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Steady-State Behavior of a Two-Phase Natural Circulation Loop With Thermodynamic Nonequilibrium

机译:具有热力学非平衡性的两相自然循环回路的稳态行为

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摘要

A model to predict the steady-state behavior of a rectangular two-phase natural circulation loop has been proposed. The analysis employs a one-dimensional two-fluid model to identify various system parameters, with particular emphasis on the subcooled boiling region. The onset of two-phase region and point of net vapor generation and associated liquid temperatures and vapor qualities have been estimated using a few widely recognized correlations. Predicted results demonstrate that the consideration of subcooled boiling may have significant effect on system behavior, particularly around the. transition regions. The interaction of saturated bubbles and subcooled liquid and associated change in heat transfer and frictional forces has been discussed in detail. Fluid stream has been observed to have different combinations of flow stream conditions at boiler exit and condenser inlet. Five probable combinations have been identified and a generalized working-regime map has been proposed on N_(sub) -N_(Zu) plane. Attempts have been made to identify the influence of various control parameters. A favorable sink condition (higher coolant flow rate or lower coolant entry temperature) has been found to be of particular importance to attain a wider operating range of wall heat flux and better heat transfer characteristics. A design map has been proposed to identify favorable operating condition in terms of control parameters to ensure complete condensation.
机译:提出了预测矩形两相自然循环回路稳态行为的模型。该分析采用一维两流体模型来识别各种系统参数,尤其着重于过冷沸腾区域。使用一些公认的相关性可以估算出两相区域的开始和净蒸汽产生的点以及相关的液体温度和蒸汽质量。预测的结果表明,过冷沸腾的考虑可能会对系统性能产生重大影响,尤其是在系统周围。过渡地区。已经详细讨论了饱和气泡与过冷液体的相互作用以及传热和摩擦力的相关变化。已经观察到流体流在锅炉出口和冷凝器入口处具有不同的流动条件组合。确定了五个可能的组合,并在N_(sub)-N_(Zu)平面上提出了一个广义的工作区图。已经尝试识别各种控制参数的影响。已经发现有利的下沉条件(较高的冷却剂流速或较低的冷却剂进入温度)对于获得较宽的壁热通量操作范围和更好的传热特性特别重要。已经提出了设计图,以根据控制参数确定有利的运行条件,以确保完全冷凝。

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