論文

査読有り
2014年

適切な渦中心軸方向流速の分布を有する渦モデルの開発と検証

日本機械学会論文集
  • 伊藤 啓
  • ,
  • 江連 俊樹
  • ,
  • 大島 宏之

80
818
開始ページ
FE0299
終了ページ
FE0299
記述言語
日本語
掲載種別
研究論文(学術雑誌)
DOI
10.1299/transjsme.2014fe0299
出版者・発行元
The Japan Society of Mechanical Engineers

A vortex is considered as one of significant phenomena which may cause gas entrainment (GE) and/or vortex cavitation in sodium-cooled fast reactors. In our past studies, the vortex is assumed to be approximated by the well-known Burgers vortex model. However, the Burgers vortex model has a simple but unreal assumption that the axial velocity component is horizontally constant, while in real the free surface vortex has the axial velocity distribution which shows large gradient in radial direction near the vortex center. In this study, a new vortex model with realistic axial velocity distribution is proposed. This model is derived from the steady axisymmetric Navier-Stokes equation as well as the Burgers vortex model, but the realistic axial velocity distribution in radial direction is considered, which is defined to be zero at the vortex center and to approach asymptotically to zero at infinity. As the verification, the new vortex model is applied to the evaluation of a simple vortex experiment, and shows good agreements with the experimental data in terms of the circumferential velocity distribution and the free surface shape. In addition, it is confirmed that the Burgers vortex model fails to calculate accurate velocity distribution with the assumption of uniform axial velocity. However, the calculation accuracy of the Burgers vortex model can be enhanced close to that of the new vortex model in consideration of the effective axial velocity which is calculated as the average value only in the vicinity of the vortex center.

リンク情報
DOI
https://doi.org/10.1299/transjsme.2014fe0299
CiNii Articles
http://ci.nii.ac.jp/naid/130004701518
URL
https://jlc.jst.go.jp/DN/JALC/10040627440?from=CiNii
ID情報
  • DOI : 10.1299/transjsme.2014fe0299
  • ISSN : 2187-9761
  • CiNii Articles ID : 130004701518

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