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Effect of Nozzle Inlet Shape on Annular Swirling Flow with Non-Equilibrium Condensation 被引量:3
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作者 yusuke fukushima Shigeru MATSUO +4 位作者 Toshiaki SETOGUCHI Norimasa SHIOMI Tokitada HASHIMOTO Heuy Dong KIM and Shen YU 《Journal of Thermal Science》 SCIE EI CAS CSCD 2015年第4期344-349,共6页
Recently,by combining a swirl flow with non-equilibrium condensation phenomena of condensate gas generated in a supersonic flow,a separating and extracting techniques of condensate gas have been developed.This techniq... Recently,by combining a swirl flow with non-equilibrium condensation phenomena of condensate gas generated in a supersonic flow,a separating and extracting techniques of condensate gas have been developed.This technique can reduce the size of the device and don't use chemicals.In the present study,by using a non-equilibrium condensation phenomenon of moist air occurred in the supersonic flow in the annular nozzle composed of an inher body and an outer nozzle with a swirl,the possibility of separation of the condensable gas and the effect of shape of nozzle inlet on the flow field were examined numerically. 展开更多
关键词 compressible flow non-equilibrium condensation supersonic annular nozzle swirl flow simulation
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Annular Supersonic Swirling Flows with Heterogeneous Condensation 被引量:1
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作者 yusuke fukushima Shigeru MATSUO +1 位作者 Norimasa SHIOMI Toshiaki SETOGUCHI 《Journal of Thermal Science》 SCIE EI CAS CSCD 2016年第6期518-525,共8页
In recent years,separating and extracting technologies of condensate gas have been developed by combining a swirl flow with non-equilibrium condensation phenomena of condensate gas generated in a supersonic flow.The t... In recent years,separating and extracting technologies of condensate gas have been developed by combining a swirl flow with non-equilibrium condensation phenomena of condensate gas generated in a supersonic flow.The technology can reduce the size of the device and does not use chemicals.However,there are many unresolved problems for performance of the separation,extraction and operating principle.Therefore it is necessary to research further in order to improve the performance of the equipment.In the present study,the numerical study was carried out to clarify the effect of the heterogeneous condensation on the characteristics of the swirling flow field in a supersonic annular nozzle,and the differences between homogeneous condensation and heterogeneous condensation in the flow field.As the results,it is found that the condensation flow with a swirl affects the position of sonic line,the generating position of condensate and the radial distribution ratio of liquid phase. 展开更多
关键词 condensation supersonic heterogeneous condensate viscosity chemicals generating annular nozzle regardless
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Investigation on Temperature Separation and Flow Behaviour in Vortex Chamber
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作者 Yuhi Matsuno yusuke fukushima +3 位作者 Shigeru Matsuo Tokitada Hashimoto Toshiaki Setoguchi Heuy Dong Kim 《Journal of Thermal Science》 SCIE EI CAS CSCD 2015年第2期149-154,共6页
In the previous researches, it is known that the swirl flow in circular pipe causes the temperature separation. Recently, it is shown that the temperature separation occurs in a vortex chamber when compressed air are ... In the previous researches, it is known that the swirl flow in circular pipe causes the temperature separation. Recently, it is shown that the temperature separation occurs in a vortex chamber when compressed air are pumped into this device from the periphery. Especially, in a cavity installed in the periphery of the chamber, the highest temperature was observed. Therefore, it is expected that this device can be used as a heat source in the engineering field. In recent researches, the mechanism of temperature separation in vortex chamber has been investigated by some researchers. However, there are few researches for the effect of diameter and volume of vortex chamber, height of central rod and position of cavity on the temperature separation. Further, no detailed physical explanation has been made for the temperature separation phenomena in the vortex chamber. In the present study, the effects of chamber configuration and position of the cavity on temperature separation in the vortex chamber were investigated experimentally. 展开更多
关键词 Compressible flow Vortex chamber Cavity flow Temperature separation
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