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NEW MODELING APPROACH FOR HEAT AND MASS TRANSFERS DURING SORPTION PHENOMENA IN A PLANE ADSORBER

卷 13, 册 12, 2010, pp. 1087-1100
DOI: 10.1615/JPorMedia.v13.i12.40
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摘要

A model approach for heat and mass transfers during gas sorption by a zeolite bed is developed. The mathematical modeling is based on assuming the bed to be formed with three phases-solid, liquid, and gaseous. The classical finite volume method is used to numerically solve the differential set of governing macroscopic equations. Numerical results provide us the time-space evolutions of temperature and moisture content. A comparison between results obtained with a three-phase model versus those obtained with a two-phase model is performed and discussed. A comprehensive analysis of the influence of the bed porosity and the grain porosity on the average reduced moisture content and average reduced temperature is also investigated.

对本文的引用
  1. Stritih U., Kozelj R., Materials and Numerical Analysis of Thermochemical Seasonal Solar Energy Storage for Building Thermal Comfort Applications: A Review, Research Journal of Environmental Sciences, 11, 4, 2017. Crossref

  2. Bel Haj Jrad Amal, Ben Hamida Mohamed Bechir, Ghnay Rabie, Mhimid Abdallah, Contribution to the study of combined adsorption–ejection system using solar energy, Advances in Mechanical Engineering, 9, 7, 2017. Crossref

  3. Jrad Amal Bel Haj, Zagnani Abdelaziz, Mhimid Abdallah, Solar Adsorption Cooling System Study, in Recent Advances in Environmental Science from the Euro-Mediterranean and Surrounding Regions, 2018. Crossref

  4. Krese Gorazd, Koželj Rok, Butala Vincenc, Stritih Uroš, Thermochemical seasonal solar energy storage for heating and cooling of buildings, Energy and Buildings, 164, 2018. Crossref

  5. Nagel Thomas, Beckert Steffen, Lehmann Christoph, Gläser Roger, Kolditz Olaf, Multi-physical continuum models of thermochemical heat storage and transformation in porous media and powder beds—A review, Applied Energy, 178, 2016. Crossref

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