Internal-Shear Mode Instabilities on High-Speed Liquid Jet, (I) : Characteristics of Linear Solutions
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概要
- 論文の詳細を見る
The instabilities on a high-speed liquid jet, induced by amplification of perturbations in the initially-laminar shear layer underneath the free surface (internal-shear mode instabilities), are investigated theoretically and experimentally. Part I of the present paper describes the characteristics of temporally and spatially unstable modes predicted by a linear perturbation equation where the shear layer velocity profile is represented by a single straight line. The analysis focuses on simulated liquid-metal beam target flow conditions characterized by high Froude numbers FrΔ and moderate Weber numbers WeΔ, both based on the velocity difference and the thickness of the shear layer. Temporally and spatially unstable modes are predicted for WeΔ>1.8, for a certain range of wave number. For these spatiotemporal modes, the temporal growth rate tends to decrease with an increase in the spatial growth rate. The instabilities predicted by the present theory are all convective, and not absolute, for WeΔ ranging up to 20.
- 社団法人 日本原子力学会の論文
- 2004-08-25
著者
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NAKAMURA Hideo
Japan Atomic Energy Agency
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KUKITA Yutaka
Department of Energy Engineering and Science, Nagoya University
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Kukita Yutaka
Department Of Energy Engineering And Science Nagoya University
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Kukita Y
Department Of Energy Engineering And Science Nagoya University
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Kukita Yutaka
Nagoya University
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KUMAMARU Hiroshige
University of Hyogo, Graduate School of Engineering
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ITOH Kazuhiro
University of Hyogo, Graduate School of Engineering
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Kumamaru H
Graduate School Of Engineering University Of Hyogo
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Kumamaru Hiroshige
University Of Hyogo
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Kumamaru H
Univ. Hyogo Hyogo
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Itoh Kazuhiro
Graduate School Of Engineering University Of Hyogo
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Itoh Kazuhiro
University Of Hyogo Graduate School Of Engineering
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Itoh Kazuhiro
University Of Hyogo
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Nakamura Hideo
Nuclear Safety Research Center Japan Atomic Energy Agency
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Nakamura H
Nuclear Engineering Laboratory Toshiba Corporation
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Nakamura Hideo
Department Of Nuclear Safety Research Japan Atomic Energy Research Institute
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