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Ex-vessel transport and mixing of a deborated slug in a PWR primary geometry

机译:压水堆主要几何形状的脱硼塞子的容器外运输和混合

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The transport and mixing of a slug of deborated water in a lowered loop PWR is modeled by partitioning the volumes of the primary system according to chemical rector theory. Piping is modeled as plug flow volumes while the steam generator outlet plenum and the reactor coolant pumps are modeled as backmixed volumes. This simple approach provides a good representation of the transport and mixing phenomena outside the reactor vessel. The proposed methodology can be used to generate initial and boundary conditions for separate effects tests and CFD computations for the reactor vessel complex geometry. The decoupling of the ex-vessel primary system greatly enhances the resolution of boron dilution transient issue.
机译:通过根据化学反应器原理分配一次系统的体积,可以对降环压水堆中的去硼水团的传输和混合进行建模。管道建​​模为活塞流体积,而蒸汽发生器出口气室和反应堆冷却剂泵建模为回混体积。这种简单的方法很好地表示了反应堆容器外部的运输和混合现象。所提出的方法可用于生成初始条件和边界条件,以用于反应堆复杂几何体的单独效果测试和CFD计算。前容器主系统的去耦极大地提高了硼稀释瞬态问题的分辨率。

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