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Method to evaluate the degradation condition of transformer insulating oil - establishment of the evaluation method and application to field transformer oil

机译:评估变压器绝缘油降解条件的方法-评估方法的建立及其在现场变压器油中的应用。

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摘要

To operate power transformers long-term, as well as ensuring their insulating reliability, it is important to study age-related decline in various insulating oil characteristics and the method used to evaluate the same adequately. Previous studies showed that age-related decline in insulating oil characteristics was caused by trace components in oil produced during oxidation degradation. To maintain and manage aged insulating oil rationally, a specific diagnostic method must be studied, based on measurement of the trace components in oil that cause degradation in these insulating oil characteristics. The present study evaluated the sensitivity to detect various components based on the amount of trace components produced in oil during oxidation degradation for field-aged insulating oil for 34 transformers in various degradation conditions. A study was also conducted to evaluate the degradation condition based on the ratio of trace components produced in oil. Consequently, the detection sensitivity levels were in the order of carbonyl value, saponification value, peroxide value, and total acid value. As the ratio of the saponification value ??? the so-called final product ??? increased, the degradation of insulating oil developed further. With the above study results, methods of evaluating the dissociation property in the preceding study and the breakdown voltage with the degree of water saturation taken into consideration were combined to establish a comprehensive method of evaluating aged oil. This was then applied to field-aged insulating oil as an example, whereupon the need to replace insulating oil could be evaluated.
机译:为了长期运行电力变压器并确保其绝缘可靠性,研究与老化有关的各种绝缘油特性的下降及其充分评估方法非常重要。先前的研究表明,绝缘油特性与年龄相关的下降是由氧化降解过程中产生的油中的微量成分引起的。为了合理地维护和管理老化的绝缘油,必须基于对导致这些绝缘油特性降低的微量元素的测量,研究一种特定的诊断方法。本研究基于在各种降解条件下,针对34台变压器的场效绝缘油,在氧化降解过程中油中产生的微量元素的量,评估了检测各种成分的灵敏度。还进行了一项研究,以根据油中产生的微量成分的比例评估降解条件。因此,检测灵敏度水平为羰基值,皂化值,过氧化物值和总酸值的顺序。作为皂化值的比率所谓的最终产品增加,绝缘油的降解进一步发展。根据以上研究结果,结合先前研究中的解离性能评估方法和考虑水饱和度的击穿电压,建立了一种综合评估陈旧油的方法。然后将其应用于现场时效绝缘油作为示例,从而可以评估更换绝缘油的需求。

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