모델연소기 선회유동장에서의 속도 및 분무특성Velocity and Spray Characteristics under Swirl Flows in a Model Combustor

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The effect of swirl flows un the fuel spray characteristics were investigated for various swillers in a model combustor. The interaction between the flow field and fuel spray in the main combustion tone made by frontal devices including fuel injection nozzles and swirlers. which were characterized by flow velocities, fuel droplet sizes and their distributions which were measured by APV(Adaptive Phase/Doppler Velocimetry) under atmospheric condition at 320cc/min kerosine fuel flow and 0.04kg/sec air supply. A dual swirler with circumferential two-stage swirl vanes of $40^{\circ}\;and\;45^{\circ}$ vanes in different directions and two single-stage swillers of $40^{\circ}$ vanes with 12 and 16 vanes were tested. It was found that the dual swirler has the largest recirculating zone with highest reverse flow velocity. The strongest swirl flow was found at the boundary of recirculation zone. Small fuel droplets were observed in the main axial stream and inside the recirculation zone when swirling flow field were generated by the frontal devices. These findings could give the tips on the optimal design of frontal devices to realize low emissions in gas turbine combustion.
Publisher
한국액체미립화학회
Issue Date
1998-06
Language
Korean
Citation

한국액체미립화 학회지, v.3, no.2, pp.42 - 50

ISSN
1226-2277
URI
http://hdl.handle.net/10203/70223
Appears in Collection
ME-Journal Papers(저널논문)
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