Anti-overturning analysis of in-situ jacking foundation for 500KV high voltage transmission tower

Tao Zhang, Yangsheng Zhang, Kong-liang Chen
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Abstract

Taking the 500 kV double-circuit transmission line jacking project as the background, aiming at the overturning phenomenon that may occur in the foundation of the high-voltage transmission tower jacking process, the finite element software is used to establish a three-tower six-line tower-line coupling system calculation model, considering the wires Numerical analysis of wind load response, self-weight effect of transmission tower, and tower-line coupling tension. The research results show that the y-direction bending moment value of each independent foundation will be significantly changed after the jacking, and the y-direction bending moment value of the sole base No. 2 will have a greater increase. In addition, the y-direction bending moment values of the upper and lower connecting beams cast in-situ after the transmission tower is lifted will suddenly increase, indicating that when the high-voltage transmission tower is lifted in situ, each foundation must be strengthened to avoid longitudinal restraints at the bottom of the foundation. Sudden instability of bending moment.
500KV高压输电塔原位顶进基础抗倾覆分析
以500 kV双回路输电线路顶升工程为背景,针对高压输电塔顶升过程中基础可能出现的倾覆现象,利用有限元软件建立了三塔六线塔线耦合系统计算模型,考虑导线风荷载响应、输电塔自重效应、塔线耦合张力的数值分析。研究结果表明:顶进后各独立基础的y向弯矩值变化较大,其中2号底座y向弯矩值增大较大。此外,输电塔吊装后现浇上下连接梁的y向弯矩值会突然增大,说明高压输电塔在原地吊装时,必须对各基础进行加固,避免基础底部出现纵向约束。弯矩突然失稳。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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