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- W2320883898 abstract "The long term space exploration technology will lead to the establishment of permanent bases on the Moon and Mars. A closed bio-regenerative life support system (CBLSS) will provide a sustained environment for such missions, in which life could be evolved and developed. It is necessary to characterize and develop the theoretical and experimental models, which will be supportive to the optimization of such systems. The concept of CBLSS mimics a simplified natural environment, and it will provide comprehensive understanding of micro to macro levels of natural activities. The plant culture inside a CBLSS plays an important role for food production, CO2/O2 conversion, and water purification. In the process of transpiration from plant leaves and the low turbulent gas exchanges between the different surfaces are dependent on the organoleptic and the neighbouring thermo-physical factors. The inadequate wind flow around small obstacles and on the plant surfaces will have an effect on their growth. An experimental setup has been developed for the study of low turbulent air flows at small obstacle and for the condensation mass transfer on the similar bodies. More than seventy experiments have been performed in a controlled hydrodynamic conditioned with regulated temperature and hygrometric parameters. The condensation of humid air on a square flat plate has been performed and photographs and video have also been developed, simultaneously the amount of condensate produced have been weighed by an electronic balance. The data were analyzed after calculating the mass flux coefficients obtained and compared to theoretical data. The image analysis has been discussed for the photographs taken over the flat plate with the development of a thick mixed laminarturbulent boundary layer. An increase in the strength of the flow (discussed with the Reynolds number, Re) caused an increase in mass flux with dependence in Re 2/3 . The goal of this study is to develop a theoretical model to predict the hydrodynamics and mass flux in a closed environment for space applications: flights, lunar-Mars bases." @default.
- W2320883898 created "2016-06-24" @default.
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- W2320883898 date "2013-07-11" @default.
- W2320883898 modified "2023-09-29" @default.
- W2320883898 title "The characterization of mass transfer phenomenon in a low turbulent flow by condensation of humid air for life support systems" @default.
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- W2320883898 doi "https://doi.org/10.2514/6.2013-3477" @default.
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