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Dynamic Line Rating of overhead transmission lines under natural convective cooling

机译:自然对流冷却下架空输电线路的动态线路额定值

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One of the problems for the implementation of a Dynamic Line Rating Scheme (DLRS) in Switzerland is that the wind, the largest cooling mechanism for a transmission line, can not be reliably predicted. A first step to deliver a practical solution for this problem requires an assessment of the worst-case-scenario for the convective cooling power of lines. That is, the situation when only natural convective cooling is present. In this document it is reported an experimental study of the natural cooling power on an All Aluminum Alloy Conductor (AAAC) used in the Swiss transmission grid. Then it is shown that the formulas available in the literature for natural convective cooling power follow closely the experimentally measured natural cooling power. Also, a natural convection worst case scenario is evaluated by comparing a zero-wind DLRS with the seasonal line rating scheme which is currently in use in the northern low lands of Switzerland. This comparison shows that the use of a DLRS can help to assess the safety and current capacity of the grid.
机译:在瑞士实施动态线路额定值计划(DLRS)的问题之一是,无法可靠地预测风,这是传输线的最大冷却机制。为解决此问题提供切实可行的解决方案的第一步,需要评估管道对流冷却功率的最坏情况。即,仅存在自然对流冷却的情况。在该文件中,报告了对瑞士输电网中使用的全铝合金导体(AAAC)进行自然冷却的实验研究。然后表明,文献中自然对流冷却功率的公式与实验测得的自然冷却功率密切相关。此外,通过将零风DLRS与目前在瑞士北部低地上使用的季节性线路评估方案进行比较,评估了自然对流最坏情况。这种比较表明,使用DLRS可以帮助评估电网的安全性和当前容量。

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