Serafim Kalliadasis

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Serafim Kalliadasis
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EducationPhD
Alma mater
  • Aristotle University of Thessaloniki
  • University of Notre Dame
Occupation
  • Professor
  • Mathematician
  • Chemical Engineer

Serafim Kalliadasis is an Applied Mathematician and Chemical Engineer working at Imperial College London since 2004[1].

Career

Serafim Kalliadasis did a 5 years undergraduate degree in Chemical Engineering at the Polytechnic School of the Aristotle University of Thessaloniki, Greece. He graduated in 1989 with the highest mark amongst all Engineering students of the University.

In 1990 he started his PhD studies at the University of Notre Dame, USA. His doctoral thesis was in the general of fluid dynamics and was supervised by Prof. H.-C. Chang.

Following the successful completion of his PhD in 1994 he moved on to the University of Bristol, [2] UK, as post-doctoral fellow in applied mathematics.

In 1995 he took up his first academic position at the Chemical Engineering Department of the University of Leeds, UK. In 2004 he was appointed to Readership in Fluid Mechanics at Department of Chemical Engineering, Imperial College, UK, in 2004 and was promoted to Professor in Engineering Science & Applied Mathematics at Imperial College in 2010.

Research

Serafim Kalliadasis' expertise is in the interface between Applied and Computational Mathematics, Complex Systems and Engineering, covering both fundamentals and applications. He leads the Complex Multiscale Systems Group of Imperial College London[3].

Distinctions

  • 2019, IOP Fellow[1]
  • 2010-2016, ERC Frontier Research Advanced Investigator Grant holder.[1]
  • 2009, Corporate Member and Fellow of IChemE[1]
  • 2004-2009, EPSRC Advanced Fellowship[4]

Selected publications

  1. Carrillo, J.A., Kalliadasis, S., Perez, S.P. & Shu, C.-W. 2020 “Well-balanced finite-volume schemes for hydrodynamic equations with general free energy,” SIAM Multiscale Model. Sim. 18 502-541[5]
  2. Gomes, S.N., Kalliadasis, S., Pavliotis, G.A. & Yatsyshin, P. 2019 “Dynamics of the Desai-Zwanzig model in multiwell and random energy landscapes,” Phys. Rev. E 99 Art. No. 032109 (13 pp)[6]
  3. Schmuck, M., Pavliotis, G.A. & Kalliadasis, S. 2019 “Recent advances in the evolution of interfaces: thermodynamics, upscaling, and universality,” Comp. Mater. Sci. 156 441-451 (Special issue following Euromat2017 conference)
  4. Yatsyshin, P., Parry, A.O., Rascón, C. & Kalliadasis, S. 2018 ``Wetting of a plane with a narrow solvophobic stripe,” Mol. Phys. 116 1990-1997 (Special issue following Thermodynamics 2017 conference)[7]
  5. Yatsyshin, P., Durán-Olivencia, M.A. & Kalliadasis, S. 2018 “Microscopic aspects of wetting using classical density functional theory,” J. Phys.-Condens. Matt. 30 Art. No. 274003 (9 pp) (Invited paper--special issue on “Physics of Intergated Microfluidics”)[8]
  6. Dallaston, M.C., Fontelos, M.A., Tseluiko, D. & Kalliadasis S. 2018 “Discrete self-similarity in interfacial hydrodynamics and the formation of iterated structures,” Phys. Rev. Lett. 120} Art. No. 034505 (5 pp)[9]
  7. Braga, C., Smith, E.R., Nold, A., Sibley, D.N. & Kalliadasis, S. 2018 “The pressure tensor across a liquid-vapour interface,” J. Chem. Phys. 149 Art. No. 044705 (8 pp)[10]
  8. Schmuck, M. & Kalliadasis, S. 2017 “Rate of convergence of general phase field equations in strongly heterogeneous media towards their homogenized limit,” SIAM J. Appl. Math. 77 1471-1492.[11]
  9. Nold, A., Goddard, B.D., Yatsyshin, P., Savva, N. & Kalliadasis, S. 2017 “Pseudospectral methods for density functional theory in bounded and unbounded domains,” J. Comp. Phys. 334 639-664[12]
  10. Durán-Olivencia, M.A., Yatsyshin, P., Goddard, B.D. & Kalliadasis, S. 2017 “General framework for fluctuating dynamic density functional theory,” New J. Phys. 19 Art. No. 123022 (16 pp)[13]

References

  1. 1.0 1.1 1.2 1.3 "Home - Professor Serafim Kalliadasis". www.imperial.ac.uk.
  2. https://www.bristol.ac.uk/
  3. Complex Multiscale Systems Imperial College London
  4. "ERC 10th AnniversaryEvent" (PDF).
  5. Carrillo, José A.; Kalliadasis, Serafim; Perez, Sergio P.; Shu, Chi-Wang (January 1, 2020). "Well-Balanced Finite-Volume Schemes for Hydrodynamic Equations with General Free Energy". Multiscale Modeling & Simulation. 18 (1): 502–541. doi:10.1137/18M1230050 – via epubs.siam.org (Atypon).
  6. Gomes, Susana N.; Kalliadasis, Serafim; Pavliotis, Grigorios A.; Yatsyshin, Petr (March 6, 2019). "Dynamics of the Desai-Zwanzig model in multiwell and random energy landscapes". Physical Review E. 99 (3): 032109. doi:10.1103/PhysRevE.99.032109 – via APS.
  7. Yatsyshin, P.; Parry, A. O.; Rascón, C.; Kalliadasis, S. (August 18, 2018). "Wetting of a plane with a narrow solvophobic stripe". Molecular Physics. 116 (15–16): 1990–1997. doi:10.1080/00268976.2018.1473648 – via Taylor and Francis+NEJM.
  8. Yatsyshin, P., Durán-Olivencia, M.A. & Kalliadasis, S. 2018 “Microscopic aspects of wetting using classical density functional theory,” J. Phys.-Condens. Matt. 30 Art. No. 274003 (9 pp) (Invited paper--special issue on “Physics of Intergated Microfluidics”)
  9. Dallaston, Michael C.; Fontelos, Marco A.; Tseluiko, Dmitri; Kalliadasis, Serafim (January 19, 2018). "Discrete Self-Similarity in Interfacial Hydrodynamics and the Formation of Iterated Structures". Physical Review Letters. 120 (3): 034505. doi:10.1103/PhysRevLett.120.034505 – via APS.
  10. Braga, Carlos; Smith, Edward R.; Nold, Andreas; Sibley, David N.; Kalliadasis, Serafim (July 28, 2018). "The pressure tensor across a liquid-vapour interface". The Journal of Chemical Physics. 149 (4): 044705. doi:10.1063/1.5020991 – via aip.scitation.org (Atypon).
  11. Schmuck, M.; Kalliadasis, S. (January 1, 2017). "Rate of Convergence of General Phase Field Equations in Strongly Heterogeneous Media Toward Their Homogenized Limit". SIAM Journal on Applied Mathematics. 77 (4): 1471–1492. doi:10.1137/16M1079646 – via epubs.siam.org (Atypon).
  12. Nold, Andreas; Goddard, Benjamin D.; Yatsyshin, Peter; Savva, Nikos; Kalliadasis, Serafim (April 1, 2017). "Pseudospectral methods for density functional theory in bounded and unbounded domains". Journal of Computational Physics. 334: 639–664. doi:10.1016/j.jcp.2016.12.023 – via ScienceDirect.
  13. "ShieldSquare Captcha". hkvalidate.perfdrive.com. doi:10.1088/1367-2630/aa9041/meta.

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