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Analyses of the Control System Strategies and Methodology for Part Power Control of the Simple and Intercooled Recuperated Brayton Helium Gas Turbine Cycles for Generation IV Nuclear Power Plants

机译:IV核电站简单和间隙恢复布雷顿氦气汽轮机循环零件功率控制的控制系统策略与方法分析

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An important requirement for Generation IV Nuclear Power Plant (NPP) design is the control system, which enables part power operability. The choices of control system methods must ensure variation of load without severe drawbacks on cycle performance. The objective of this study is to assess the control of the NPP under part power operations. The cycles of interest are the simple cycle recuperated (SCR) and the intercooled cycle recuperated (ICR). Control strategies are proposed for NPPs but the focus is on the strategies that result in part power operation using the inventory control method. First, results explaining the performance and load limiting factors of the inventory control method are documented; subsequently, the transient part power performances are also documented. The load versus efficiency curves were also derived from varying the load to understand the efficiency penalties. This is carried out using a modeling and performance simulation tool designed for this study. Results show that the ICR takes ?102% longer than the SCR to reduce the load to 50% in design point (DP) performance conditions for similar valve flows, which correlates with the volumetric increase for the ICR inventory tank. The efficiency penalties are comparable for both cycles at 50% part power, whereby a 22% drop in cycle efficiency was observed and indicates limiting time at very low part power. The analyses intend to aid the development of cycles for Generation IV NPPs specifically gas cooled fast reactors (GFRs) and very high-temperature reactors (VHTRs), where helium is the coolant.
机译:第四代核电站(NPP)的设计的一个重要要求是控制系统,它能使部分功率可操作性。控制系统方法的选择必须保证负载的变化不会对循环性能严重的缺陷。这项研究的目的是评估核电站的下一部分功率操作的控制。感兴趣的周期是简单循环回热(SCR)和调理的中冷循环(ICR)。控制策略提出了用于核电厂,但重点是使用库存控制方法,其导致部分功率操作的策略。首先,解释结果库存控制方法的性能和负载限制因素都记录;随后,瞬时部分动力性能也记录在案。载荷 - 效率曲线也从改变负载理解效率损失的。这是使用专门为这项研究建模和性能仿真工具。结果表明,该ICR取?比SCR长102%到负载减少到在设计点(DP)的性能条件50%相似阀流动,其相关因素与用于ICR库存罐的体积增加。效率惩罚是两个循环中以50%的部分的功率,由此,观察到在循环效率的22%的下降,并且指示在非常低的部分功率限制时间相当。这些分析打算帮助第四代核电站周期的发展特别气冷快中子反应堆(的GFRs)和非常高的温度的反应器(VHTRs),其中氦是冷却剂。

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