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Failure modes of passive decay heat removing safety systems of modern nuclear power plants

机译:现代核电站无源衰变排热安全系统的失效模式

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摘要

The purpose of this master’s thesis is to gain an understanding of passive safety systems’ role in modern nuclear reactors projects and to research the failure modes of passive decay heat removal safety systems which use phenomenon of natural circulation. Another purpose is to identify the main physical principles and phenomena which are used to establish passive safety tools in nuclear power plants. The work describes passive decay heat removal systems used in AES-2006 project and focuses on the behavior of SPOT PG system. The descriptions of the main large-scale research facilities of the passive safety systems of the AES-2006 power plant are also included.The work contains the calculations of the SPOT PG system, which was modeled with thermal-hydraulic system code TRACE. The dimensions of the calculation model are set according to the dimensions of the real SPOT PG system. In these calculations three parameters are investigated as a function of decay heat power: the pressure of the system, the natural circulation mass flow rate around the closed loop, and the level of liquid in the downcomer. The purpose of the calculations is to test the ability of the SPOT PG system to remove the decay heat from the primary side of the nuclear reactor in case of failure of one, two, or three loops out of four. The calculations show that three loops of the SPOT PG system have adequate capacity to provide the necessary level of safety. In conclusion, the work supports the view that passive systems could be widely spread in modern nuclear projects.
机译:本硕士论文的目的是了解被动安全系统在现代核反应堆项目中的作用,并研究利用自然循环现象的被动衰变除热安全系统的失效模式。另一个目的是确定用于在核电厂中建立被动安全工具的主要物理原理和现象。该工作描述了AES-2006项目中使用的被动衰变除热系统,并着重于SPOT PG系统的性能。还包括对AES-2006电厂被动安全系统的主要大型研究设施的描述。该工作包含SPOT PG系统的计算,该系统以热工液压系统代码TRACE建模。计算模型的尺寸是根据实际SPOT PG系统的尺寸设置的。在这些计算中,研究了三个参数作为衰减热功率的函数:系统压力,闭环周围的自然循环质量流量以及降液管中的液位。计算的目的是测试SPOT PG系统在四个回路中的一个,两个或三个回路发生故障的情况下,消除核反应堆一次侧的衰变热的能力。计算表明,SPOT PG系统的三个回路具有足够的容量以提供必要的安全级别。总之,这项工作支持以下观点:无源系统可以在现代核项目中广泛传播。

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    Chalyi Dmitrii;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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