大足石刻北山石窟悬吊锚杆加固工程的稳定性
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作者:
作者单位:

1.大足石刻研究院,重庆 402360;2.中国矿业大学(北京) 深部岩土力学与地下工程国家重点实验室;力学与建筑工程学院,北京 100083;3.中国文化遗产研究院,北京 100029;4.中国电建集团北京勘测设计研究院有限公司,北京 100024

作者简介:

冯太彬(1976- ),男,副研究馆员,主要从事石质文物保护及修复研究,E-mail:903378283@qq.com。
FENG Taibin (1976- ), associate research librarian, main research interests: protection and restoration of stone cultural relics, E-mail: 903378283@qq.com.

通讯作者:

刘珂源(通信作者),男,博士生,E-mail:lky0313@163.com。

中图分类号:

TU476

基金项目:

重庆市自然科学基金(cstc2021jcyj-msxmx0903)


Stability of suspension anchor reinforcement project of Beishan Grottoes in Dazu Rock Carvings
Author:
Affiliation:

1.Academy of Dazu Rock Carvings, Chongqing 402360, P. R. China;2.State Key Laboratory for Geomechanics & Deep Underground Engineering; School of Mechanics & Civil Engineering, China University of Mining & Technology (Beijing), Beijing 100083, P. R. China;3.China Acadmey of Cultural Heritage, Beijing 100029, P. R. China;4.Beijing Enigneering Corporation Limited, Beijing 100024, P. R. China

Fund Project:

Natural Science Foundation of Chongqing (No.cstc2021jcyj-msxmx0903)

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    摘要:

    在多年风化作用和自重应力的影响下,大足石刻北山168窟的石窟壁和顶板位置出现了大量裂缝,导致洞窟顶部围岩的稳定性变差,面临失稳坍塌的风险,为了对平顶石窟顶板破碎围岩进行有效加固,针对现场地质情况,采用悬吊锚杆加固方式。首先通过现场调查确定顶板裂缝的分布规律,分析石窟顶板开裂的主要原因;然后利用新奥法思想,在考虑最不利围岩受力的情况下计算锚杆的锚固长度;最后利用数值模拟手段,分析悬吊锚杆加固方法在降雨条件下石窟顶板的位移变化及应力情况。结果表明:在悬吊锚杆加固下,其顶板各个方向位移均不超过1 mm;石窟洞口位置及靠近洞内位置的应力较为集中,最大拉应力小于砂岩的抗拉强度值,顶板围岩处于稳定状态;悬吊锚杆加固中锚固段承受拉应力,平均所受轴力为31 kN,受力情况较好。从加固前后的监测曲线可以看出,悬吊锚杆加固方式减少了裂缝的波动值,可以认为在悬吊锚杆加固下石窟保持稳定状态。

    Abstract:

    Under the continuous influence of weathering and self-weight, there are a large number of cracks in the wall and roof of Beishan Cave 168 in Dazu Rock Carvings. These cracks lead to the deterioration of the stability of the surrounding rock at the top of the cave and the risk of instability and collapse. In order to effectively reinforce the broken surrounding rock of the roof of the flat-top grotto, this paper adopts a roof reinforcement method of suspended anchor in accordance with the geological conditions of the site. First, the main reasons for the cracking of the grotto roof are analyzed according to the distribution pattern of the roof cracks. Then, the anchorage length of the bolt is calculated by using the new Austrian method considering the most unfavorable surrounding rock stress. Finally, FLAC3D is used to analyze the displacement and stress changes of the grotto roof under rainfall conditions. The results show that the displacement of the roof in all directions is not more than 1 mm under the condition of suspended anchor reinforcement; the stress at the entrance of the grotto and near the inside of the grotto is relatively concentrated; the maximum tensile stress is less than the tensile strength of sandstone, and the roof surrounding rock is in a stable state; the average axial force of the bolt anchorage section is 31 kN. From the field monitoring data, it could be seen that the suspended anchor reinforcement reduces the fluctuation value of cracks. In summary, the grotto remains stable under the condition of suspended anchor reinforcement.

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冯太彬,刘珂源,雷啸天,蒋思维,陈卉丽,张兵峰,麻润杰,陶志刚.大足石刻北山石窟悬吊锚杆加固工程的稳定性[J].土木与环境工程学报(中英文),2025,47(5):167-176. FENG Taibin, LIU Keyuan, LEI Xiaotian, JIANG Siwei, CHEN Huili, ZHANG Bingfeng, MA Runjie, TAO Zhigang. Stability of suspension anchor reinforcement project of Beishan Grottoes in Dazu Rock Carvings[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2025,47(5):167-176.10.11835/j. issn.2096-6717.2023.074

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  • 收稿日期:2023-03-17
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  • 在线发布日期: 2025-11-03
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