사각탱크 내부의 기포구동유동에 대한 동특성 연구

An experimental study to evaluate dynamic structures of flow and turbulence characteristics in bubble-driven liquid flow in a rectangular tank with a varying flow rate of compressed air is conducted. Liquid flow fields are measured by time-resolved particle image velocimetry (PIV) with fluorescent t...

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Veröffentlicht in:한국가시화정보학회지 2010, 8(1), 15, pp.31-38
Hauptverfasser: 김상문(Sang Moon Kim), 이승재(Seung Jae Yi), 김현동(Hyun Dong Kim), 김종욱(Jong Wook Kim), 김경천(Kyung Chun Kim)
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Sprache:kor
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Zusammenfassung:An experimental study to evaluate dynamic structures of flow and turbulence characteristics in bubble-driven liquid flow in a rectangular tank with a varying flow rate of compressed air is conducted. Liquid flow fields are measured by time-resolved particle image velocimetry (PIV) with fluorescent tracer particles to eliminate diffused reflections, and by an image intensifier to acquire enhanced clean particle images. Instantaneous vector fields are investigated by using the two frame cross-correlation function and bad vectors are eliminated by magnitude difference technique. By proper orthogonal decomposition (POD) analysis, the energy distributions of spatial and temporal modes are acquired. When Reynolds number increases, bubble-induced turbulent motion becomes dominant rather than the recirculating flow near the side wall. The total kinetic energy transferred to the liquid from the rising bubbles shows a nonlinear relation regarding the energy input because of the interaction between bubbles and free surface.
ISSN:1598-8430
2093-808X