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Academic literature on the topic 'Coefficient d'échange thermique'
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Journal articles on the topic "Coefficient d'échange thermique"
Ramond, Laurianne, Jean-Christophe Batsale, and Claire Gobbé. "Mesure de coefficient d'échange thermique en milieux hétérogènes par thermographie infrarouge application d'un modèle à deux températures." International Journal of Thermal Sciences 38, no. 3 (March 1999): 250–57. http://dx.doi.org/10.1016/s1290-0729(99)80088-x.
Full textNicolas, J., and J. L. Vasel. "Modélisation des échanges thermiques et de la circulation d'air dans un lit bactérien." Revue des sciences de l'eau 3, no. 3 (April 12, 2005): 303–24. http://dx.doi.org/10.7202/705077ar.
Full textDissertations / Theses on the topic "Coefficient d'échange thermique"
Stoian, Monica. "Couplage thermique convection - conduction en régime non stationnaire." Reims, 2006. http://www.theses.fr/2006REIMS029.
Full textThis study presents a robust physical and mathematical model to describe the heat transfer mechanism in transient forced convection for a laminar boundary layer upon flate plate. Our contribution to this study was to accurately approximate the exact value of the convective coefficient in heat transfer kinetically considering the conductive-convective coupling, from a theoretical and experimental point of view. Numerical modelling of the convective-conductive coupling problem in transient regime is rendered using the numerical method of finite volumes. The doublechecking of the resulting numerical values was done by comparing with the numerical results obtained by means of FLUENT. We also compared our numericals results with experimental results using the impulsed photo-thermal method (infrared). One experimental part of great novelty was added to the original plan of the present thesis. It refers to the velocity measurement by a hot wire anemometer in a dynamic boundary layer over a vertical flat plate in the laminar flow uniformly developed. We ourselves created a hot wire anemometer into a new measurement configuration using alternative current and synchronous detection (Wheatstone). In a steady state, our results verified experimental data with 3% errors which validates our theoretical model designed to calculate velocities
Cressin, Maxime. "Contribution au développement d'un modèle thermomécanique de mise en forme du verre par le procédé soufflé-soufflé incluant les effets radiatifs." Electronic Thesis or Diss., Valenciennes, Université Polytechnique Hauts-de-France, 2023. http://www.theses.fr/2023UPHF0023.
Full textThis thesis deals with the numerical modeling of glass forming by the blow and blow process, allowing the glass forming of glass in two blowing steps. The bibliographic study has shown that in order to efficiently simulate this process, it is necessary to take two important parameters into account: the thermal radiation of the glass and the thermal exchange between the glass and the tools. This thermal exchange is represented by the experimentally identified heat transfer coefficient hc. A 1D numerical thermal model taking the radiative effects into account has been developed to simulate the contact between a metal punch and a glass cylinder. This model was coupled with an inverse identification methodology to determine hc from experimental data. The influence of the glass temperature, of the thermocouple position and of the radiation on the identification of hc has been studied. The originality of this work concerns the inclusion of radiation in the identification of hc as well as the use of the Back Ray Tracing (BRT) method to solve the radiative transfer equation (RTE) in 2D axisymmetric. The code is coupled with the Abaqus/Standard software to take the radiation of the glass into account in the simulation of the forming process. Finally, a thermomechanical finite element model has been implemented in Abaqus/Standard in order to simulate the 2D axisymmetric blow and blow process of a standard glass bottle. A discussion is made on the contribution of the experimentally identified heat transfer coefficient and the radiation model on the formability of the bottle
Massaad, André. "Détermination de coefficients d'échange thermique par une méthode impulsionnelle." Lyon 1, 1985. http://www.theses.fr/1985LYO19040.
Full textDoumenc, Frédéric. "Coefficients d'échange thermique superficiel : détermination par méthodes inverses en conduction bidimensionnelle transitoire." Lyon, INSA, 1993. http://www.theses.fr/1993ISAL0020.
Full textThis work concerns the cooling by compressed air flow of the plungers used in the glass forming processes. The bad control of the plunger temperature leads to an increase of the fabrication default. Thus the objective of the study is to develop a thermal model which will allow the calculation of the plunger temperature field and which-will be used to optimize the cooling system configuration. In a first stage, the temperature field in the plunger/glass/mold system is determined with a on dimensional model. The radiation in the glass is treated with the discrete ordinate method and the model takes into account the different steps of forming cycle. This simplified model is used tio better understand the dehavior of the heat transfer in the plunger/glass/mold system and to determine the parameter that must be known accurately. The boundary conditions at the plunger/glass interface and at the inner surface cooled by air must be known accuraltely ti determine the plunger temperature. Two experimental set-up have been realized to determine by inverse heat conduction methods thes unknown boundary condition. The heat transfer coefficient between the plunger and the galss and between the plunger and the air are shown and examined for different experimental situations. The two dimensional thermal model solved with the finite elements technique is then described. Based on the boundary conditions determined experimentally, an example of the plunger temperature field during a glass forming cycle is given
Bykalyuk, Anna. "Contribution à l'étude des échanges convectifs à l'interface fluide paroi en présence de matériaux à changement de phase : Application au bâtiment." Thesis, Lyon, INSA, 2014. http://www.theses.fr/2014ISAL0132/document.
Full textRecent experimental studies have shown that the usual values of the convective heat transfer coefficient h are no longer valid in the presence of phase change materials. Three separate models were developed. Initially a model 1 which treats the fluid-wall (constant temperature) interaction in steady laminar flow has been developed and validated. Then, the wall with heat capacity (model 2) subjected to an air temperature ramp were studied. Finally, a third model (3) has been developed which treats the interaction fluid-wall which contains a phase change material. The results show local peaks of heat flow over time. This fact reflects the phase change inside the wall. Moreover, the curves of the convective heat transfer coefficient indicate the dependence of the coefficient h to the wall’s energy storage capacity. Therefore, the presence of the phase change materials within a wall effect and changes the shape of the thermal boundary layer
Idris, Jasem. "Etude des capteurs solaires en régime transitoire et présentation d'une nouvelle méthode calorimétrique transitoire pour estimer le coefficient d'échange global des échangeurs thermiques." Lyon 1, 1988. http://www.theses.fr/1988LYO10547.
Full textPlanchette, Anne. "Contribution à l'étude des écoulements verticaux d'azote diphasique dans les canaux rectangulaires des vaporiseurs industriels." Paris 6, 2006. http://www.theses.fr/2006PA066125.
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