Aspect-Ratio and Reynolds-Number Effects on Short-Span Cross-Flow Impellers without Casings
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概要
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The purpose of this experimental research is to clarify both the aspect-ratio effect and the Reynolds-number effect, especially for the flow of cross-flow impellers with shorter axes. Particle-image-velocimetry (PIV) technique and a hot-wire anemometer are used for measurements of flow velocity. The impeller rotates without any casings. The authors study two kinds of the impellers, that is, one with forward-cambered blades and the other with radial-flat blades. As a result, observing eccentric-vortex revolution by using hot-wire measurements and flow visualisations, the flow can be classified into three modes. According to this classification, the authors show flow-regime maps for both impellers. Using PIV results, the authors define outflow rate Q from the impeller. Outflow-rate coefficient C_Q is independent of the Reynolds number for both impellers. For the radial-flat-blade impeller, C_Q is not affected by aspect ratio L/D_2. But, for the forward-cambered-blade impeller, C_Q increases with L/D_2.
- 社団法人日本機械学会の論文
- 2006-11-15
著者
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FUNAKI Jiro
Department of Mechanical Engineering, Doshisha University
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HIRATA Katsuya
Department of Mechanical Engineering, Doshisha University
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Hirata Katsuya
Department Of Mechanical Engineering Doshisha University
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Funaki Jiro
Department Of Mechanical Engineering Doshisha University
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KIMATA Nobuyuki
Department of Mechanical Engineering, Doshisha University
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HISADA Motohide
Department of Mechanical Engineering, Doshisha University
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Hisada Motohide
Department Of Mechanical Engineering Doshisha University
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Kimata Nobuyuki
Department Of Mechanical Engineering Doshisha University
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