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- W2896495524 abstract "This study indicates the simulation analysis of a solar powered solid adsorption machine using activated carbon AC35/methanoi pair. For this purpose, a mathematical model based on a transient model of heat and mass transfer equations of the solar reactor (adsorber) has been developed. This model based on the hypothesis of homogeneity of pressure and non homogeneity of temperature distribution inside the adsorber. The adsorbed methanol mass is given by the equation of DUBININ-ASTAKHOV to describe the phenomenon of adsorption. The discretization equations system is carried out using the method of finite differences with a fully implicit scheme and the resolution of the discretized system is carried out using the iterative method. The obtained solution allows knowing the daily thermal behaviour of a tubular adsorber. The simulation technique takes into account the variation of ambient temperature and solar intensity along a simulated day, which is corresponds to a total daily insolation of 26,12 MJ/m2 and an average ambient temperature of 27.7 °C. The model is used to study the influence of the adsorber dimensioning and the total surface of a solar collector on the adsorber's behavior." @default.
- W2896495524 created "2018-10-26" @default.
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- W2896495524 date "2018-04-01" @default.
- W2896495524 modified "2023-09-24" @default.
- W2896495524 title "Heat and mass transfer in tubular adsorber of a solar adsorption cooling machine" @default.
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- W2896495524 doi "https://doi.org/10.1109/repsgie.2018.8488827" @default.
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