气体Sf6替代品在开关设备使用寿命期间的全球变暖潜势考虑

Xiangyang Ye, J. Mantilla
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引用次数: 0

摘要

下一代环保开关柜将不使用SF6。目前,世界上所有的主要制造商都在开发以二氧化碳为背景气体的替代品。氟腈、3M™Novec™4710、C4F7N (C4FN)的使用由不同的生产商以不同的商标名称进行说明。在大多数情况下,添加氧气是出于健康和/或功能原因。就潜在的气候影响而言,仅考虑单一混合气体组分的GWP是不够的。为了更好地评估和理解与SF6相比,不同替代方案所提供的优势,在确定的时间范围内,气体混合物的全球变暖潜能值计算要完整得多。此外,不仅要考虑新工况下混合气体的GWP,还要考虑它们在开关柜使用寿命中的演变。在高压断路器的所有开关和中断测试任务中产生的电弧会引起可逆和不可逆的化学反应,产生与原分子具有不同介电性、灭弧性和环境特性的新化合物。基于热力学计算、CFD模拟和气体分析,本工作研究了不同混合物的副产品在气候影响、电介质和电弧淬火方面的影响。本文提供了电气和气体退化的不同场景,从非常罕见的事件,例如t100到非常常见的事件,例如标称和/或电容电流的切换。根据设备的性能和气候影响,对不断变化的气体混合物的影响进行了评估和比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Global Warming Potential Considerations for Gaseous Sf6 Alternatives Along the Switchgear Lifetime
Abstract Next-generation environmentally friendly switchgear will not use SF6. Currently, all of the main manufacturers in the world are developing products using alternatives based on CO2 as a background gas. The use of FluoroNitriles, 3M™ Novec™ 4710, C4F7N (C4FN) is addressed by different producers under different trademark names. In most cases, Oxygen is added for health and/or functional reasons. In terms of potential climate impact, considering only the GWP of the single gas mixture components is insufficient. In order to better evaluate and understand the advantages the different alternatives offer in comparison to SF6, the GWP calculations of the gas mixtures over a defined timeframe are much more complete. Additionally, not only the GWP of the gas mixtures in new condition is to be considered, but also their evolution through the switchgear lifetime. Arcing, created in all switching and interrupting test duties of HVCB will cause reversible and irreversible chemical reactions that produce new compounds with different dielectric, arc quenching, and environmental properties as the original molecule. Based on thermodynamic calculations, CFD simulations, and gas analysis of samples of alternatives that have been subjected to arcing, this work studies the effect the byproducts of the different mixtures have in terms of climate impact, dielectrics, and arc quenching. This paper offers different scenarios of electrical and gas degradation, from very uncommon events e.g., T100s to very common ones e.g., switching of nominal and/or capacitive currents. The influence of the always evolving gas mixtures along the lifetime of the equipment is evaluated and compared in terms of performance and the climate impact.
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