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Design Study on the Effects of Relative Diameters in the Reactor Vessel and Riser on the Performance Characteristics of a Small Modular Reactor driven by Natural Circulation

机译:反应堆容器和立管相对直径对自然循环驱动小型模块化反应堆性能特性影响的设计研究

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Small Modular Reactor (SMR) is one of the emerging energy technologies that meet the standards of safety, efficiency and sustainability required for the next generation. Most of the leading SMRs under development worldwide have an integral reactor vessel with the lower positioned core as a heat source and the upper positioned steam generator as a heat sink. Hot water from the core goes upwards through a riser, and the cold water from the steam generator comes down through an annular passage between the riser and the reactor vessel. Some SMRs are designed to be driven by natural circulation for normal power operation. The present work focuses on the viability of such designs and their operating performance which is bound to be affected by the system's geometric and hydraulic parameters greatly. Numerical simulations of conservation equations for mass, momentum and energy considering buoyancy forces are carried out to gain an insight for the effects of various geometric and hydraulic parameters such as diameters and resistances. To conclude, it is suggested that the diameters of the reactor coolant passage are maintained as uniform as possible for the more uniform temperature distribution and larger mass flow rate as required.
机译:小型模块化反应堆(SMR)是满足下一代安全性,效率和可持续性标准的新兴能源技术之一。全球范围内正在开发的大多数领先的SMR都具有整体反应堆容器,下部位置的堆芯作为热源,上部位置的蒸汽发生器作为散热器。来自堆芯的热水通过立管上升,来自蒸汽发生器的冷水通过立管和反应堆容器之间的环形通道下降。一些SMR被设计为由自然循环驱动,以实现正常的动力运行。目前的工作集中在这种设计的可行性及其操作性能上,而这些性能必将受到系统的几何和水力参数的极大影响。进行了考虑浮力的质量,动量和能量守恒方程的数值模拟,以了解各种几何和水力参数(例如直径和阻力)的影响。总之,建议将反应堆冷却剂通道的直径保持尽可能均匀,以实现所需的更均匀的温度分布和更大的质量流率。

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