Numerical Simulation of Bubble Motion about a Grid Spacer in a Rod Bundle
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概要
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Numerical simulations based on a three-dimensional two-way bubble tracking method are carried out to predict bubble motions in a square duct with an obstacle and in a two-by-three rod bundle with a grid spacer. Comparisons between measured and predicted bubble motions demonstrate that the two-way bubble tracking method gives good predictions for trajectories of small bubbles in the upstream side of the grid spacer in the rod bundle geometry. The predicted bubble trajectories clearly show that bubbles are apt to migrate toward the rod surface in the vicinity of the bottom of the grid spacer. Analysis of forces acting on the bubbles confirms that pressure gradient force induced by the presence of the spacer is the main cause of the bubble lateral migration toward the rod surface. Motions of steam bubbles at a nominal operating condition of a pressurized water reactor (PWR) are also predicted by using the bubble tracking method, which indicates that steam bubbles also migrate toward the rod surface at the upstream side of the spacer due to the spacer-induced pressure gradient force.
著者
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HOSOKAWA Shigeo
Kobe Univ.
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TOMIYAMA Akio
Kobe Univ.
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TOMIYAMA Akio
Kobe University, Graduate School of Engineering
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HAYASHI Kosuke
Kobe City College of Technology
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ZHANG Zheng
Kobe University, Graduate School of Engineering
関連論文
- Dimensionless Index for Cavitation in Nozzles of Various Geometries
- Numerical Simulation of Bubble Motion about a Grid Spacer in a Rod Bundle
- Volume Tracking Simulation of Bubble Motion with Low Spatial Resolution