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Design Considerations for Selection of High Temperature Low Sag Conductor for Overhead Lines

机译:架空线高温低垂导线选择的设计考虑

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Indian Power System has made rapid strides in the past two decades and poisedfor phenomenal growth in coming years to make pace with the economic resurgence in the country. However, high population density, growth of habitation & infrastructure and increasing environmental concerns have thrown challenges for the planners and developers ofpower systems to deal with the right-of-way (ROW) constraints and to maximize the power output per ROW. Power Grid Corporation of India Ltd. (POWERGRID) in its endeavor for sustainable development of transmission network in the country has taken various initiatives involving new technologies / innovative solutions in this regard.High Temperature Low Sag Conductors (HTLS) offer an option of increasing the power transfer capacity of thermally challenged overhead transmission lines and are capable of being operated continuously at temperatures in the range of 150°C-210°C while exhibiting lower sag vis-a-vis conventional conductors. Because of higher temperature operation, these conductors can carry higher power (upto 2-2.5 times equivalent size conventional conductors) at nearly equivalent sag. Various types of HTLS conductors are being used by transmission utilities in different countries viz. INVAR, GAP, ACSS, ACCC, ACCR etc. Such conductors have been globally used for uprating of existing transmission lines thereby eliminating the need of constructing additional transmission lines along the same corridor and preserving the scarce ROW. POWERGRID has introduced the HTLS conductors in the country and adopted the same for re-conductoring of existing lines as well as for some of the new 400 kV lines by adopting twin HTLS conductors in place of quadruple/triple bundle conventional conductors, resulting in optimization of resources, efforts & cost.Design and selection ofappropriate HTLS conductor is an important exercisefor both reconductoring and new line construction applications involving various design considerations depending upon case to case. The paper briefly highlights different type of HTLS conductors and covers important design considerations for selection of HTLS conductor for different applications. Salient features & parameters of HTLS conductors used by POWERGRID for different transmission line projects are also presented in the paper.
机译:在过去的二十年中,印度电力系统取得了长足的进步,并有望在未来几年中实现惊人的增长,以跟上该国的经济复苏步伐。然而,高人口密度,居住环境和基础设施的增长以及对环境的日益关注,给电力系统的规划者和开发商带来了挑战,以应对路权(ROW)限制并最大程度地提高每个ROW的电力输出。印度电网公司(POWERGRID)为促进该国输电网络的可持续发展,已采取了包括新技术/创新解决方案在内的各种举措。高温低垂导体(HTLS)提供了一种增加具有热挑战性的架空传输线的最大功率传输能力,并且能够在150°C-210°C的温度范围内连续运行,同时相对于传统导体具有更低的垂度。由于在更高的温度下工作,这些导体可以以几乎相等的垂度承载更高的功率(最大为传统导体的2-2.5倍)。不同国家的输电公司正在使用各种类型的HTLS导体。 INVAR,GAP,ACSS,ACCC,ACCR等。此类导线已在全球范围内用于升级现有传输线,从而无需在同一走廊上建造额外的传输线并保留稀缺的ROW。 POWERGRID已在该国引入了HTLS导体,并采用双HTLS导体代替了四重/三束传统导体,对现有线路以及某些新的400 kV线路进行了重导体化,从而优化了资源,工作量和成本。设计和选择合适的HTLS导线对于重导和新线路施工应用而言都是一项重要的工作,其中涉及到不同的设计考虑因素(视情况而定)。本文简要介绍了不同类型的HTLS导体,并涵盖了针对不同应用选择HTLS导体的重要设计注意事项。本文还介绍了POWERGRID用于不同输电线路项目的HTLS导体的显着特征和参数。

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