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Stockage de chaleur inter-saisonnier par voie thermochimique pour le chauffage solaire de la maison individuelle

机译:跨季节热化学蓄热,用于单个房屋的太阳能采暖

摘要

The combined efforts promoting an improved insulation and a growth of renewable energies use in buildings play a key role in the road towards greenhouse gas reduction and better energy efficiency. This thesis purpose is to develop a chemicalbased thermal energy storage system devoted to solar space heating of single-family houses. A specific heat storage material has thus been created, made of zeolite and magnesium sulphate. The storage principle, based on a hybrid phenomenon between water vapour physical adsorption and chemical hydration reaction, is seasonal : during the summer, the material stores heat obtained from evacuated tube solar collectors using an endothermic dehydration reaction ; the stored heat is released by rehydration of the material during the winter to produce hot air dedicated to space heating. After a state of the art regarding thermal energy storage technologies, a preparation method is set up. Then, characterization studies of this innovative composite material have been performed, at both micro- and macroscopic scales. Thanks to the macroscopic experimental data, the system size is estimated to meet the space heating energy demand of a low energy single-family house. Afterwards, a thermochemical storage model is developed to understand the coupled heat and mass transfer occurring in the composite sorbent bed, and consequently optimize the reactor design. The model relevancy is finally discussed with respect to experimental results.
机译:促进改善建筑物的隔热性和增加可再生能源在建筑物中使用的共同努力在减少温室气体和提高能源效率的道路上起着关键作用。本文的目的是开发一种基于化学的热能存储系统,专门用于单户住宅的太阳能空间供热。这样就产生了一种特殊的储热材料,它由沸石和硫酸镁制成。基于水蒸气物理吸附和化学水化反应之间的混合现象,存储原理是季节性的:夏季,材料通过吸热脱水反应存储从真空管式太阳能集热器获得的热量;储存的热量在冬季通过材料的再水化而释放,从而产生专用于空间加热的热空气。在关于热能存储技术的现有技术之后,建立了一种制备方法。然后,已经在微观和宏观尺度上对这种创新的复合材料进行了表征研究。由于有了宏观的实验数据,估计系统的大小可以满足低能耗单户住宅的空间供暖能量需求。此后,开发了一个热化学存储模型,以了解复合吸附剂床中发生的传热和传质耦合,从而优化反应器设计。最后,针对实验结果讨论了模型的相关性。

著录项

  • 作者

    Hongois Stéphanie;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 fr
  • 中图分类

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