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MAAP5 ENHANCEMENTS FOR FUKUSHIMA DAIICHI ACCIDENT SIMULATION

机译:Maap5对Fukusima Daiichi意外模拟的增强功能

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This paper describes the planned MAAP5 code enhancements performed under the MAAP5 enhancement project. The main purpose of the project is to provide prediction of the location and state of core materials in Fukushima Daiichi - reactor units 1, 2, and 3. The key areas of MAAP5 enhancements are (1) BWR reactor coolant system thermal-hydraulics, (2) BWR core melt progression, (3) BWR lower plenum models, (4) Traveling in-core probe (TIP) tube failure model, and (5) Debris coolability and MCCI model. Improved BWR thermal hydraulics model for pressure and water level calculations and new refined RCS nodalization as well as salt and boron tracking calculations will be implemented. All potential core relocation paths to lower plenum have been examined and model enhancements for core melt progression have been identified. The enhanced lower plenum model includes radial and axial nodalization of the lower plenum debris bed taking into consideration the presence of a forest of CRD tubes which can behave differently in different radial zones. The CRD tubes in each radial zone will also axially interact with the nodalized stratified debris bed. A new mechanistic model for TIP tube failure that opens flow paths from the RCS to the containment will be implemented. A more realistic semi-2 -dimensional MCCI modeling approach for BWR pedestal sumps with improved convective heat transfer has been identified.
机译:本文介绍了MAAP5增强项目下执行的计划MAAP5代码增强功能。该项目的主要目的是提供福岛Daiichi - 反应堆单元1,2和3中核心材料的位置和状态的预测.Maap5增强的关键区域是(1)BWR抗体冷却剂系统热液压系统,( 2)BWR核心熔体进展,(3)BWR下压力型型号,(4)行驶核心探针(尖端)管衰竭模型,(5)碎片冷却性和MCCI模型。改进的BWR热水液压模型用于压力和水位计算和新的精制RCS Nocalization以及盐和硼跟踪计算。已经检查了对低压通行子的所有潜在核心重定位路径,并确定了核心熔体进展的模型增强。增强的下压力通孔模型包括考虑到在不同径向区域中的CRD管森林的存在下的下压力碎片床的径向和轴向瘤化。每个径向区域中的CRD管也将与Nodalized分层碎片轴向相互作用。将实施一种新的机制模型,用于打开从RCS到容纳的流量路径。已经鉴定了具有改进的对流传热的BWR基座贮槽的更现实的半2 - 二维MCCI建模方法。

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