Stéphane Gibout

Trouver un CV

Stephane GiboutMaître de Conférences

  • Responsable parcours énergétique du bâtiment de l’ENSGTI
  • LaTEP
    Rue Jules Ferry BP 7511 64075 Pau Cedex
  • Systèmes énergétiques, Transferts thermiques, Thermodynamique, Énergies Renouvelables, Thermique du Bâtiment, Modélisation et optimisation des systèmes énergétiques, Thermoélectricité
  • stephane.gibout @ univ-pau.fr

Parcours

  • Depuis 2002 : Maître de Conférences – Université de Pau et des Pays de l’Adour (UPPA)
  • 2001 – 2002 : Attachée Temporaire de l’Enseignement (ATER) – UPPA
  • 2000 – 2001 : Ingénieur ATOS - Toulouse
  • 1997 – 2000 : Doctorant-moniteur - UPPA

Responsabilités

  • Responsable du parcours de troisième année « Énergétique du Bâtiment » à l’ENSGTI
  • Responsable des TP énergétique à l’ENSGTI
  • Membre du Conseil de l’ENSGTI

Compétences

Systèmes énergétiques, Transferts thermiques, Thermodynamique, Énergies Renouvelables, Thermique du Bâtiment, Modélisation et optimisation des systèmes énergétiques, Thermoélectricité

Thèmes de recherche

Optimisation énergétique

Projets

  • Optimisation énergétique d’enceintes de production végétales en climat froid (SEQINEQ)
  • Combined Analysis for Physical and Economical management of Energy Systems for Housings (CAPEESH)

Publications

[1] J. Castaing-Lasvignottes and S. Gibout. Dynamic simulation of reciprocating refrigeration compressors and experimental validation. International Journal of Refrigeration, 33(2):381–389, Mar 2010.

[2] J. P. Dumas, S. Gibout, P. C ́ezac, and E. Franquet. New theoretical determination of latent heats from dsc curves. Thermochimica Acta, 670:92–106, Oct 2018.

[3] J. P. Dumas, S. Gibout, P. C ́ezac, E. Franquet, and D. Haillot. Model for the dsc thermograms of the melting of ideal binary solutions. Thermochimica Acta, 571:64–76, Nov 2013.

[4] J.-P. Dumas, S. Gibout, L. Zalewski, K. Johannes, E. Franquet, S. Lassue, J.-P. B ́ed ́ecarrats, P. Tit- telein, and F. Kuznik. Interpretation of calorimetry experiments to characterise phase change materials. International Journal of Thermal Sciences, 78:48–55, Apr 2014.

[5] E. FRANQUET and S. GIBOUT. Enthalpy determination of phase change materials with differential scanning calorimetry in step-mode: errors quantifications, strengths studies and definition of experi- mental protocols through numerical analysis. Applied Energy, submitted.

[6] E. Franquet, S. Gibout, J.-P. B ́ed ́ecarrats, D. Haillot, and J.-P. Dumas. Inverse method for the identi- fication of the enthalpy of phase change materials from calorimetry experiments. Thermochimica Acta, 546:61–80, Oct 2012.

[7] E. Franquet, S. Gibout, P. Tittelein, L. Zalewski, and J.-P. Dumas. Experimental and theoretical analysis of a cement mortar containing microencapsulated pcm. Applied Thermal Engineering, 73(1):32– 40, Dec 2014.

[8] E. Franquet, V. Perrier, S. Gibout, and P. Bruel. Free underexpanded jets in a quiescent medium: A review. Progress in Aerospace Sciences, 77:25–53, Aug 2015.

[9] S. Gibout, J. Castaing-Lasvignottes, F. Strub, J. Guallar, N. Borraz, and C. Monne. Mod ́elisation en r ́egime variable d’une machine frigorifique `a absorption pour une application solaire. Revue g ́en ́erale du froid & conditionnnement d’air, pages 57–62, novembre 2005.

[10] S. Gibout, E. Franquet, W. Mar ́echal, and J.-P. Dumas. On the use of a reduced model for the simulation of melting of solutions in dsc experiments. Thermochimica Acta, 566:118–123, Aug 2013.

