个人信息Personal Information
教授
博士生导师
硕士生导师
主要任职:President of international exchange committee of the Chinese Society of Rock Mechanics and Engineering CSRME
其他任职:国际岩石力学与岩石工程学会(ISRM)中国国家小组副主席
性别:男
毕业院校:东北大学
学位:博士
所在单位:土木工程系
办公地点:综合实验四号楼330
联系方式:tca@mail.neu.edu.cn
基于微震监测的大岗山高拱坝坝踵蓄水初期变形机制研究
点击次数:
发表时间:2022-10-10
发表刊物:岩石力学与工程学报
所属单位:建设工程学部
卷号:36
期号:5
页面范围:1111-1121
ISSN号:1000-6915
摘要:The safety of the heel of the concrete high arch dam is highly concerned
during the initial impoundment. The microseismic monitoring system was
installed for the first time in China at the high arch dam heel. The
real-time monitoring of the micro-cracks was achieved in the heel zone
of the Dagangshan arch dam during the initial impoundment. The
deformation mechanism of the arch dam heel and its relationship with the
microseismic activities were investigated. The P wave velocity was
determined using the manual tapping test and was 4 300 m/s with the
error of system positioning less than 8 m. The event waveforms were
denoised. The automatic positioning results were manually verified for
better accuracy. The results proved the feasibility of applying the
microseismic monitoring technology in the large-scale concrete
structures. During the initial impoundment period,the microseismic
activities of the high arch dam heel were closely related to the water
level of reservoir. The accumulation area of micro-cracks was
transferred from the dam heel to the dam toe. The deformation of the toe
area of dam increased and of the heel area decreased. The process of
microseismic deformation of the dam heel zone revealed the inducement of
the crack at the base corridor vault at the elevation of 940 m. The
results can provide reference for the studies on the microseismic
monitoring of concrete high arch dams as well as the dam working
performances.
备注:新增回溯数据