Discusión:Antonio Castellanos Mata

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OBRAS[editar]

ESTE ARTÍCULO ES UNA TRADUCCIÓN DE LA WIKIPEDIA EN INLÉS, AGRADECERÍA LA TRADUCCIÓN DE ESTA SECCIÓN DEL ORIGINAL, PUESTO QUE NO TENGO EL NIVEL NECESARIO PARA HACERLO:


  1. A. Castellanos, P. Atten, M. G. Velarde. Oscillatory and steady convection in dielectric liquid layers subjected to unipolar injection and temperature gradient. Physics of Fluids, vol. 27, pp. 1607–1615, 1984.[1]
  2. A. Castellanos, P. Atten. Numerical modeling of finite amplitude convection of liquids subjected to unipolar injection. IEEE Transactions on Industry Applications, vol. 23, no. 5, 825–830, 1987.[2]
  3. A. Castellanos. Coulomb-driven convection in electrohydrodynamics. IEEE Transactions on Electrical Insulation, vol. 26, pp. 1201–1215, 1991.[3]
  4. A. Castellanos, H. González. Stability of inviscid conducting liquid columns subjected to A.C. axial magnetic fields. Journal of Fluid Mechanics, vol. 265, pp. 245–263, 1994.[4]
  5. P. A. Vázquez, A. T. Pérez, and A. Castellanos, “Thermal and electrohydrodynamic plumes. A comparative study,” Physics of Fluids, vol. 8, no. 8, p. 2091, 1996[5]
  6. A. Castellanos, A. González. Nonlinear electrohydrodynamics of free surfaces. IEEE Transactions on Dielectrics and Electrical Insulation, vol. 5, pp. 334–343, 1998.[6]
  7. A. Ramos, H. Morgan, N. G. Green, A. Castellanos. AC electrokinetics: a review of forces in microelectrode structures. Journal of Physics D: Applied Physics, vol. 31, no. 18, p. 2338–2353, 1998.[7]
  8. A. Castellanos. Basic concepts and equations in electrohydrodynamics (Chapters 1–4). In: A. Castellanos (editor), Electrohydrodynamics, Springer Verlag, Wien – New York, 1998 (ISBN 3-211-83137-1).[8]
  9. A. Castellanos, J. M. Valverde, A. T. Pérez, A. Ramos, P. Keith Watson. Flow regime boundaries in fine cohesive powders. Physical Review Letters, vol. 82, pp. 1156–1159, 1999.[9]
  10. A. Castellanos. Entropy production and the temperature equation in electrohydrodynamics. IEEE Transactions on Dielectrics and Electrical Insulation, vol. 10, pp. 22–26, 2003.[10]
  11. A. Castellanos, A. Ramos, A. González, N. G. Green, H. Morgan. Electrohydrodynamics and dielectrophoresis in microsystems: scaling laws. Journal of Physics D: Applied Physics, vol. 36, pp. 2584–2597, 2003.[11]
  12. A. Castellanos. The relationship between attractive interparticle forces and bulk behaviour in dry and uncharged fine powders. Advances in Physics, vol. 54, no. 4, pp. 263–376, 2005.[12]
  13. A. Castellanos, A. T. Pérez. Electrohydrodynamic systems. In: Springer Handbook of Experimental Fluid Mechanics, pp. 1317–1333. Springer, Berlin–Heidelberg, 2007.[13]
  14. A. Castellanos, A. Ramos, J. M. Valverde. Device and method for measuring cohesion in fine granular media ( Patent PCT/ES98/00325. 1997. Publication: 2000. Organization: University of Seville)[14]
  15. A. Castellanos, M. A. S. Quintanilla, J. M. Valverde. Method and device for measuring the angle of friction and the cohesion of granular media (N P200502533. 11-10-2005 N. International Patent PCT/ WO2007042585A3. Publication: 2007. University of Seville)[15]

LOGROS EN INGLES EN EL ORIGINAL[editar]

Galilean limits of electromagnetism. Temperature equation and entropy production in electrohydrodynamics. Self-similar solution for two-dimensional and axisymmetric plumes. Seminal works on numerical simulation of electrohydrodynamic flows. Physical mechanism of electrothermohydrodynamic instabilities. Energy cascade in electrohydrodynamic turbulence. Stabilization of dielectric liquid bridges by ac electric fields. Theory of AC electroosmosis and electrothermal flows in microsystems. Absence of inertial regimes in fine powders. Model of elastoplastic contact between two powder particles. Microstructure characterization of fluidized bed of fine particles: aggregation, solidlike-fluidlike transition, fluctuations, influence of electromagnetic fields.

