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Passive load follow analysis of the STAR-LM and STAR-H2 systems.

机译:被动负载遵循STAR-LM和STAR-H2系统的分析。

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摘要

A steady-state model for the calculation of temperature and pressure distributions, and heat and work balance for the STAR-LM and the STAR-H2 systems was developed. The STAR-LM system is designed for electricity production and consists of the lead cooled reactor on natural circulation and the supercritical carbon dioxide Brayton cycle. The STAR-H2 system uses the same reactor which is coupled to the hydrogen production plant, the Brayton cycle, and the water desalination plant. The Brayton cycle produces electricity for the on-site needs. Realistic modules for each system component were developed. The model also performs design calculations for the turbine and compressors for the CO2 Brayton cycle. The model was used to optimize the performance of the entire system as well as every system component. The size of each component was calculated. For the 400 MWt reactor power the STAR-LM produces 174.4 MWe (44% efficiency) and the STAR-H2 system produces 7450 kg H2/hr. The steady state model was used to conduct quasi-static passive load follow analysis. The control strategy was developed for each system; no control action on the reactor is required. As a main safety criterion, the peak cladding temperature is used. It was demonstrated that this temperature remains below the safety limit during both normal operation and load follow.
机译:开发了用于计算STAR-LM和STAR-H2系统的温度和压力分布以及热量和工作平衡的稳态模型。 STAR-LM系统是为发电而设计的,由自然循环的铅冷却反应堆和超临界二氧化碳布雷顿循环组成。 STAR-H2系统使用与氢气生产厂,布雷顿循环和水脱盐厂相连的同一反应器。 Brayton循环产生电能以供现场使用。为每个系统组件开发了现实的模块。该模型还为布莱顿循环的二氧化碳和涡轮机执行设计计算。该模型用于优化整个系统以及每个系统组件的性能。计算每个组件的大小。对于400 MWt反应堆功率,STAR-LM产生174.4 MWe(效率为44%),STAR-H2系统产生7450 kg H2 / hr。使用稳态模型进行准静态无源负载跟踪分析。针对每个系统制定了控制策略;不需要对反应堆进行控制。作为主要安全标准,使用峰值包层温度。结果表明,在正常运行和负载跟踪期间,该温度均保持在安全极限以下。

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  • 作者

    Moisseytsev Anton;

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  • 年度 2004
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  • 原文格式 PDF
  • 正文语种 en_US
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