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PRELIMINARY DESIGN OF HYBRID SMALL MODULAR BOILING WATER REACTOR WITH EXTERNAL SUPERHEATER

机译:带有外部过热器的混合型小分子沸腾水反应器的初步设计

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Nuclear power plants (NPPs) are known to be used as providers of base-load power. As the share of the intermittent renewables in the energy mix increases, the maneuvering (load-following) of NPPs is becoming more important Previous studies have found that combining Light Water Reactors (LWRs) with external superheater would improve their cycle thermal efficiencies and maneuvering capabilities. Implementation of this concept in a small modular boiling water reactor (SMBWR) might offer additional benefits, such as vessel size reduction and further boost of cycle thermal efficiency at higher operating pressure. This paper presents a preliminary design of hybrid SMBWR. focusing on the effect of system pressure on reactor capability to operate with natural recirculation of coolant and on steam cycle thermodynamic performance. It is demonstrated that hybrid SMBWR has natural circulation system operating at higher pressure than the conventional system by increasing its chimney height The study of the effect of system pressure on power cycle thermodynamic performance was done by considering both fossil fuel heat and renewable heat as the potential heat source for the external superheater. The cycle thermal efficiency of hybrid SMBWR with fossil heat option varies between 40 to 42% depending on the system operating pressure while the values for renewable heat option are between 38 to 40%.
机译:已知核电厂(NPP)被用作基本负荷电力的提供者。随着间歇性可再生能源在能源结构中的份额增加,核电厂的操纵(负荷跟踪)变得越来越重要先前的研究发现,将轻水堆(LWR)与外部过热器结合使用将提高其循环热效率和操纵能力。在小型模块化沸水反应堆(SMBWR)中实施此概念可能会带来其他好处,例如减小容器尺寸并在更高的工作压力下进一步提高循环热效率。本文提出了混合SMBWR的初步设计。重点关注系统压力对反应堆以冷却剂自然循环运行的能力以及蒸汽循环热力学性能的影响。通过增加烟囱高度,证明了混合SMBWR具有比常规系统更高压力的自然循环系统。通过将化石燃料热和可再生热都视为潜在能量,对系统压力对动力循环热力学性能的影响进行了研究。外部过热器的热源。具有化石热选项的混合SMBWR的循环热效率在40%至42%之间变化,具体取决于系统工作压力,而可再生热选项的值在38%至40%之间。

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