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- W4319992996 abstract "Atmospheric water generation, which generates water from atmospheric humidity, is a futuristic and emerging approach to address the global water crisis. Here, a residential scale atmospheric water generator based on vapour compression refrigeration, having a plain finned tube heat exchanger configuration for cooling and condensation, is modelled and simulated in MATLAB Simscape environment. A residential scale system is considered with a nominal cooling capacity of 1.5 kW for generating a minimum of 20 L/day at defined operating conditions of 25 °C ambient air temperature and 60 % relative humidity. Parametric analysis has been performed to examine the impact of air temperature, relative humidity, inlet airflow rate, and cooling refrigerant temperature on system performance. Under hot-humid conditions, the system produces more water with less energy consumption and offers the flexibility to operate at higher cooling medium temperatures. A monthly airflow tuning strategy has been proposed in the study and found to be beneficial to extend the operation of the system during the unfavourable period. Further, the model is extended to estimate the fluctuating range of daily water generation for different months in the cities of India that are prone to water risk. The study exhibits that atmospheric water generation could be a viable solution to the country’s water crisis in most locations." @default.
- W4319992996 created "2023-02-11" @default.
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- W4319992996 date "2023-03-01" @default.
- W4319992996 modified "2023-10-04" @default.
- W4319992996 title "Parametric analysis of atmospheric water generation system and its viability in Indian cities" @default.
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- W4319992996 doi "https://doi.org/10.1016/j.tsep.2023.101682" @default.
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