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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Influence of solid insulating phase on streaming electrification of transformer oil
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Influence of solid insulating phase on streaming electrification of transformer oil

机译:固体绝缘相对变压器油流化带电的影响

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Due to increased demand of electrical power, the trend of the capacity and voltage rating of power transformers increases with reliable design; especially in large oil-cooled power transformers. Consequently, the use of polymer blended and polymer coated insulations in such transformers are the most recent advances in modern technology. The consequences of the type of solid insulating material, in contact with the streaming oil, on the ECT (electrostatic charging tendency) of oil are the principal aim of this paper. ECT of transformer oil is experimentally investigated using different types of oils and solid insulting materials. Two laboratory analog cycles are used; namely, a closed and an open cycle. In the closed cycle, the investigated factors are the type and polarity of the applied voltage (/spl plusmn/10 kV and 10 kV/sub rms/ at 50 Hz), solid insulating material (polymeric and non-polymeric insulation), and oil type, temperature (20 to 70/spl deg/C) and velocity (1.5 to 3.25 m/s). Good agreement is achieved between the measured data under ac and dc voltages of both the conduction and streaming currents, and the derived formulas. The currents increase exponentially with oil temperature, velocity and applied voltage. All solid dielectrics used show quantitative as well as qualitative changes in oil electrification especially at low temperatures. In the open cycle, both the rotating cylinder speed (430 rpm) and the oil volume are kept constant, and the oil temperature is raised to 120/spl deg/C for different types of oils and solid dielectrics. ECT depends on the oil type and is activated with temperature. Cellulose-based dielectrics give the highest ECT and coating of these dielectrics with epoxy resin enhances the ECT. Different suppression characteristic is obtained using Theophylline in different fresh oils.
机译:由于对电力的需求增加,可靠的设计使电力变压器的容量和额定电压的趋势增加。特别是在大型油冷式电力变压器中。因此,在这种变压器中使用聚合物混合绝缘材料和涂有聚合物的绝缘材料是现代技术的最新进展。本文的主要目的是,与流油接触的固体绝缘材料类型对油的ECT(静电带电趋势)的影响。使用不同类型的油和固体绝缘材料对变压器油的ECT进行了实验研究。使用了两个实验室模拟周期。即封闭和开放的循环。在闭合循环中,研究的因素是施加电压的类型和极性(/ spl plusmn / 10 kV和10 kV / sub rms /在50 Hz时),固体绝缘材料(聚合物和非聚合物绝缘)和油类型,温度(20至70 / spl deg / C)和速度(1.5至3.25 m / s)。交流电流和直流电流在交流和直流电压下的测量数据与推导的公式之间取得了很好的一致性。电流随油温,速度和施加的电压呈指数增加。所使用的所有固体电介质在油的电气化方面均显示出定量以及质的变化,尤其是在低温下。在开式循环中,旋转气缸速度(430 rpm)和油量都保持恒定,并且对于不同类型的油和固体电介质,油温升高到120 / spl deg / C。 ECT取决于油的类型,并随温度而激活。纤维素基电介质具有最高的ECT,而这些电介质的环氧树脂涂层可增强ECT。使用茶碱在不同的新鲜油中可获得不同的抑制特性。

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