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Auswahl der wissenschaftlichen Literatur zum Thema „Conductivité thermique – Modèles mathématiques“
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Zeitschriftenartikel zum Thema "Conductivité thermique – Modèles mathématiques"
Helson, Olivier, Javad Eslami, Anne-Lise Beaucour, Albert Noumowe und Philippe Gotteland. „Étude parametrique de matériaux modèles : aide au dimensionnement des ouvrages souterrains issus de mélanges sol-ciment“. Revue Française de Géotechnique, Nr. 162 (2020): 2. http://dx.doi.org/10.1051/geotech/2020004.
Der volle Inhalt der QuelleBournet, P. E., D. Dartus, B. Tassin und B. Vincon-Leite. „Ondes internes du lac du Bourget: analyse des observations par des modèles linéaires“. Revue des sciences de l'eau 9, Nr. 2 (12.04.2005): 247–66. http://dx.doi.org/10.7202/705252ar.
Der volle Inhalt der QuelleTidjani, A. E. B., D. Yebdri, J. C. Roth und Z. Derriche. „Exploration des séries chronologiques d’analyse de la qualité des eaux de surface dans le bassin de la Tafna (Algérie)“. Revue des sciences de l'eau 19, Nr. 4 (17.01.2007): 315–24. http://dx.doi.org/10.7202/014418ar.
Der volle Inhalt der QuelleNabeneza, Serge, Vincent Porphyre und Fabrice Davrieux. „Caractérisation des miels de l’océan Indien par spectrométrie proche infrarouge : étude de faisabilité“. Revue d’élevage et de médecine vétérinaire des pays tropicaux 67, Nr. 3 (27.06.2015): 130. http://dx.doi.org/10.19182/remvt.10181.
Der volle Inhalt der QuelleBenhamou, Amina, Mohamed Kouhila, Belkacem Zeghmati und Boumedienne Benyoucef. „Modélisation des isothermes de sorption des feuilles de marjolaine“. Journal of Renewable Energies 13, Nr. 2 (25.10.2023). http://dx.doi.org/10.54966/jreen.v13i2.192.
Der volle Inhalt der QuelleDissertationen zum Thema "Conductivité thermique – Modèles mathématiques"
Vidalain, Guillaume. „Modélisation des phénomènes convectifs lors du changement de phase solide-liquide par utilisation de l'équation de diffusion de la chaleur et d'une forme modifiée de la conductivité“. Thesis, Université Laval, 2007. http://www.theses.ulaval.ca/2007/24407/24407.pdf.
Der volle Inhalt der QuelleDallaire, Jonathan. „Thermal conductivity of carbon nanotubes from equilibrium molecular dynamics simulations : sensitivity to modeling and simulation parameters“. Thesis, Université Laval, 2012. http://www.theses.ulaval.ca/2012/29017/29017.pdf.
Der volle Inhalt der QuelleRobert, Félix. „Optimisation techno-économique d'un champ d'échangeurs géothermiques verticaux“. Thesis, Université Laval, 2013. http://www.theses.ulaval.ca/2013/30095/30095.pdf.
Der volle Inhalt der QuelleThis master thesis presents the method used and the optimization results for a ground coupled heat exchangers borefield. The content is divided into two papers submitted for publication to scientific journals. The first paper reports a study on soil stratigraphy impact on performance evaluation for a geothermal heat pump. The study reveals that the results obtained from simulation predict the same energy consumption of heat pump system for stratified soil and for homogenous soil defined by an average thermal conductivity. It confirms the assumption that a ground coupled heat exchanger system can be modeled using an average value of thermal conductivity. The second paper presents an optimization method of geothermal borefield design to minimize the cost of the system. Results show that number of boreholes in the grid, and their depth, are two influential parameters having strong effect on total cost.
