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一种用于评估潜在SF6替代气体热开断能力的排序算法
A Ranking Algorithm for the Thermal Interruption Ability of Potential SF6 Alternative Gases
| 作者 | Jiu Dun Yan · Kaiyuan Zhang · Rui Cao · Yi Wu |
| 期刊 | IEEE Transactions on Power Delivery |
| 出版日期 | 2024年12月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 工商业光伏 |
| 相关度评分 | ★★★★ 4.0 / 5.0 |
| 关键词 | 高压气体断路器 热开断能力 排序算法 SF₆替代气体 影响因素 |
语言:
中文摘要
提出了一种排序算法,用于辅助筛选高压气吹断路器中不同气体的热开断能力。该算法直接基于气体材料特性,无需复杂电弧仿真。尽管未显式考虑产品设计影响,其排序结果与五种气体的实验室热开断数据及三种SF6替代气体的商用规模试验结果具有良好一致性。深入分析表明,在500K至15,000K温度范围内,气体密度与定压比热容的乘积及其电导率是决定电弧近零电流区弧柱尺寸主导作用的关键因素,进而影响冷却性能。
English Abstract
A ranking algorithm is proposed to aid the screening or initial assessment of different gases for their thermal interruption capability in high voltage gas-blast circuit breakers. The algorithm is directly based on the gas material properties without involving any complicated arc simulation. Despite that it does not explicitly consider the influence of product design, the ranking results based on the proposed algorithm show good alignment with laboratory obtained thermal interruption data of five gases and commercial-scale test data for three promising SF6 alternative gases. An in-depth analysis of the influencing factors and mechanisms responsible for the differing thermal interruption abilities of gases has been carried out, showing that the dominance of the arc column size near current zero in the arc cooling process is a natural consequence of the gas properties, especially the product of density and specific heat at constant pressure and electrical conductivity over the temperature range of 500K to 15,000K.
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SunView 深度解读
该SF6替代气体热开断能力评估算法对阳光电源中高压开关设备选型具有重要参考价值。在PowerTitan大型储能系统和1500V光伏系统中,中压断路器是关键保护设备,SF6气体因温室效应面临替代压力。该算法基于气体材料特性快速筛选环保替代气体,可指导阳光电源在ST系列储能变流器、集中式SG逆变器的配套开关柜设计中选用热开断性能优异的环保气体介质,提升设备环保合规性。研究揭示的气体密度-比热容乘积与电导率对开断性能的影响机理,为优化断路器灭弧室设计、提高大容量储能系统短路保护可靠性提供理论依据,助力阳光电源构建更安全环保的新能源电力系统解决方案。