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CFD ANALYSIS OF FLOWING FIELD IN 5×5 ROD BUNDLE WITH MULTI-GRIDS

机译:用多网格5×5杆束流动场的CFD分析

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To study the characteristics of flowing field in fuel bundle, the 5×5 rod bundle with one spacer grid and two mixing grids has been taken for investigation. Geometry model of the mixing vane grids is simplified to be made of mixing vane, steel convex, spring and stripe. The 3-D flow field and heat transfer have been simulated with the CFD code. Much effort has been made to analyze the effect of different grid type and geometry on flowing field in the bundle channels. Also the turbulent mixing performances of different type of grids have been investigated. What's more, the effect of mixing vane on the flowing field, with change of its deflection angle and spread length, have been investigated. The research shows that the spacer grid in the upstream has stronger effect on the flowing field than spacer grid in the downstream. Both the mixing vane grids and support grids have positive effect on heat transfer enhancement. Geometry of the vanes, the deflection angle and length of mixing vanes, has significant effect on cross flow between the flowing channels, increase the deflection angle and length of mixing vanes will make the lateral mixing stronger, but enhance the pressure drop at the same time.
机译:为了研究燃料束中流动场的特性,已经采取了具有一个间隔栅格和两个混合网格的5×5杆束进行研究。混合叶片栅格的几何模型被简化为混合叶片,钢凸,弹簧和条纹制成。使用CFD码模拟了3-D流场和传热。已经努力分析了不同网格型和几何形状对捆绑通道中流动场的影响。还研究了不同类型网格的湍流混合性能。更重要的是,研究了混合叶片在流动场上的影响,随着其偏转角和扩展长度的变化。该研究表明,上游的间隔栅格对流动场的效果比下游的间隔栅格更强。混合叶片网格和支持电网都对传热增强具有积极影响。叶片的几何形状,混合叶片的偏转角度和长度,对流动通道之间的交叉流动具有显着影响,增加混合叶片的偏转角和长度将使横向混合更强,但同时增强压力下降。

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