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Journal of Zhejiang University SCIENCE A
ISSN 1673-565X(Print), 1862-1775(Online), Monthly
2022 Vol.23 No.7 P.543-563
Coordinated deformation control technologies for the high sidewall–bottom transfixion zone of large underground hydro-powerhouses
Abstract: It is imperative to understand the spatial and temporal coordination deformation mechanism and develop targeted deformation control technologies for high sidewall–bottom transfixion (HSBT) zones to guarantee the stability of rock surrounding underground hydro-powerhouses under complex geological conditions. In this study, the spatial and temporal coordinated deformation control of HSBT zones was addressed from the aspects of the deformation mechanism, failure characteristics, and control requirements, and some coordinated deformation control technologies were proposed. On this basis, a case study was conducted on the deformation control of the HSBT zone of the underground powerhouse at the Wudongde hydropower station, China. The results showed that the relationship between excavation and support, and the mismatch of deformation and support of the surrounding rock mass in the HSBT zone of underground caverns with a large span and high in-situ stress can be appropriately handled. The solution requires proper excavation and construction procedures, fine blasting control, composite and timely support, and real-time monitoring and dynamic feedback. The technologies proposed in this study will ensure the safe, high-quality, and orderly construction of the Baihetan and Wudongde underground caverns, and can be applied to other similar projects.
Key words: Underground powerhouse; Coordinated deformation mechanism; High sidewall–bottom transfixion (HSBT); Cavern group; Control technology
1清华大学计算机科学与技术系,中国北京市,100084
2国家数字交换系统工程技术研究中心,中国郑州市,450002
3网络通信与安全紫金山实验室,中国南京市,211111
摘要:6G网络将面临更为复杂的内生安全问题,亟需提出新的普适性安全理论,建立新的实践规范,以应对网络空间“未知的未知”安全威胁。本文首先阐述了网络空间内生安全发展的新范式,介绍了6G网络安全的需求愿景。进而详细分析了6G核心网、无线接入网、新兴使能技术等面临的安全问题,以及相应的安全技术发展现状,分析了内生安全与传统安全的融合发展,进而给出网络空间内生安全新范式指导下的相关安全理论与技术构想。
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DOI:
10.1631/jzus.A2200060
CLC number:
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On-line Access:
2024-08-27
Received:
2023-10-17
Revision Accepted:
2024-05-08
Crosschecked:
2022-07-19