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Thermal Analysis of Cables in Unfilled Troughs: Investigation of the IEC Standard and a Methodical Approach for Cable Rating

机译:未填充槽中的电缆的热分析:IEC标准的研究和电缆额定值的系统方法

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摘要

A robust algorithm, based on relaxation, is proposed for the implementation of the IEC Standard method for rating cables installed in unfilled troughs. Through hundreds of finite-element simulations, the validity range of the standardized equations is established. Studies are performed by varying the following parameters over a wide range: trough size, ambient air temperature, trough aspect ratio, position of cables, cable operating temperature, and intensity of solar radiation. A physically consistent analog thermal-electric equivalent circuit is proposed for the thermal rating of cables installed in unfilled troughs. In contrast with the standards, the equivalent circuit offers a methodological approach that considers all heat-transfer phenomena involved in cables in troughs, for example, the conduction of heat through the cable layers, the heat convection and radiation inside the trough, the conduction in the trough itself and soil, the convection to the surface air, and the solar radiation. Extensive finite-element verification in steady state and transients demonstrates the accuracy of the proposed equivalent circuit.
机译:提出了一种基于松弛的鲁棒算法,用于实施IEC标准方法以对安装在未填充槽中的电缆进行评级。通过数百次有限元模拟,建立了标准化方程的有效范围。通过在宽范围内改变以下参数来进行研究:槽尺寸,环境空气温度,槽纵横比,电缆的位置,电缆的工作温度和太阳辐射强度。为了安装在未填充槽中的电缆的热额定值,提出了一种物理上一致的模拟热电等效电路。与标准相反,等效电路提供了一种方法学方法,该方法考虑了槽中电缆所涉及的所有传热现象,例如,通过电缆层的热传导,槽内的热对流和辐射,槽本身和土壤,与地面空气的对流以及太阳辐射。在稳态和瞬态中的大量有限元验证证明了所提出等效电路的准确性。

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