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首页> 外文期刊>Power Delivery, IEEE Transactions on >Introducing Mutual Heating Effects in the Ladder-Type Soil Model for the Dynamic Thermal Rating of Underground Cables
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Introducing Mutual Heating Effects in the Ladder-Type Soil Model for the Dynamic Thermal Rating of Underground Cables

机译:在阶梯型土壤模型中引入相互加热效应以实现地下电缆的动态热额定值

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摘要

The proper modeling of the transient thermal behavior of mutual heating effects between underground power cables is very important for the rating of transmission and distribution cables. The IEC standards proposed an accurate model based on exponential integrals that it can be difficult to implement in basic electrical software. The model is not consistent with the layered modeling of the cable thermal resistances. In this paper, a simple and easy-to-use alternative model is presented. It consists of injecting the correct current at the right position of the RC circuit representing the soil. The new model can accurately reproduce the full physics of the transient phenomenon and is consistent with the modeling of the cable used in the IEC standards themselves. The new model is tested and validated against numerous finite-element simulations for realistic cable installations.
机译:地下电缆之间相互加热作用的瞬态热行为的正确建模对于传输和分配电缆的额定值非常重要。 IEC标准提出了一个基于指数积分的精确模型,这在基本的电气软件中可能很难实现。该模型与电缆热阻的分层模型不一致。在本文中,提出了一种简单易用的替代模型。它包括在代表土壤的RC电路的正确位置注入正确的电流。新模型可以准确地再现瞬态现象的全部物理特征,并且与IEC标准本身中使用的电缆建模一致。针对大量实际的电缆安装,针对大量有限元模拟对新模型进行了测试和验证。

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