真实规模饱和堆芯反应堆性能分析及计算模型验证

J. Barbosa, J. Oliveira, I. N. Gondim, T. V. Silva, F. P. Santilio, A. B. Vasconcellos, J. Pacheco
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引用次数: 1

摘要

本文旨在介绍和讨论与3mvar - 34.5 kV饱和堆芯电抗器(SCR)的规格、设计、建造、建模和测试有关的问题。这种设备被认为对控制电力系统中母线电压的升高很有吸引力。虽然较小的装置已经建成并成功运行,但这项工作的重点是一个真实规模的装置。在此背景下,本文描述了与设备运行相关的物理原理,寻找主反应堆结构参数以满足给定无功功率需求的策略,与构建和安装步骤相关的细节,最后,现场试验和相应的计算研究,以验证开发的ATPDraw模型在不同工作电压条件下的有效性。最后的结果突出了饱和反应堆在不同运行情况下的性能,以及表示设备行为的计算模型响应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance analysis and computational model validation of a real scale saturated core reactor
This paper aims to present and discuss matters related to the specification, design, construction, modeling and testing of a 3 MVAr - 34,5 kV Saturated Core Reactor (SCR). This equipment has been considered attractive for controlling the increase of busbar voltage, which occurs in electrical power systems. Although smaller units have been built and successfully operated, this work focuses a real scale device. Within this context, the present paper describes the physical principles related to the equipment operation, a strategy to find the main reactor construction parameters to attend a given reactive power demand, details linked to the build-up and installation step and, finally, site tests and corresponding computational studies to validate the developed ATPDraw model with different operating voltage conditions. The final results highlight both the saturated reactor performance at distinct operating situations, as well as the computational model response for representing the equipment behavior.
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