Influence of air entrainment on the liquid flow field caused by a plunging jet and consequences for fibre deposition
Plunging jets play an important role in nuclear reactor safety research. In the present paper the case of the strainer clogging issue is considered. Entrained air caused by a plunging jet has an influence of the liquid flow field and on the fibre transport in the sump. In the paper the amount of ent...
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Published in | Nuclear engineering and design Vol. 241; no. 4; pp. 1047 - 1054 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
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01.04.2011
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Abstract | Plunging jets play an important role in nuclear reactor safety research. In the present paper the case of the strainer clogging issue is considered. Entrained air caused by a plunging jet has an influence of the liquid flow field and on the fibre transport in the sump. In the paper the amount of entrained air is given as an inlet boundary condition according to correlations in the literature and confirmed by own experiments. The influence of entrained air on the fibre deposition pattern at the bottom of a tank and on the mixing procedure for the case of temperature differences between jet and tank water are investigated by computational fluid dynamics (CFD) calculations and compared to experiments.
The presented work is part of a joint research project performed in cooperation between the University of Applied Science Zittau/Görlitz and Forschungszentrum Dresden-Rossendorf. The project deals with the experimental investigation of particle transport phenomena in coolant flow in Zittau and the development of CFD models for its simulation in Rossendorf. Whereas an overview and a description of the main concepts of this project are described by
Krepper et al. (2008, 2009), the focus of the actual paper is directed on the different aspects of a jet.
The entrained air has a remarkably influence on the generation of swirls und therefore on the transport and deposition of fibres. At least qualitative conclusions concerning main effects, critical regions of fibre deposition and design improvements avoiding undesired fibre deposition can be drawn. The CFD simulation of the sump flow conditions during a real accident scenario over several 1000
s however will fail caused by the large computational effort. |
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AbstractList | Plunging jets play an important role in nuclear reactor safety research. In the present paper the case of the strainer clogging issue is considered. Entrained air caused by a plunging jet has an influence of the liquid flow field and on the fibre transport in the sump. In the paper the amount of entrained air is given as an inlet boundary condition according to correlations in the literature and confirmed by own experiments. The influence of entrained air on the fibre deposition pattern at the bottom of a tank and on the mixing procedure for the case of temperature differences between jet and tank water are investigated by computational fluid dynamics (CFD) calculations and compared to experiments. The presented work is part of a joint research project performed in cooperation between the University of Applied Science Zittau/Goerlitz and Forschungszentrum Dresden-Rossendorf. The project deals with the experimental investigation of particle transport phenomena in coolant flow in Zittau and the development of CFD models for its simulation in Rossendorf. Whereas an overview and a description of the main concepts of this project are described by (Krepper et al., 2008) and (Krepper et al., 2009), the focus of the actual paper is directed on the different aspects of a jet. The entrained air has a remarkably influence on the generation of swirls und therefore on the transport and deposition of fibres. At least qualitative conclusions concerning main effects, critical regions of fibre deposition and design improvements avoiding undesired fibre deposition can be drawn. The CFD simulation of the sump flow conditions during a real accident scenario over several 1000 s however will fail caused by the large computational effort. Plunging jets play an important role in nuclear reactor safety research. In the present paper the case of the strainer clogging issue is considered. Entrained air caused by a plunging jet has an influence of the liquid flow field and on the fibre transport in the sump. In the paper the amount of entrained air is given as an inlet boundary condition according to correlations in the literature and confirmed by own experiments. The influence of entrained air on the fibre deposition pattern at the bottom of a tank and on the mixing procedure for the case of temperature differences between jet and tank water are investigated by computational fluid dynamics (CFD) calculations and compared to experiments. The presented work is part of a joint research project performed in cooperation between the University of Applied Science Zittau/Görlitz and Forschungszentrum Dresden-Rossendorf. The project deals with the experimental investigation of particle transport phenomena in coolant flow in Zittau and the development of CFD models for its simulation in Rossendorf. Whereas an overview and a description of the main concepts of this project are described by Krepper et al. (2008, 2009), the focus of the actual paper is directed on the different aspects of a jet. The entrained air has a remarkably influence on the generation of swirls und therefore on the transport and deposition of fibres. At least qualitative conclusions concerning main effects, critical regions of fibre deposition and design improvements avoiding undesired fibre deposition can be drawn. The CFD simulation of the sump flow conditions during a real accident scenario over several 1000 s however will fail caused by the large computational effort. |
Author | Weiss, Frank-Peter Kästner, Wolfgang Kratzsch, Alexander Renger, Stefan Alt, Sören Krepper, Eckhard |
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References | Krepper, Cartland-Glover, Grahn, Weiss, Alt, Hampel, Kästner, Seeliger (bib8) 2008; 35 Tomiyama, Sou, Zun, Kanami, Sakaguchi (bib10) 1995 Grace, Wairegi, Niguyen (bib6) 1976; 54 Burns, Frank, Hamill, Shi (bib3) 2004 Cummings, Chanson (bib4) 1997; 119 Bonetto, Lahey (bib2) 1993; 19 Krepper, Cartland-Glover, Grahn, Weiss, Alt, Hampel, Kästner, Seeliger (bib9) 2009; 167 Iguchi, Okita, Yamamoto (bib7) 1998; 24 Cummings, Chanson (bib5) 1997; 119 Bin (bib1) 1993; 48 Tomiyama (10.1016/j.nucengdes.2010.04.002_bib10) 1995 Burns (10.1016/j.nucengdes.2010.04.002_bib3) 2004 Bin (10.1016/j.nucengdes.2010.04.002_bib1) 1993; 48 Cummings (10.1016/j.nucengdes.2010.04.002_bib5) 1997; 119 Krepper (10.1016/j.nucengdes.2010.04.002_bib8) 2008; 35 Cummings (10.1016/j.nucengdes.2010.04.002_bib4) 1997; 119 Grace (10.1016/j.nucengdes.2010.04.002_bib6) 1976; 54 Bonetto (10.1016/j.nucengdes.2010.04.002_bib2) 1993; 19 Krepper (10.1016/j.nucengdes.2010.04.002_bib9) 2009; 167 Iguchi (10.1016/j.nucengdes.2010.04.002_bib7) 1998; 24 |
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Technol. doi: 10.13182/NT09-A8850 contributor: fullname: Krepper – volume: 54 start-page: 167 year: 1976 ident: 10.1016/j.nucengdes.2010.04.002_bib6 article-title: Shapes and velocities of simple drops and bubbles moving freely through immiscible liquids publication-title: Trans. Inst. Chem. Eng. contributor: fullname: Grace |
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Snippet | Plunging jets play an important role in nuclear reactor safety research. In the present paper the case of the strainer clogging issue is considered. Entrained... |
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SubjectTerms | Computational fluid dynamics Deposition Entrainment Fibre Mathematical models Plunging Tanks Transport |
Title | Influence of air entrainment on the liquid flow field caused by a plunging jet and consequences for fibre deposition |
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