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

机译:杂交小型模块化沸水反应器与外部过热器的初步设计

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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)用作碱负载功率的供应商。由于在能源结构中增加了间歇性可再生能源的份额,机动(负载下)核电站变得越来越重要以前的研究发现,与外部过热器结合轻水反应堆(轻水反应堆)将提高其循环热效率和机动性能。在小型模块化沸水反应器(SMBWR)中实施该概念可能提供额外的益处,例如血管尺寸减小,并在较高的工作压力下进一步提高循环热效率。本文提出了杂交SMBWR的初步设计。专注于系统压力对冷却剂自然再循环和蒸汽循环热力学性能操作的影响。据证明,通过增加其烟囱高度,通过增加其烟囱高度,通过将化石燃料热量和可再生的热量作为潜力,通过增加其烟囱高度的研究,该系统具有比传统系统更高的压力运行的天然循环系统。外部过滤器的热源。杂交SMBWR的循环热效率与化石热选项的循环热效率根据系统工作压力而变化在40%至42%之间,同时可再生热选项的值介于38至40%之间。

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