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Thermodynamic modelling of buried transformer substations for dynamic loading capability assessment considering underground heat accumulative effect

机译:考虑地下热累积效应的动态加载能力评估埋地变电站热力学建模

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摘要

The lifetime cycle and secured service of buried transformers are constrained by their thermal insulation and loading conditions. This paper proposes an extended thermal circuit model for direct-buried transformer substations to dynamically evaluate the transformer loading capability. In the proposed model, the underground thermal interactions and energy balances among heat generation, transfer and storage in the transformer substation are represented with nonlinear thermal resistances and capacitances based on thermal-electrical analogies, and then hot-spot temperature (HST) dynamics can be captured from the nodal analysis on this R-C thermal equivalent circuit. Furthermore, the underground thermal accumulative effect is investigated for dynamic loading capability assessment considering the combined impact of heat accumulation in the surrounding soil caused by fluctuating transformer loads during prior operating periods. Finally, the finite element analysis with measured data is implemented for parameter tuning and model verification of the proposed thermodynamic model, and numerical simulations confirm the improvements of the proposed model for the transformer life extension and load management.
机译:埋地变压器的寿命周期和固定服务受到其绝热和负载条件的约束。本文提出了一种用于直接埋地变电站的扩展热电路模型,动态评估变压器负载能力。在所提出的模型中,变电站中的发热,转移和储存的地下热相互作用和能量余量被非线性热电阻和基于热电电阻的电容,然后可以是热点温度(HST)动态从该RC热量等效电路的节点分析中捕获。此外,考虑到在现有运行期间波动变压器负载波动载荷引起的周围土壤中的热量施加的综合影响,研究了地下热累积效果。最后,利用测量数据的有限元分析用于参数调谐和建议热力学模型的模型验证,数值模拟证实了变压器寿命扩展和负载管理的提出模型的改进。

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