 In this project, the polyvinylchloride (PVC) aerator was designed to treat the waste water in a not too big reservoir. The mechanism of wastewater treatment, briefly, based upon the jet flow of liquid from nozzle to throat. Pressure difference of outer aerator and throat gateway consequently made the air flow in the aerator. This air flow combined with the water passing through nozzle would increase the oxygen level of outlet water.
 In this project, the polyvinylchloride (PVC) aerator was designed to treat the waste water in a not too big reservoir. The mechanism of wastewater treatment, briefly, based upon the jet flow of liquid from nozzle to throat. Pressure difference of outer aerator and throat gateway consequently made the air flow in the aerator. This air flow combined with the water passing through nozzle would increase the oxygen level of outlet water. Find Abstract
 
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NOZZLE APERTURE VARIATION ON AIR SUCTION
 In this project, the polyvinylchloride (PVC) aerator was designed to treat the waste water in a not too big reservoir. The mechanism of wastewater treatment, briefly, based upon the jet flow of liquid from nozzle to throat. Pressure difference of outer aerator and throat gateway consequently made the air flow in the aerator. This air flow combined with the water passing through nozzle would increase the oxygen level of outlet water.
 In this project, the polyvinylchloride (PVC) aerator was designed to treat the waste water in a not too big reservoir. The mechanism of wastewater treatment, briefly, based upon the jet flow of liquid from nozzle to throat. Pressure difference of outer aerator and throat gateway consequently made the air flow in the aerator. This air flow combined with the water passing through nozzle would increase the oxygen level of outlet water.  
