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The Formulation of Models for the Description of Streaming Electrification in Transformer Structures

机译:变压器结构中流带电描述模型的建立

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The incidence of streaming electrification in large transformers (and other industrial equipment) has generated the need for both an understanding of the underlying physics and a mathematical description of the phenomenon. Modeling is needed since the mechanisms do not readily scale and small-scale laboratory experiments are limited in predicting performance. The development of both steady-state and transient descriptions of the streaming electrification process is described for a rectangular duct structure. The nature of the phenomenon is such that appropriate assumptions and approximations need to be made. As a consequence, some experimental verification of the outcomes, at least in qualitative form, is also included. The entrainment of charge from the interface charge layers also intimately involves the flow of the liquid. A description of the flow regimes and a transient solution of the charge development through a duct are thus an integral part of the modeling effort. The utility of the steady-state model developed is demonstrated by application to an oil-cellulose system typical of a large core-form transformer. The method advocated takes advantage of the repeat duct arrangement in such units. The results presented allow the internal behavior of such a unit to be studied in considerable depth, and provide insight into the complex interplay between generation and relaxation in circumstances when flow rates, temperature, external fields and influent charge are changed.
机译:大型变压器(和其他工业设备)中流化电气化的发生已经引起了对基本物理学的理解和对该现象的数学描述的需求。需要建模,因为机制不易扩展,并且小型实验室实验在预测性能方面受到限制。矩形管道结构描述了流态化电气过程的稳态和瞬态描述。这种现象的性质使得需要做出适当的假设和近似。结果,至少包括定性形式的结果的一些实验验证也包括在内。来自界面电荷层的电荷夹带还紧密地涉及液体的流动。因此,对流态的描述以及通过管道的电荷发展的瞬态解是建模工作不可或缺的一部分。开发的稳态模型的实用性通过将其应用到大型铁芯变压器的典型油-纤维素系统中得到证明。所提倡的方法在这种单元中利用了重复管道的布置。给出的结果可以对这种装置的内部行为进行相当深入的研究,并且可以洞察流量,温度,外部场和进水量变化时环境中产生与松弛之间的复杂相互作用。

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