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CFD-based evaluation of current-carrying capacity of power cables installed in free air

机译:基于CFD的自由空气中电力电缆载流能力评估

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Evaluation of current-carrying capacity of power cables and selection of cross-sectional area of their conductors are mainly performed in accordance with requirements of EN, IEC or IEEE standards. However, these standards do not provide all methods of cables installation and location which occur in practice. Thus, in some cases, performance of advanced modeling of various thermal phenomena, affecting power cables current-carrying capacity, is necessary. This paper presents the impact of solar radiation, wind direction and power cable line geographical direction on current-carrying capacity of power cables. The advanced computational fluid dynamics (CFD) simulations have been employed to calculate this capacity. Results of simulations and calculations indicate that the above mentioned factors cannot be omitted during selection of power cables to be installed in free air. The result presented in this paper can be treated as supplementary information to the requirements included in international standards.
机译:电力电缆的载流量评估和导体横截面积的选择主要是根据EN,IEC或IEEE标准的要求进行的。但是,这些标准并未提供实践中出现的所有电缆安装和定位方法。因此,在某些情况下,需要对各种热现象进行高级建模,从而影响电力电缆的载流能力。本文介绍了太阳辐射,风向和电力电缆线的地理方向对电力电缆载流量的影响。先进的计算流体动力学(CFD)仿真已被用来计算该能力。仿真和计算结果表明,在选择要安装在自由空气中的电缆时,不能忽略上述因素。本文中提出的结果可以作为国际标准所包含要求的补充信息。

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