Le, Coroller Hervé. „Effet de la conductivité thermique sur la structure des ondes de choc radiatives : étude de la pulsation de deux étoiles super-géantes froides HD 56126 et HD 179821“. Aix-Marseille 1, 2002. http://www.theses.fr/2002AIX11028.
Der volle Inhalt der QuelleBonev, Plamen. „Thermal conductivity of mixed oxide fuel (MOX) : effect of temperature, elementary chemical composition, microstructure and burn-up in reactor“. Electronic Thesis or Diss., Université de Lorraine, 2023. http://www.theses.fr/2023LORR0367.
Der volle Inhalt der QuelleMixed oxide fuel (MOX) is the nuclear fuel, used in fourth generation reactors, also called fast neutron reactors (FNR). Those reactors operate at very high temperatures (between 1500 and 2500 K). Thermal conductivity is therefore an essential material property to reactor safety. In fast reactor operating conditions, MOX is not only subject to high temperatures, but also to local changes in chemical composition and microstructure, which can have great impact on thermal conductivity. The effect of plutonium content is of particular interest for FNR applications, not only due to its local changes during irradiation, but also because fast reactors can be used to recycle plutonium. Thermal conductivity models should therefore be predictive in a wide range of plutonium contents. Most modeling approaches are semi-empirical in their temperature-dependency description of thermal conductivity, and are purely empirical in terms of plutonium and oxygen content-dependency. Those approaches are therefore limited by the number of available experimental data, especially concerning high temperatures (above 2000 K) and high plutonium contents (above 30 at. % ). The extrapolation of those models beyond their experimental range of validity can therefore lead to high modeling uncertainties. To address this problem, we propose in this work a model built on physical foundations. This model is based on a theoretical assessment of the contribution to thermal conductivity of each of the three (quasi)particles responsible for heat transport in oxide fuels: phonons, polarons and photons. The effect of temperature, plutonium and oxygen content on thermal conductivity is therefore clearly identified. Plutonium-oxygen content correlated effects were in particular observed, which do not appear in empirical approaches. This work also allowed to improve the understanding of irradiation-induced effects on thermal conductivity in FNR irradiation conditions. The model, proposed in this work was compared to the most up-to-date experimental data on thermal conductivity of MOX fuels, counting a total of 6619 experimental points, originated from different institutions: CEA, European projects, IAEA, OECD. Experimental data confirmed the effect of plutonium content, predicted in this work and in particular provided an experimental evidence for the plutonium-oxygen content correlated effects. The model was implemented into the CEA fuel performance code GERMINAL, from the simulation software platform PLEAIDES, to simulate the fuel behavior during the INTA-2 irradiation experiment. The predicted fuel temperature was compared to thermocouple measurements and showed good consistency, highlighting the adequate use of our model in fuel performance codes
Déchoux, Véronique. „Utilisation du fluage dans une modélisation du manteau sub océanique“. Nancy 1, 1987. http://www.theses.fr/1987NAN10331.
Der volle Inhalt der QuelleAbdallah, Ghassan. „La convection thermique dans les milieux fracturés : modélisation avec la méthode des éléments distincts“. Vandoeuvre-les-Nancy, INPL, 1994. http://www.theses.fr/1994INPL126N.
Der volle Inhalt der QuelleHaras, Maciej. „Thermoélectricité non-conventionnelle basée sur les technologies silicium en film minces“. Thesis, Lille 1, 2016. http://www.theses.fr/2016LIL10006/document.
