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首页> 外文期刊>Elektrotechnik und Informationstechnik >Use of high thermal limit conductors in the replacement of 220 kV overhead lines in the Tirolean Alps
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Use of high thermal limit conductors in the replacement of 220 kV overhead lines in the Tirolean Alps

机译:使用高热限制导体代替蒂罗尔阿尔卑斯山的220 kV架空线

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The distribution system operator TIWAG-Netz AG operates a 220 kV grid in the alpine region of Tirol. Due to the age of the conductors, the fittings and the pylons (approximately 50 years), the question has arisen as to whether, for parts of these double overhead lines about 85 km long between Zell am Ziller and Site, there may be other options available besides complete replacement which ought to be examined. Since on these 220 kV double-circuit lines, secure operation (n - 1 criterion) cannot even now be maintained at several times of the year, that is, even transgressions of the rated current have occurred, different solutions to expand the grid have been examined. The results of the analysis were that as an interim solution for approximately the next 15-20 years, the use of high thermal limit conductors (ZTACIR conductors) would be technically and economically the most feasible solution. To begin with in the report, operational aspects in using ZTACIR conductors, e.g. load flow, grid losses, reactive power demand are explained and depicted, to illustrate why the use of ZTACiR conductors was decided upon, despite the higher costs of the conductors compared to conventional ACSR conductors and higher costs of fittings and installation. Using a ZTACIR conductor several crucial aspects had to be considered: ground clearance without selective tower elevations, mechanical structure loads without increase of tensile stresses and weight- and diameter-identical conductor design, which has proven its reliability over decades in alpine regions. Extensive conductor tests were used to determine the transition point, the rate of thermal expansion and the elasticity modulus. The design of the conductors and components such as fittings and isolators needed to ensure that at the maximum operating current under design conditions neither conductor nor components assumed temperatures that would lead to a reduction in their mechanical strength or diminish the holding power of screw terminals or the long-term quality of electrical contacts. Special installation requirements such as roll diameter, suitable attachment points for conductor pre-stressing, tower statics, the use of appropriate work damps and slings and the choice of installation points of the rope winch equipment in Alpine terrain presented some particular challenges.
机译:配电系统运营商TIWAG-Netz AG在蒂罗尔州的高山地区运营着一个220 kV的电网。由于导线,配件和塔的寿命(大约50年),对于在Ziller am Ziller和Site之间长约85 km的双架空线路中的一部分,是否存在其他问题提出了问题除了需要检查的完全替代产品外,还可以提供。由于在这条220 kV双回线上,一年甚至几次都无法维持安全运行(n-1标准),也就是说,即使发生了额定电流的越界,也已经出现了各种扩展电网的解决方案。检查。分析的结果是,作为大约未来15-20年的临时解决方案,在技术和经济上使用高热极限导体(ZTACIR导体)将是最可行的解决方案。首先从报告开始,介绍使用ZTACIR导体的操作方面,例如解释并描绘了潮流,电网损耗,无功功率需求,以说明为何决定使用ZTACiR导体,尽管与传统的ACSR导体相比,导体成本更高,而安装和安装成本更高。使用ZTACIR导体必须考虑几个关键方面:无选择性塔架抬高的离地间隙,不增加拉应力和重量和直径相同的导体设计的机械结构载荷,这已经证明了其在高山地区数十年来的可靠性。广泛的导体测试用于确定转变点,热膨胀速率和弹性模量。导体和组件(例如配件和隔离器)的设计需要确保在设计条件下在最大工作电流下,导体和组件都不会采用会降低机械强度或降低螺钉端子或接线端子保持力的温度。长期的电接触质量。特殊的安装要求,例如卷径,用于导体预应力的合适连接点,塔架静力,使用适当的工作阻尼器和吊索以及在高山地形中选择绞盘设备的安装点,都带来了一些特殊的挑战。

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