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Control Systems for a Dynamic Multi-Physics Model of a Nuclear Hybrid Energy System

机译:核混合能源系统动态多物理场模型的控制系统

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A Nuclear Hybrid Energy System (NHES) uses a nuclear reactor as the basic power generation unit, and the power generated is used by multiple customers as combinations of thermal power or electrical power. The definition and architecture of a particular NHES can be adapted based on the needs and opportunities of different localities and markets. For example, locations in need of potable water may be best served by coupling a desalination plant to the NHES. Similarly, a location near oil refineries may have a need for emission-free hydrogen production. Using the flexible, multi-domain capabilities of Modelica. Argonne National Laboratory. Idaho National Laboratory, and Oak Ridge National Laboratory are investigating the dynamics (e.g., thermal hydraulics and electrical generation/consumption) and cost of a hybrid system. This paper examines the NHES work underway, emphasizing the control system developed for individual subsystems and the overall supervisory control system.
机译:核混合能源系统(NHES)使用核反应堆作为基本发电单元,并且所产生的电力被多个客户用作火力或电力的组合。可以根据不同地区和市场的需求和机会来修改特定NHES的定义和体系结构。例如,将海水淡化厂与NHES耦合,可以最好地满足需要饮用水的场所。同样,靠近炼油厂的地方可能需要无排放的氢气生产。使用Modelica的灵活的多域功能。阿贡国家实验室。爱达荷州国家实验室和橡树岭国家实验室正在研究混合动力系统的动态特性(例如热力水力和发电/消耗)和成本。本文考察了正在进行的NHES工作,重点介绍了为单个子系统开发的控制系统以及整个监督控制系统。

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