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- W2365205718 abstract "To create a low O2 concentration and lean combustion atmosphere in a micro gas turbine to achieve the aim of energy saving and low emission,the isothermal spray flow near the reconstructed nozzle and its atomization performance were investigated using the Adaptive Doppler Laser Velocimetry(APV/LDV).Then the mixing and entrainment of the gas/liquid near the nozzle and the droplet size and their distribution were analyzed.The results show that the external vortex air flow increases the momentum of the droplets near the nozzle and causes a small recirculation flow which appeares around the region with a strong turbulence in the spray.The large tangential momentum and turbulent intensity are helpful to the rapid mixing of air and the surrounding flue gases which would cause a low O2 concentration and the mixing of the mixed gas with droplets to transfer heat and momentum.The average droplets diameter of all operating modes is no more than 50μm and the droplets match the biased Gauss distribution.The vortex air flow increases the outlet spray angle and makes droplets more dispersed,which is propitious to the atomization,gas-liquid mixing and heat and mass transfer.The study provides reference for the design of liquid atomizer and is a basis for thermal flow study in a micro gas turbine." @default.
- W2365205718 created "2016-06-24" @default.
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- W2365205718 date "2012-01-01" @default.
- W2365205718 modified "2023-09-26" @default.
- W2365205718 title "Spray and atomization performance of a micro gas turbine nozzle" @default.
- W2365205718 hasPublicationYear "2012" @default.
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