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  1. Castellanos, A.; Atten, P.; Velarde, M. G. (1 July 1984). Oscillatory and steady convection in dielectric liquid layers subjected to unipolar injection and temperature gradient 27 (7). pp. 1607-1615. doi:10.1063/1.864816 – via scitation.aip.org. 
  2. Castellanos, A.; Atten, P. (1 September 1987). Numerical Modeling of Finite Amplitude Convection of Liquids Subjected to Unipolar Injection. IA-23 (5). pp. 825-830. doi:10.1109/TIA.1987.4504990 – via IEEE Xplore. 
  3. Castellanos, A. (1 December 1991). Coulomb-driven convection in electrohydrodynamics 26 (6). pp. 1201-1215. doi:10.1109/14.108160 – via IEEE Xplore. 
  4. Castellanos, Antonio; GonzÁalez, Heliodoro (1 April 1994). Stability of inviscid conducting liquid columns subjected to a.c. axial magnetic fields (265). pp. 245-263. doi:10.1017/S0022112094000820 – via Cambridge Journals Online. 
  5. Vázquez, P. A.; Pérez, A. T.; Castellanos, A. (1 August 1996). Thermal and electrohydrodynamic plumes. A comparative study 8 (8). pp. 2091-2096. doi:10.1063/1.868983 – via scitation.aip.org. 
  6. Castellanos, A.; Gonzalez, A. (1 June 1998). Nonlinear electrohydrodynamics of free surfaces 5 (3). pp. 334-343. doi:10.1109/94.689422 – via IEEE Xplore. 
  7. Ramos, A.; Morgan, H.; Green, N. G.; Castellanos, A. (1 January 1998). «Ac electrokinetics: a review of forces in microelectrode structures». J. Phys. D: Appl. Phys. 31 (18): 2338. doi:10.1088/0022-3727/31/18/021 – via Institute of Physics. 
  8. Electrohydrodynamics, A. Castellanos, Ed., . Springer-Verlag, 1998
  9. Castellanos, Antonio; Valverde, José Manuel; Pérez, Alberto T.; Ramos, Antonio; Watson, P. Keith (8 February 1999). «Flow Regimes in Fine Cohesive Powders». Phys. Rev. Lett. 82 (6): 1156-1159. doi:10.1103/PhysRevLett.82.1156 – via APS. 
  10. Castellanos, A. (1 February 2003). Entropy production and the temperature equation in electrohydrodynamics 10 (1). pp. 22-26. doi:10.1109/TDEI.2003.1176553 – via IEEE Xplore. 
  11. Castellanos, A.; Ramos, A.; González, A.; Green, N. G.; Morgan, H. (1 January 2003). «Electrohydrodynamics and dielectrophoresis in microsystems: scaling laws». J. Phys. D: Appl. Phys. 36 (20): 2584. doi:10.1088/0022-3727/36/20/023 – via Institute of Physics. 
  12. Castellanos, A. (1 June 2005). The relationship between attractive interparticle forces and bulk behaviour in dry and uncharged fine powders 54 (4). pp. 263-376. doi:10.1080/17461390500402657 – via Taylor and Francis+NEJM. 
  13. Tropea, Yarin, Foss (Ed.) Springer Handbook of Experimental Fluid Mechanics, Vol. 1, Springer
  14. «Device and method for measuring cohesion in fine granular media». 
  15. «Method and device for measuring the angle of friction and the cohesion of granular media».