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几何结构对脉冲喷射泵在反向流动模式下性能的影响(英文)
引用本文:徐聪. 几何结构对脉冲喷射泵在反向流动模式下性能的影响(英文)[J]. 中国化学工程学报, 2012, 20(5): 856-862. DOI: 10.1016/S1004-9541(12)60410-8
作者姓名:徐聪
作者单位:Institute of Nuclear and New Energy Technology, Tsinghua University, Beijing 100084, China
摘    要:The reverse flow diverter (RFD) consisting of a nozzle and a diffuser is a key component in pneumatic pulse jet pumps. We investigated the effects of suction gap and diffuser configurations on RFD performance during the reverse flow mode. Three suction gap configurations were examined: (1) an axisymmetrical cylinder, (2) a cuboid whose bottom plane had no half-circle groove and was level with the diffuser entrance lower border, and (3) a cuboid with a half-circle groove on the bottom plane. Among them, the second one resulted in the highest RFD pumping capacity. The effect of receiver presence before the diffuser was also examined. RFD pumping efficiency was found to be enhanced in the presence of a receiver before the diffuser when the suction gap length is small and the jet outlet velocity at the nozzle exit is high enough. Based on experimental data, a dimensionless performance curve of the suction factor q versus the ratio of Euler numbers in sections out-out and 0-0 Eu out /Eu 0 was derived. This curve is insensitive to suction gap configurations.

关 键 词:reverse flow diverter  suction gap  receiver  nozzle area ratio  reverse flow mode  
收稿时间:2011-05-20

Effects of Geometric Configurations on the Performance of Reverse Flow Diverters in Reverse Flow Mode
XU Cong. Effects of Geometric Configurations on the Performance of Reverse Flow Diverters in Reverse Flow Mode[J]. Chinese Journal of Chemical Engineering, 2012, 20(5): 856-862. DOI: 10.1016/S1004-9541(12)60410-8
Authors:XU Cong
Affiliation:Institute of Nuclear and New Energy Technology, Tsinghua University, Beijing 100084, China
Abstract:The reverse flow diverter (RFD) consisting of a nozzle and a diffuser is a key component in pneumatic pulse jet pumps. We investigated the effects of suction gap and diffuser configurations on RFD performance during the reverse flow mode. Three suction gap configurations were examined: (1) an axisymmetrical cylinder, (2) a cuboid whose bottom plane had no half-circle groove and was level with the diffuser entrance lower border, and (3) a cuboid with a half-circle groove on the bottom plane. Among them, the second one resulted in the highest RFD pumping capacity. The effect of receiver presence before the diffuser was also examined. RFD pumping efficiency was found to be enhanced in the presence of a receiver before the diffuser when the suction gap length is small and the jet outlet velocity at the nozzle exit is high enough. Based on experimental data, a dimensionless performance curve of the suction factor q versus the ratio of Euler numbers in sections out-out and 0-0 Euout/Eu0 was derived. This curve is insensitive to suction gap configurations.
Keywords:reverse flow diverter  suction gap  receiver  nozzle area ratio  reverse flow mode  
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