[11] S. Gibout, A. Jamil, T. Kousksou, Y. Z ́eraouli, and J. Castaing-Lasvignottes. Experimental determi- nation of the nucleation probability in emulsions. Thermochimica Acta, 454(1):57–63, Feb 2007.

[12] S. Gibout, Y. Le Guer, and E. Schall. Coupling of a mapping method and a genetic algorithm to opti- mize mixing efficiency in periodic chaotic flows. Communications in Nonlinear Science and Numerical Simulation, 11(3):413–423, Jun 2006.

[13] S. Gibout, W. Mar ́echal, E. Franquet, J.-P. B ́ed ́ecarrats, D. Haillot, and J.-P. Dumas. Determination of the enthalpy of phase change materials by inverse method from calorimetric experiments. applications to pure substances or binary solutions. Journal of Physics: Conference Series, 395:012135, Nov 2012.

[14] S. Gibout, M. Strub, and J. Dumas. Estimation of the nucleation probability in emulsions. International Journal of Heat and Mass Transfer, 47(1):63–74, Jan 2004.[15] D. Haillot, E. Franquet, S. Gibout, and J.-P. B ́ed ́ecarrats. Optimization of solar dhw system including pcm media. Applied Energy, 109:470–475, Sep 2013.

[16] M. Jaafar, S. Gibout, D. Rousse, and J.-P. B ́ed ́ecarrats. Numerical study of dendritic growth during solidification using front-tracking method. Journal of Physics: Conference Series, 745(3), 2016.

[17] M. A. Jaafar, D. R. Rousse, S. Gibout, and J.-P. B ́ed ́ecarrats. A review of dendritic growth during solidification: Mathematical modeling and numerical simulations. Renewable and Sustainable Energy Reviews, 74:1064–1079, Jul 2017.

[18] A. Jamil, T. Kousksou, Y. Zeraouli, S. Gibout, and J.-P. Dumas. Simulation of the thermal transfer during an eutectic melting of a binary solution. Thermochimica Acta, 441(1):30–34, Feb 2006.

[19] T. Kousksou, A. Jamil, S. Gibout, and Y. Zeraouli. Thermal analysis of phase change emulsion. Journal of Thermal Analysis and Calorimetry, 96(3):841–852, Jun 2009.

[20] F. Kuznik, K. Johannes, E. Franquet, L. Zalewski, S. Gibout, P. Tittelein, J.-P. Dumas, D. David, J.-P. B ́ed ́ecarrats, and S. Lassue. Impact of the enthalpy function on the simulation of a building with phase change material wall. Energy and Buildings, 126:220–229, Aug 2016.

[21] A. Lamalice, D. Haillot, M.-A. Lamontagne, T. M. Herrmann, S. Gibout, S. Blangy, J.-L. Martin, V. Coxam, J. Arsenault, L. Munro, and et al. Building food security in the canadian arctic through the development of sustainable community greenhouses and gardening. E ́coscience, pages 1–17, Jul 2018.

[22] G. St ́ephane, F. Erwin, B. Jean-Pierre, and D. Jean-Pierre. Comparison of different modelings of pure substances during melting in a dsc experiment. Thermochimica Acta, 528:1–8, Jan 2012.

[23] B. Stutz, N. Le Pierres, F. Kuznik, K. Johannes, E. Palomo Del Barrio, J.-P. B ́ed ́ecarrats, S. Gibout, P. Marty, L. Zalewski, J. Soto, and et al. Storage of thermal solar energy. Comptes Rendus Physique, 18(7-8):401–414, Sep 2017.

[24] P. Tittelein, S. Gibout, E. Franquet, K. Johannes, L. Zalewski, F. Kuznik, J.-P. Dumas, S. Lassue, J.-P. B ́ed ́ecarrats, and D. David. Simulation of the thermal and energy behaviour of a composite material containing encapsulated-pcm: Influence of the thermodynamical modelling. Applied Energy, 140:269–274, Feb 2015.

[25] P. Tittelein, S. Gibout, E. Franquet, L. Zalewski, and D. Defer. Identification of thermal properties and thermodynamic model for a cement mortar containing pcm by using inverse method. Energy Procedia, 78:1696–1701, Nov 2015.