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Highly Available Nuclear Power for Mission-Critical Applications

机译:适用于关键任务应用的高度可用核电

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Some energy consumers require power on an anytime, all-year-round basis with a high level of certainty, including defense installations, isolated communities, and some industrial processes. For these customers, interruptions in electricity or heat can mean substantial financial loss or even loss of life. In the absence of grid-scale energy storage, a high level of power availability can be accomplished only through the robustness and redundancy of power generators. The NuScale small modular reactor design is well suited to provide highly available power because of several features related to both the nuclear steam supply system and the overall plant design. In analogy to Redundant Array of Independent Disks (RAID) systems used to provide highly reliable data storage, a NuScale plant can assure sustained power generation by virtue of its Redundant Array of Integral Reactors (RAIR). This paper describes the NuScale RAIR plant features and summarizes the results of a rigorous analysis of RAIR availability as a function of power or, conversely, the RAIR plant output power as a function of power availability. The analysis utilized the Matrix Laboratory code (MATLAB) and included probability distributions for the frequency and duration of module outages due to planned and unplanned events. The study also evaluated the impact of implementing turbine bypass rather than module shutdown and using one or more modules to supply house loads in the case of loss of off-site power (LOOP). Availability results are presented for a 12-module RAIR plant with and without turbine bypass enabled during a LOOP and for different possible connections to the off-site power distribution grid and dedicated service loads. Results indicate that a very high level of availability can be achieved at relatively high power output levels, regardless of turbine bypass and dedicated load connection, compared to the operating fleet.
机译:一些能源消费者需要随时随地的电力,全年符合高水平的确定性,包括防御设备,隔离社区和一些工业流程。对于这些客户来说,电力或热量的中断可能意味着实质性的经济损失甚至失去生命。在没有网格级能量存储的情况下,只能通过发电机的稳健性和冗余来实现高水平的功率可用性。 NUSCALE小型模块化反应器设计非常适合提供高度可用的功率,因为​​与核蒸汽供应系统和整体植物设计有关。类似于用于提供高度可靠的数据存储的独立磁盘(RAID)系统的冗余阵列,NUSCALE工厂可以通过其冗余的整体反应器阵列(RAIR)来确保持续发电。本文介绍了NUSCALE RAIR工厂的特点,总结了RAIR可用性的严格分析结果,或者相反,RAIR工厂输出功率作为功率可用性的功能。该分析利用矩阵实验室代码(MATLAB),包括模块中断的频率和持续时间的概率分布,由于计划和计划计划的事件。该研究还评估了实施涡轮机旁路而不是模块关闭以及使用一个或多个模块在丢失非现场电源(环路)的情况下供应房屋负载的影响。可用性结果为12模块Rair工厂,在循环期间启用涡轮机旁路,以及与非现场配电电网和专用服务负载不同的可能连接。结果表明,与操作舰队相比,无论涡轮机旁路和专用负载连接如何,都可以实现非常高的可用性。

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