分布式太阳能光伏(DSPV)系统中变压器油的杂散气体

B. A. Thango, J. Jordaan, A. Nnachi
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引用次数: 6

摘要

在过去的十年中,南非见证了分布式太阳能光伏(DSPV)能源变压器的大量故障率,这是由于对设计标准的知识缺陷和对这些变压器的适当指定方式的缺乏。太阳能光伏生产商强调了在设计变压器过程中没有考虑到的大量技术性能挑战。这些挑战包括谐波和失真,导致变压器金属部件过热,纤维素绝缘降解,油的杂散气体,使用寿命短以及太阳能光伏生产商的总拥有成本(TOC)显著。针对某DSPV能源变压器在常规试验中采集油样进行实验室分析后发现的异常杂散气体现象,介绍了溶解气体分析(DGA)的案例场景。正在研究的装置揭示了异常气体浓度的氢、甲烷和乙烷,它们分别与日冕、火花和局部过热有关。研究结果强调,在设计DSPV应用变压器的过程中,对谐波电流负载的模糊定义可能会导致机组在超出规格的负载下运行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stray Gassing of Transformer Oil in Distributed Solar Photovoltaic (DSPV) Systems
Over the last decade, South Africa has witnessed a generous amount in the number of failure rates in distribution solar photovoltaic (DSPV) energy transformers that has been derived from the knowledge deficit of the criterion for designing and an appropriate manner of specifying these transformers. Solar photovoltaic producers have underlined a considerable number of technical performance challenges that have not always been taken into consideration in the course of designing transformers. These challenges consists of harmonics and distortion, resulting in superheating of transformer metallic components, degradation of cellulose insulation, stray gassing of oil, short service life and a significant Total Ownership Cost (TOC) for solar photovoltaic producers.This paper present a case scenario of Dissolve Gas Analysis (DGA) carried out on a DSPV energy transformer following the anomalous stray gassing phenomenon unearthed after oil samples were taken for laboratory analysis during routine tests. The unit under study revealed anomalous gas concentrations of Hydrogen, Methane and Ethane, in which, are associate with corona, sparking and local overheating respectively. The findings highlight that a vague definition of the harmonic current loading in the course of designing transformers for DSPV application can potentially lead to the unit to be operated at a loading beyond specification.
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