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DEVELOPMENT OF A NEW METHODOLOGY FOR STABILITY ANALYSIS IN BWR NPP

机译:BWR NPP稳定性分析新方法的发展

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In this work, a new methodology to reproduce power oscillations in BWR NPP is presented. This methodology comprises the modal analysis techniques, the signal analysis techniques and the simulation with the coupled code RELAP5/PARCSv2.7. Macroscopic cross sections are obtained by using the SIMTAB methodology, which is fed up with CASMO-4/SIMULATE-3 data. The input files for the neutronic and thermohydraulic codes are obtained automatically and the thermalhydraulic-to-neutronic representation (mapping) used is based on the fundamental, first and second harmonics shapes of the reactor power, calculated with the VALKIN code (developed in UPV). This mapping was chosen in order not to condition the oscillation pattern. To introduce power oscillations in the simulation a new capability in the coupled code, for generate density perturbations (both for the whole core and for chosen axial levels) according with the power modes shapes, has been implemented. The purpose of the methodology is to reproduce the driving mechanism of the out of phase oscillations appeared in BWR type reactors. In this work, the methodology is applied to the Record 9 point, collected in the NEA benchmark of Ringhals 1 NPP. A set of different perturbations are induced in the first active axial level and the LPRM signals resulting are analyzed.
机译:在这项工作中,提出了一种在BWR NPP中重现功率振荡的新方法。该方法论包括模态分析技术,信号分析技术以及带有耦合代码RELAP5 / PARCSv2.7的仿真。通过使用SIMTAB方法获得宏观截面,将其与CASMO-4 / SIMULATE-3数据结合在一起。自动获取中子和热工代码的输入文件,并且所使用的热工对中子的表示(映射)基于反应堆功率的基波,一次谐波和二次谐波形状,并通过VALKIN代码(在UPV中开发)计算得出。选择该映射是为了不限制振荡模式。为了在仿真中引入功率振荡,已实现了耦合代码中的一种新功能,该功能可根据功率模式形状生成密度扰动(整个铁心和选定的轴向水平)。该方法的目的是重现BWR型反应堆中出现的异相振荡的驱动机理。在这项工作中,该方法适用于林哈尔斯1核电厂的NEA基准中收集的记录9点。在第一有效轴向水平上感应出一组不同的扰动,并对产生的LPRM信号进行分析。

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