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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:核混合能量系统(尼核)使用核反应堆作为基本发电单元,并且多个客户使用的电力作为热电功率或电力的组合。特定核的定义和架构可以根据不同地区和市场的需求和机遇来调整。例如,通过将脱盐厂联接到尼斯,可以最好地服务需要饮用水的位置。同样,炼油厂附近的位置可能需要不含排放的氢气产生。使用Modelica的灵活,多域功能。阿尔冈国家实验室。爱达荷国家实验室和橡树岭国家实验室正在调查动力学(例如,热液压和发电/消耗)和混合系统的成本。本文探讨了正在进行的尼斯工作,强调为各个子系统和整体监控系统开发的控制系统。

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