特高压输电塔气弹模型风洞试验研究
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TB123; TU317+.1

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福建省电力公司科研项目(科2007-45)


Wind Tunnel Test on Aeroelastic Model of UHV Latticed Transmission Tower
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    摘要:

    为进一步了解特高压输电塔风振响应的特点,本文以正在建设的淮南-上海1000kV特高压线路中的一基双回路直线塔为原型,采用离散刚度法制作了输电塔气弹模型,进行了输电塔在紊流场中不同风速、不同风攻角下的气弹模型风洞试验。试验结果表明:输电塔模型的响应随风速的增大而增大;位移响应受风攻角的影响比较明显,在15度风时位移响应最大;各试验工况下,输电塔模型横风向的振动比较显著,X向和Y向的加速度响应处于同一量级且数值比较接近;Y向的加速度响应在0度风时最大,X向的加速度响应在90度风时最大,但任何工况下,输电塔X向的加速度响应均大于Y向的加速度响应。

    Abstract:

    An aeroelastic model was designed with discrete stiffness method to investigate the wind-induced response of UHV transmission tower. Prototype structure is a typical suspension tower, a part of 1000kV UHV double-circuit transmission line from Huainan to Shanghai. Wind tunnel test on the model has been conducted with different wind speeds and wind directions in a turbulent flow. According to the results of the test, it is obtained that wind-induced response of the model increases with the wind speed, displacement reaches maximum at 15o wind angle of attack, the vibration response of X-direction is close to that of Y-direction and the transverse response is evident. And acceleration response on the Y-direction reaches the maximum at 0o wind angle of attack, while X-direction reaches the maximum at 90o wind angle of attack, but for all cases acceleration RMS of X-direction is more evident than that of Y-direction.

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司瑞娟.特高压输电塔气弹模型风洞试验研究[J].同济大学学报(自然科学版),2010,38(5):673~678

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历史
  • 收稿日期:2009-02-24
  • 最后修改日期:2010-03-31
  • 录用日期:2009-09-10
  • 在线发布日期: 2010-06-09
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