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Research on Real-time Calculation Model for Transient Temperature Rise of Direct Buried Single-core Cable

机译:直埋单芯电缆瞬态温度升高实时计算模型研究

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A lumped parameter model (LPM) was proposed to achieve the real-time calculation of transient temperature rise for buried single-core cable. In order to develop a model without monitoring cable surface temperature, the balanced thermal resistance and inductance were used to simulate the transient temperature characteristics in the process of heat diffusion. In the case studied, the temperature rise under the same condition was obtained with the LPM, finite element method, and commercial software (CYMCAP), respectively. The calculation results show that, the LPM can agree well with the other two methods, which verifies the accuracy of the method proposed in this paper. Furthermore, the model was improved through consideration of the effects of cable heat and environment temperature, respectively, based on the superposition principle of heat conduction. The calculation model was then promoted to be used for analysis of transient temperature rise with time-varying boundary conditions.
机译:提出了一种集总参数模型(LPM),以实现掩埋单芯电缆的瞬态温度升高的实时计算。为了在不监控电缆表面温度的情况下开发模型,使用平衡的热阻和电感来模拟热扩散过程中的瞬态温度特性。在研究的情况下,通过SPM,有限元方法和商业软件(CYMCAP)获得与相同条件相同的升温。计算结果表明,随着其他两种方法,LPM可以很好地吻合本文提出的方法的准确性。此外,通过考虑电缆热和环境温度的影响,基于热传导原理,改善了该模型。然后促进计算模型用于分析瞬态温度升高,随着时变边界条件。

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