Cylindrical shape of atmospheric water harvester model Universiti Malaysia Kelantan. The materials used for the mesh, fins, core and the frame structure are stainless steel which were light and strong to withstand the elements. The experiment was carried out on February and March 2017. Primary data of water was collected from daily monitoring. meteorological data, which contains the data of wind speed, wind direction, dry bulb temperature, relative humidity and rainfall. of water collection with the meteorological data of atmospheric water harvester model to be used in harvesting atmospheric water. Universiti Malaysia Kelantan. The materials used for the mesh, fins, core and the frame structure are stainless steel which were light and strong to withstand the elements. The experiment was carried out on February and March 2017. Primary data collection on volume collected from daily monitoring. Secondary data collection was obtained from which contains the data of wind speed, wind direction, dry bulb temperature, relative humidity and rainfall.Descriptive analysis was used t the meteorological data. It shown the suitability of cylindrical shape of atmospheric water harvester model to be used in harvesting atmospheric water.Meteorological factors implements an important role in maximizing the volume of water atmospheric water harvester; meteorological effect; water collection
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