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Suitability of natural vegetable seed oil as liquid dielectric coolant in an insulation system

机译:天然植物种子油在绝缘系统中作为液体介电冷却剂的适用性

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The liquid dielectric used along with solid insulation in transformers and other equipments is the mineral oil and is in wide use for several decades particularly for power frequency applications. The active parts of electrical power transformers are normally immersed in mineral oil which acts as an insulating medium between energised parts of electrical equipment [1,2]. Silicone fluid is used as a liquid dielectric for high frequency applications to exploit its higher operating temperatures. In spite of many advantages, poor biodegradability of mineral oil and sensitivity of silicone fluid to corona, results in contamination of soil and water in the event of an accidental spill. In view of this, there have been strong efforts all over the world to find a suitable substitute for mineral oil based transformer oil. Also, replacement for silicone fluid, (mainly used for high voltage / high frequency transformer) has not been explored to a large extent in recent times. Last couple of decades has seen success in the development of natural esters as dielectric coolants for use in transformers. Envirotemp, Biotemp and Rapsol-T are examples which are based on Sunflower oil, Soya bean oil and Rape seed oil. The aim of the present work is to investigate suitability of natural vegetable seed oil as a liquid dielectric coolant for an insulation system, particularly transformers (both power transformers and high frequency and /or high voltage transformers). It is proposed to study and characterize the properties of natural vegetable seed oil to be used in an insulation system. Therefore, an indigenous oil (natural vegetable seed oil) codenamed as IO19 is considered for the study and is investigated for its dielectric behavior. The oil is initially studied for its dielectric properties in ¿¿¿as received¿¿¿ condition and later subjected to various treatments for improving the properties. After treatments, treated fresh sample of IO19 and thermally treated sample of IO19 with and with- ut Nomex are also considered for study. The dielectric behavior of samples of IO19 oil under the influence of temperature and frequency is investigated to check for its suitability in an insulation system. The results are compared with that of silicone fluid.
机译:与变压器和其他设备中的固体绝缘一起使用的液体电介质是矿物油,并且已广泛使用了数十年,尤其是在工频应用中。电力变压器的有源部件通常浸在矿物油中,矿物油充当电气设备带电部件之间的绝缘介质[1,2]。硅油用作高频应用的液体电介质,以利用其较高的工作温度。尽管存在许多优点,但矿物油的生物降解性差,并且硅油对电晕的敏感性差,一旦发生意外溢出,会污染土壤和水。有鉴于此,世界各地都在努力寻找适合矿物油的变压器油的替代品。另外,近来还没有在很大程度上研究替代硅油(主要用于高压/高频变压器)。在过去的几十年中,人们成功地开发了天然酯作为变压器用介电冷却剂。 Envirotemp,Biotemp和Rapsol-T是基于葵花籽油,大豆油和菜籽油的实例。本工作的目的是研究天然植物种子油作为绝缘系统,特别是变压器(包括电力变压器和高频和/或高压变压器)的液体介电冷却剂的适用性。建议研究和表征用于绝缘系统的天然植物种子油的特性。因此,本研究考虑了代号为IO19的原生油(天然植物种子油),并对其介电性能进行了研究。最初研究了该油在“接收”状态下的介电性能,随后进行了各种处理以改善其性能。处理后,还考虑了用Nomex进行处理的IO19新鲜样品和IO19热处理样品。研究了IO19油样品在温度和频率影响下的介电性能,以检查其在绝缘系统中的适用性。将结果与硅油进行比较。

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