Der volle Inhalt der QuelleThermoelectricity converts heat into electric energy in a silent, direct, vibrationless and reliable way. In light of limited reserves in fossil fuels, increasing greenhouse effect and constantly rising worldwide demand in energy, recovering heat losses can be a solution. Good thermoelectric material integrates antagonistic properties: high crystal-like electrical (σ) and low glass-like thermal (κ) conductivities. Conventional thermoelectricity uses materials that are harmful, complex, expensive and incompatible with mainstream fabrication technologies e.g. CMOS making thermoelectricity unpopular. In constrast, CMOS materials, namely Silicon (Si), Germanium (Ge) and Silicon-Germanium (SixGe1-x), are simple, easy-to-get, cheap and industrially compatible offering a high electrical conductivity (σ). However, their usage in thermoelectricity is hindered due to a prohibitive thermal conductivity (κ). Recent progress in nano- and micro-fabrication opened new possibilities to reduce κ with minor impact on σ. This opportunity enables fabrication of CMOS compatible ThermoElectric Generators (TEGs) enabling massive production and cost reduction which can significantly popularize TEGs on the market. Our modelling approach place Si, Ge and SixGe1-x in a competitive position compared with conventional thermoelectrics providing that their high bulk κ can be substantially reduced. Within the framework of this thesis, a 3-fold size induced κ reduction in Si is experimentally obtained based on a micrometer measurement platform that has been designed, fabricated and characterized in this work
Chahlafi, Miloud. „Modélisation du rayonnement thermique dans un coeur de réacteur nucléaire dégradé en présence de vapeur et de gouttes d'eau“. Phd thesis, Ecole Centrale Paris, 2011. http://tel.archives-ouvertes.fr/tel-00649477.
Der volle Inhalt der QuelleSimon, Nataline. „Développement des méthodes actives de mesures distribuées de température par fibre optique pour la quantification des écoulements souterrains : apports et limites pour la caractérisation des échanges nappe/rivière“. Thesis, Rennes 1, 2020. http://www.theses.fr/2020REN1B028.
Der volle Inhalt der QuelleGroundwater/surface water interactions play a fundamental role in the functioning of aquatic ecosystems. However, their quantification is challenging because exchange processes vary both in time and space. Here, we propose an active distributed heat transport experiment in order to quantify the spatial and temporal variability of groundwater/surface water interactions. As a first step, we proposed a new approach to evaluate the spatial resolution of temperature measurements. Then, two interpretation methods of active-DTS experiments were developed and fully validated to estimate the distribution of porous media thermal conductivity and the groundwater fluxes in sediments. Based on numerical simulations and sandbox experiments, results demonstrated the potentiality of these methods for quantifying distributed groundwater fluxes with high accuracy. The large range of groundwater fluxes that can be investigated with the method makes specially promising the application of active experiments for many subsurface applications. Secondly, we conducted heat transport experiments within the streambed sediments of two different streams: in a first-order stream, then in a large flow-system located along an alluvial plain. These applications demonstrated the relevance of using active experiments to characterize the spatial complexity of stream exchanges. Finally, the comparison of results obtained for each experimental site allowed discussing the capabilities and limitations of using active-DTS field experiments to characterize groundwater/surface water interactions in different hydrological contexts
Bücher zum Thema "Conductivité thermique – Modèles mathématiques"
Eurotherm seminar (53 1997-10 Mons, Belgique). Advanced concepts and techniques in thermal modelling: Proceedings of the Eurotherm seminar 53, October 8-10, 1997, Mons, Belgium. Paris: Elsevier, 1998.
Den vollen Inhalt der Quelle findenHakan, Gür Cemil, und Pan Jiansheng, Hrsg. Handbook of thermal process modeling of steels. Boca Raton: Taylor & Francis, 2009.
Den vollen Inhalt der Quelle findenKecman, V. State-space models of lumped and distributed systems. Berlin: Springer-Verlag, 1988.
Den vollen Inhalt der Quelle findenNumerical Simulation of the Heat Conductivity of Randomly Inhomogeneous Two-Dimensional Composite Materials. Nova Science Publishers, Incorporated, 2019.
Den vollen Inhalt der Quelle findenGur, Cemil Hakan, und Jiansheng Pan. Handbook of Thermal Process Modeling of Steels. Taylor & Francis Group, 2009.
Den vollen Inhalt der Quelle findenHandbook of Thermal Process Modeling of Steels. CRC, 2008.
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