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NUCLEAR HYBRID ENERGY INFRASTRUCTURE

机译:核混合能源基础设施

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摘要

The nuclear hybrid energy concept is becoming a reality for the US energy infrastructure where combinations of the various potential energy sources (nuclear, wind, solar, biomass, and so on) are integrated in a hybrid energy system. This paper focuses on challenges facing a hybrid system with a Small Modular Reactor (SMR) at its core. It will discuss efforts required to develop a supervisory control center that collects data, supports decision-making, and serves as an information hub. Such a center will also be a model for integrating future technologies and controls where overall system performance data can be used to enhance overall reliability, efficiency and resiliency. In addition, advanced operations research, thermal cycle analysis, energy conversion analysis, control engineering, and human factors engineering will be part of the supervisory control center. Nuclear hybrid energy infrastructure would allow operators to optimize the cost of energy production by providing appropriate means of integrating different energy sources. The data needs to be stored, processed, analyzed, trended, and projected at the right time to the right operators to integrate different energy sources.
机译:核混合能源概念正成为美国能源基础设施的现实,在美国的能源基础设施中,各种潜在能源(核能,风能,太阳能,生物质能等)的组合都集成在混合能源系统中。本文重点关注以小型模块化反应堆(SMR)为核心的混合动力系统所面临的挑战。它将讨论建立一个监督控制中心所需的工作,该中心可以收集数据,支持决策并充当信息中心。这样的中心还将成为整合未来技术和控制的模型,在该模型中,可以使用整体系统性能数据来增强整体可靠性,效率和弹性。此外,高级运筹学,热循环分析,能量转换分析,控制工程和人为因素工程将成为监督控制中心的一部分。核混合能源基础设施将允许运营商通过提供整合不同能源的适当手段来优化能源生产成本。数据需要在正确的时间存储,处理,分析,趋势化和投影到正确的操作员,以集成不同的能源。

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