论文标题

建模飞轮储能系统充电和排放动力学

Modeling flywheel energy storage system charge and discharge dynamics

论文作者

Stas, Pieter-Jan C., Ghimire, Sulav, Ouerdane, Henni

论文摘要

在可再生能源成为能源产生组合中的重要组成部分的电网中,储能技术非常重要。在这里,我们专注于飞轮存储系统的一些基本特性,该技术由于材料和电气设计的最新进展而变得更具竞争力。尽管对固定轴的刚体旋转的描述是经典的力学教科书材料,但其所有基本方面都与飞轮相关,例如,在高旋转速度下由中心力造成的压力评估,或在高旋转速度下均未覆盖或分散在不同的信息源上;因此,值得仔细观察飞轮的特定机械问题,并得出并清楚地分析方程式及其解决方案。由于系统的机械和电气特性耦合,飞轮与电气系统的连接施加了特定的边界条件。因此,我们的报告涉及飞轮中的应力,尤其是在加速和减速过程中,考虑了实心磁盘和空心磁盘几何形状,因此,考虑到飞轮系统的详细电气设计,考虑了飞轮系统的详细电气设计。我们包括有关飞轮的电气性能对于实际设置的电气性能的适用性的讨论。最后,我们简要讨论了电网中飞轮的相对优势,而不是其他储能技术。

Energy storage technologies are of great practical importance in electrical grids where renewable energy sources are becoming a significant component in the energy generation mix. Here, we focus on some of the basic properties of flywheel energy storage systems, a technology that becomes competitive due to recent progress in material and electrical design. While the description of the rotation of rigid bodies about a fixed axis is classical mechanics textbook material, all its basic aspects pertinent to flywheels, like, e.g., the evaluation of stress caused by centripetal forces at high rotation speeds, are either not covered or scattered over different sources of information; so it is worthwhile to look closer at the specific mechanical problems for flywheels, and to derive and clearly analyse the equations and their solutions. The connection of flywheels to electrical systems impose particular boundary conditions due to the coupling of mechanical and electrical characteristics of the system. Our report thus deal with the mechanical design in terms of stresses in flywheels, particularly during acceleration and deceleration, considering both solid and hollow disks geometries, in light of which we give a detailed electrical design of the flywheel system considering the discharge-stage dynamics of the flywheel. We include a discussion on the applicability of this mathematical model of the electrical properties of the flywheel for actual settings. Finally, we briefly discuss the relative advantages of flywheels in electrical grids over other energy storage technologies.

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