杭州亚运会拳击场馆杭州体育馆屋盖单层索网结构提升改造分析与设计

引用文献:

杨学林 周平槐 李晓良 郜海波. 杭州亚运会拳击场馆杭州体育馆屋盖单层索网结构提升改造分析与设计[J]. 建筑结构,2022,48(15):98-104.

YANG Xuelin ZHOU Pinghuai LI Xiaoliang GAO Haibo. Analysis and design on the upgrading retrofit of Hangzhou Gymnasium roof single-layer cable-net structure for Asian Games Hangzhou boxing venue[J]. Building Structure,2022,48(15):98-104.

作者:杨学林 周平槐 李晓良 郜海波
单位:浙江省建筑设计研究院
摘要:杭州体育馆是我国较早建成的马鞍形单层索网体育建筑,屋盖单层索网结构由56根承重索和50根稳定索组成。2022年杭州亚运会将用作拳击比赛主场馆,需进行提升改造设计。新屋面系统重量增加,导致原承重索最大拉力略超设计值,需要进行结构加固。通过不同方案的比选,确定了新增11根拉索的改造方案。进行了屋盖索网结构从拆除到增索、新建屋面系统的全过程施工模拟分析。结果表明,原屋面系统拆除过程中索网产生的较大上抬变形,必须设置配重以减小变形。以拆除前的现状为参考,原屋面系统拆除时索网上抬变形,新屋面系统安装完毕后则又比现有位置下降54mm,承重索的拉力略有增加。屋盖索网结构对风荷载和雪荷载较为敏感,地震作用和温度作用下产生的变形和内力可以忽略不计。此外,还进行了新索旧索索夹和新索端部节点的设计,并通过缠绕防腐胶带的方式提升索网耐久性。
关键词:杭州亚运会;杭州体育馆;单层索网结构;马鞍形屋面;承重索;稳定索;提升改造;施工全过程模拟;耐久性
作者简介:杨学林,博士,正高级工程师,一级注册结构工程师,主要从事复杂结构设计研究工作,Email:YXL85050009@163.com。周平槐,硕士,正高级工程师,一级注册结构工程师,主要从事结构设计与分析工作,Email:anji18@126.com。
基金:浙江省建设科研项目(2021K128、2020K010)。
尊敬的用户,本篇文章需要2元,点击支付交费后阅读
参考文献[1] 李亚明,贾水钟,肖魁.大跨空间结构技术创新与实践[J].建筑结构,2021,51(17):98-105,140.
[2] 潘玉华,常强,马明,等.大跨度钢环壳预张力索网屋盖整体结构在罕遇地震下的一种弹塑性时程分析新方法[J].建筑结构,2021,51(S1):727-733.
[3] 王泽强,周储君,韩庆华,等.单层双向正交马鞍形索网结构施工仿真计算研究与应用[J].建筑钢结构进展,2021,23(5):89-100.
[4] 王哲,白光波,陈彬磊,等.国家速滑馆钢结构设计[J].建筑结构,2018,48(20):5-11.
[5] 杭州市体育馆改造方案[R].杭州:浙江省建筑设计研究院,2018.
[6] 杭州体育馆改造提升工程前期检测及安全评估检测报告[R].杭州:浙江大学,2018.
[7] 李晓良,杨学林,郜海波,等.杭州亚运会拳击场馆杭州体育馆提升改造工程结构加固设计[J].建筑结构,2022,52(15):91-97.
[8] 建筑结构荷载规范:GB 50009—2012[S].北京:中国建筑工业出版社,2012.
[9] 建筑抗震设计规范:GB 50011—2010[S].北京:中国建筑工业出版社,2010.
[10] 孙岩.百米级马鞍形正交单层索网设计及施工关键技术研究[D].南京:东南大学,2016.
Analysis and design on the upgrading retrofit of Hangzhou Gymnasium roof single-layer cable-net structure for Asian Games Hangzhou boxing venue
YANG Xuelin ZHOU Pinghuai LI Xiaoliang GAO Haibo
(Zhejiang Province Institute of Architectural Design and Research)
Abstract: Hangzhou Gymnasium is a sports building with saddle-shaped single-layer cable-net roof built earlier in our country. The single-layer cable-net roof structure consists of 56 load-bearing cables and 50 stability cables. Now the upgrading and retrofit design should be carried out just because it will be used as a venue for games boxing competitions in 2022 Hangzhou Asian Games. The weight of the new roof system increases, resulting in the maximum tensile force of the original load-bearing cable slightly exceeding the design value, which requires structural reinforcement. Through the comparison of different schemes, the reconstruction scheme of adding 11 new cables was determined. The simulation analysis of the whole construction process was carried out from removing the original roof system to increasing the cables and building the new roof system. The results show that due to the large lifting deformation of the cable-net during the demolition of the original roof system, counterweights must be set to reduce the deformation. Taking the current situation before demolition as a reference, the cable-net was lifted and deformed during the demolition of the original roof system. After the installation of the new roof system, it was lowered by 54 mm compared with the existing position, and the tension of the load-bearing cable increased slightly. Roof cable-net structure is sensitive to wind load and snow load, and the deformation and internal force caused by earthquake action and temperature action can be ignored. In addition, the design of the new cable and the old cable clip and the new cable end node was also carried out, and the durability of cable-net was improved by wrapping anti-corrosion tape.
Keywords: Asian Games Hangzhou; Hangzhou Gymnasium; single-layer cable-net structure; saddle-shaped roof; load-bearing cable; stability cable; upgrading retrofit; simulation of the whole construction process; durability
378 0 0
文字:     A-     A+     默认 取消