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INTERFACIAL AREA TRANSPORT MODEL FOR BUBBLY FLOW SYSTEM IN VERTICAL ROD BUNDLE WITH SPACER GRIDS

机译:具有间隔栅格垂直杆束中旋气流量系统的界面区域传输模型

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In relation to the modeling of the one-dimensional interfacial area transport equation for an adiabatic bubbly flow in a vertical rod bundle, some existing models of sink and source terms were reviewed and evaluated. Based on the reviewed interaction mechanisms of bubbles and turbulent eddies, a new interfacial area transport model has been proposed. Two important impacts on bubble interaction have been taken into account in the new model: the effects of spacer grids with mixing vanes and the impacts of geometry structure. The spacer grids breakup large bubbles into small bubbles resulting in enhanced bubble random collision at the downstream of the spacer grids. Void transport is the main contribution between spacer grids. The new interfacial area transport model has been evaluated against the obtained experimental data in 17 bubbly flow conditions. The results indicate that the new model can predict the interfacial area concentration with the relative error of 19.9%. It is recognized that the proposed model is promising for predicting the interfacial area concentration for a bubbly How in a rod bundle.
机译:关于在垂直杆束中的绝热气泡流动的一维界面传输方程的建模,回顾和评估了一些现有的水槽和源术语模型。基于审查的气泡和湍流漩涡的相互作用机制,提出了一种新的界面区域传输模型。新模型中已经考虑了对泡沫相互作用的两个重要影响:间隔栅格与混合叶片的影响及几何结构的影响。间隔栅格将大气泡分解为小气泡,导致间隔栅格下游的增强泡沫随机碰撞。空隙传输是间隔网格之间的主要贡献。新的界面区域传输模型已经在17个气泡流动条件下评估了所获得的实验数据。结果表明,新模型可以预测界面面积浓度,相对误差为19.9%。据认识到,所提出的模型是有前途的,用于预测杆束中的气泡的界面区域浓度。

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