首页> 外文期刊>Journal International Association on Electricity Generation, Transmission and Distribution >Upgradation of Exisiting 66 kV Transmission Line with Suitable HTLS Conductor Technology in Nepal
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Upgradation of Exisiting 66 kV Transmission Line with Suitable HTLS Conductor Technology in Nepal

机译:尼泊尔采用合适的HTLS导线技术升级现有的66 kV输电线路

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Utilities in almost all parts of the world face a common obstacle in the construction of new overhead transmission line - obtaining land for their clearway (ROW). Moreover, due to the ever increasing power demand and pressing needs of integrating renewable energy sources into the grid, increasing the power transfer capacity of existing transmission line, seems to be the one of the viable solution. The present condition of the existing transmission corridor may be completely different from the one designed years ago. Hence, the selection of suitable HTLS conductor technology considering ruling span and existing tower loadings may not meet the ground clearance requirements. So, evaluating with respect to present conditions like actual ground clearance of the complete transmission corridor, current tower loadings, spotting and weather conditions is more important and would bring cost effective and reliable solution. This paper elaborates the advantages of selecting technology, considering the present conditions of the transmission corridor over the ruling span methodology, in one such case in Nepal (Baneshwar S/S to Bhaktapur S/S). The surveyed data of the existing line has been used in PLS CADD for the selection of suitable HTLS conductor technology to double the power evacuation capacity considering optimum cost and reliability.
机译:在建造新的架空输电线路时,几乎世界各地的公用事业都面临着共同的障碍-为他们的净空道路(ROW)获得土地。此外,由于不断增长的电力需求以及将可再生能源整合到电网中的迫切需求,增加现有输电线路的电力传输能力似乎是可行的解决方案之一。现有传输通道的现状可能与几年前设计的完全不同。因此,在考虑了跨度和现有塔架载荷的情况下,选择合适的HTLS导体技术可能无法满足离地间隙的要求。因此,相对于当前条件进行评估,例如整个传输通道的实际离地距离,当前铁塔负载,观测点和天气条件,这一点更为重要,它将带来具有成本效益的可靠解决方案。本文阐述了选择技术的优势,在尼泊尔的一个案例中(从Baneshwar S / S到Bhaktapur S / S),考虑了基于跨度方法论的传输通道的当前条件。考虑到最佳成本和可靠性,现有线路的调查数据已用于PLS CADD中,以选择合适的HTLS导体技术,以使电力疏散能力增加一倍。

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