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- W4308202268 abstract "This paper aims to design and analyse a stand-alone triple basin solar desalination system (TBSS). Geometry for the triple basin solar desalination system equipped with parabolic concentrator is modelled on ANSYS. Simulation analysis is carried out on ANSYS Fluent v19.2 at the atmospheric conditions of Delhi (28.7041° N, 77.1025° E). All modes of heat transfer and evaporation and condensation phenomena are examined. Therefore, the dimensions and geometry of the fins are varied as cylindrical and triangular. Heat-absorbing material in the fins is tested by varying it with charcoal and river sand. Within this analysis domain, simulation results of the designated systems were calculated and a comparison is carried out. Simulation results found that peak temperature is higher at the edge of the fin in triangular geometry (73.112 °C) compared to cylindrical fins (66.09 °C). Maximum temperature of air and water-vapour mixture inside the system is 351.5 K, and the minimum temperature is 304.25 K. A parabolic concentrator causes the maximum sunlight to concentrate on the surface of the glass casing and that trapped radiation increases the temperature of the system. The peak temperature of the system raises to 78.35 °C for the current system. Maximum water production rate in a TBSS is 16.78 kg m−2 day−1." @default.
- W4308202268 created "2022-11-09" @default.
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- W4308202268 date "2022-11-05" @default.
- W4308202268 modified "2023-10-18" @default.
- W4308202268 title "Simulation Modelling of a Stand-Alone Triple Basin Solar Desalination System" @default.
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- W4308202268 doi "https://doi.org/10.1007/978-981-19-3498-8_22" @default.
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