983 resultados para Énergie de fonctionnement


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Problèmes d'approvisionnement et de consommation d'énergie, de démographie et d’urbanisation, la conservation du patrimoine bâti se trouve, en ce début de 21e siècle, face à de nombreux défis. Cela d'autant plus que la façon de percevoir le patrimoine bâti a considérablement évolué depuis le début du 20e siècle (chapitre 1) changeant ainsi les raisons qui mènent à l'appropriation d'un bâtiment patrimonial. Face à l'importance accordée aujourd'hui à l'énergie en général et plus particulièrement à celle consommée par les bâtiments (chapitre 2), comment les enjeux liés à la conservation patrimoniale et ceux liés à l'énergie - via son utilisation et sa production - se confrontent-ils ? Si selon les principes du développement durable (chapitre 3) la conservation du patrimoine bâti associée à une gestion efficace de ses besoins énergétiques semble apparaître comme une évidence, qu’en est-il dans la pratique ? Comment les professionnels du patrimoine bâti intègrent-ils les aspects de l'énergie consommée par les bâtiments ? Comment envisagent-ils l'installation et l'utilisation d'énergies renouvelables dans les bâtiments patrimoniaux ? Afin de trouver des réponses issues de la réalité de la pratique patrimoniale québécoise, ce mémoire - en se limitant à des professionnels avec une formation d'architecte (chapitre 4) - cherche à évaluer, d'une part, dans quelle mesure les chartes et lois appliquées au Québec considèrent les questions énergétiques (chapitre 5) et, d'autre part, à définir l'état d'esprit avec lequel les professionnels de la conservation du patrimoine bâti au Québec approchent, dans leur pratique, les questions liées à l'énergie consommée ainsi que l'utilisation d'énergies renouvelables (chapitre 6).

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This manuscript presents three approaches : analytical, experimental and numerical, to study the behaviour of a flexible membrane tidal energy converter. This technology, developed by the EEL Energy company, is based on periodic deformations of a pre-stressed flexible structure. Energy converters, located on each side of the device, are set into motion by the wave-like motion. In the analytical model, the membrane is represented by a linear beam model at one dimension and the flow by a 3 dimensions potential fluid. The fluid forces are evaluated by the elongated body theory. Energy is dissipated all over the length of the membrane. A 20th scale experimental prototype has been designed with micro-dampers to simulate the power take-off. Trials have allowed to validate the undulating membrane energy converter concept. A numerical model has been developed. Each element of the device is represented and the energy dissipation is done by dampers element with a damping law linear to damper velocity. Comparison of the three approaches validates their ability to represent the membrane behaviour without damping. The energy dissipation applied with the analytical model is clearly different from the two other models because of the location (where the energy is dissipated) and damping law. The two others show a similar behaviour and the same order of power take off repartition but value of power take off are underestimated by the numerical model. This three approaches have allowed to put forward key-parameters on which depend the behaviour of the membrane and the parametric study highlights the complementarity and the advantage of developing three approaches in parallel to answer industrial optimization problems. To make the link between trials in flume tank and sea trials, a 1/6th prototype has been built. To do so, the change of scale was studied. The behaviour of both prototypes is compared and differences could be explained by differences of boundary conditions and confinement effects. To evaluated membrane long-term behaviour at sea, a method of ageing accelerated by temperature and fatigue tests have been carried out on prototype materials samples submerged in sea water.

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Anti-mullerian hormone, also called AMH, belongs to the large family of transforming growth factor P. Its role in the sexual differentiation of male fetus is now well known. Recently, AMH has been demonstrated to play an important role in the ovarian function. In fact, AMH seems to regulate the kinetics of follicular development, inhibiting the follicular recruitment and the follicular growth. Thus, this intra-gonadic cybernin could be a decisive determinant of the rapidity of follicular pool exhaustion. Today, some experimental data from the literature suggest that AMH could be a reliable marker of ovarian reserve. This review summarizes the present knowledge about AMH and its role in physiology but also in ovarian pathology.

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Collection : Bibliothèque scientifique internationale ; 10