常规导体高温运行时的风险评估和蠕变

F. Massaro, L. Dusonchet
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引用次数: 3

摘要

随着电力市场放松管制的出现,输电线路导体的运行温度和过载温度的升高引起了输电系统运营商(tso)和配电系统运营商(dso)对现有线路常规裸导体温度升高的影响的关注。现在修建新线路是非常困难的,因为获得路权、公众干预等成本增加了....现在,将新线路投入使用所需的成本和交货时间增加了,电力市场上的业务因传输可能性有限而减少。因此,公用事业公司正试图通过修改现有线路的操作来获得尽可能多的容量。过去,公用事业公司对线路的评级一直很保守;今天,随着对环境条件的更好理解以及监测仪器和复杂分析工具的改进,影响导体温度的参数的不确定性,公用事业公司正在以比过去更高的置信度对更高温度下的线路进行评级。本文将讨论高温塑性蠕变伸长对常规导体的下垂和张力的影响。利用IEEE std开发的方程,可以计算出导体在高温下的蠕变预测。本文的目的是提供一般建议,以保持足够的离地间隙,以确保线路的安全运行;如果充分了解、考虑和管理相关的负面影响,在更高的温度下操作是可能的。
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Risk evaluation and creep in conventional conductors caused by high temperature operation
The advent of electricity market deregulation, the increased operating and overload temperatures of transmission line conductors have caused concern among TSOs (Transmission System Operators) and DSOs (Distribution System Operators) about the effect of elevated temperatures on conventional bare conductors of existing line. Nowadays building new lines is very difficult cause of increased costs to obtain rights of way, public intervention, etc.... Cost and lead times required to place new lines into service are now increased and the business in electric market is reduced for the limited possibility of transmission. Therefore, utilities are attempting to gain as much capacity as possible modifying operation on existing lines. In the past, utilities have been conservative in rating their lines; today the uncertainties in parameters which influence conductor temperature, with a better understanding of environmental conditions and improvements in monitoring instruments and sophisticated analysis tools, utilities are rating lines at higher temperatures with higher level of confidence than in the past. In this paper will be discussed the effects of high temperature plastic creep elongation on the sags and tensions for a conventional conductor. Using equations developed by IEEE Std. the predicted creep for a conductor under high temperature operation can be calculated. The aim of this paper is to provide general recommendations to maintain adequate ground clearance for the safe operation of a line; itpsilas possible to operate at a higher temperature if the associated negative effects are adequately understood, considered and managed.
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