750 kV输电线路工程V型拉线塔设计优化

冯云巍

电力建设 ›› 2013, Vol. 34 ›› Issue (5) : 40-44.

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PDF(759 KB)
电力建设 ›› 2013, Vol. 34 ›› Issue (5) : 40-44.
输配电技术

 750 kV输电线路工程V型拉线塔设计优化

  • 冯云巍
作者信息 +

Optimization Design of V-type Guyed Tower in 750 kV Transmission Line Project

  •  
    FENG Yunwei
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文章历史 +

摘要

利用非线性有限元软件TOWER建立V型拉线塔的结构计算模型,以减轻塔重为目标,从挂线方式、塔头型式、拉线设置方案及主柱截面几个方面进行优化分析,并与自立式铁塔进行技术经济比较。结果表明V型拉线塔进行优化设计后可取得显著的经济效果,其优化措施可为今后相关工程的V型拉线塔设计提供参考。

Abstract

A calculation model of V-type guyed tower was established by nonlinear finite element software tower. In order to reduce the tower weight, optimization analysis was carried out from aspects of conductor hanging way, tower head type, cable setting scheme and main column section, as well as the tower’s technology and economy were compared with those of self-standing tower. The results showed that the optimal design of V-type guyed tower could achieve significant economic effect, and its optimization measures could provide references for V-type guyed tower design in relevant projects in the future.

关键词

750 kV输电线路 / V型拉线塔 / 非线性有限元 / 优化设计

Key words

750 kV power transmission line / V-type guyed tower / nonlinear finite element / optimization design

引用本文

导出引用
冯云巍.  750 kV输电线路工程V型拉线塔设计优化[J]. 电力建设. 2013, 34(5): 40-44
FENG Yunwei.
Optimization Design of V-type Guyed Tower in 750 kV Transmission Line Project
[J]. Electric Power Construction. 2013, 34(5): 40-44

参考文献

[1]杨磊,吴彤,郝阳,等.V 型拉线塔在750 kV 输电线路工程中的应用[J].电力建设,2012,33(3):45-48.


[2]ASCE 10—97 Design of Latticed Steel Transmission Structures[S].ASCE,1997.

[3]ANSI/AISC 360—10 Specification for Structural Steel Buildings[S]. ANSI/AISC,2010.

[4]郭峰,李晨,施菁华,等. 直流输电线路双柱悬索拉线塔设计[J].电力建设,2012,33(5):78-81.

[5]GB 50545—2010 110 kV~750 kV架空输电线路设计规范[S].

[6]DL/T 5154—2002 架空送电线路杆塔结构设计技术规定[S].

[7]GB 50017—2003 钢结构设计规范[S].

[8]YB/T 5004—2001镀锌钢绞线[S].

[9]GB 50389—2006 750 kV架空送电线路施工及验收规范[S].

[10]DL/T 5219—2005 架空送电线路基础设计技术规定[S].

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