Con Transferencia De Calor. 12. A. Sanz, (MSc), CMT-Motores Térmicos, 13/07/11, Análisis Numérico Del Comportamiento Aerodinámico Del Taronjet Con Openfoam. 13. JPG Galache, (MSc) CMT-Motores Térmicos, Von Karman Institute, 12/21/10, Novel Heat Transfer Evaluation In Turbomachuinery Applications. 14. A. Llavador, (MSc) CMT-Motores Térmicos, 07/26/10, Estudio De Las Caracteristicas del flujo en la cámara de medidas del túnel de viento subsónico de la ETSID mediante cálculo CFD. 15. R. San Martin, (MSc) Department of Informatics, 09/10/2008, Universitat de València, A Supercomputer network checking algorithm. August 25,

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