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- W4308159675 abstract "• A numerical model involving non-adsorbable gas transportation is established. • Impacts of residual air on the heat and mass transfer characteristics are analyzed. • The relationship between the performance and fin configurations is constructed. • Water production under the optimal configurations renders a 20.4% augmentation. Non-adsorbable gas can significantly deteriorate the adsorption dynamics of the adsorption-based desalination and cooling system. In this study, an alternative complete computational fluid dynamic model involving non-adsorbable gas transportation is established. The impacts of non-adsorbable air originating from the incomplete degassing or leakage in the evaporator on the heat and mass transfer characteristics in the adsorbent bed and the performance of the adsorption-based desalination and cooling system are analyzed. Non-adsorbable air can significantly hinder the system performance due to weakened adsorption dynamics and induced additional mass transfer resistance. Moreover, a finned-tube bed attached with branched fins is employed to improve the heat transfer and adsorption dynamics. The impacts of fin configurations on the system performance with non-adsorbable air considered are systematically investigated. Machine learning is employed to construct the quantitative relationship between the fin configuration parameters and the total system throughput. And the optimal fin configuration is further identified via the genetic algorithm. The optimal fin configuration with the fin number of 12 and fin branch angle of 64.4° renders a 24.6% augmentation in the total cooling power and a 20.4% increase in total daily water production, respectively." @default.
- W4308159675 created "2022-11-08" @default.
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- W4308159675 date "2023-01-01" @default.
- W4308159675 modified "2023-10-18" @default.
- W4308159675 title "Impacts of non-adsorbable gas on the adsorption-based desalination and cooling system with fin branch configurations" @default.
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- W4308159675 doi "https://doi.org/10.1016/j.applthermaleng.2022.119565" @default.
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