基于数字图像修正HC法的水工隧洞围岩精细化分级研究

U452.12; 现有水工隧洞围岩分级方法仍以经验性为主,易造成围岩分级结果存在偏差,进而导致隧洞支护设计不合理,甚至开挖过程发生围岩失稳.依托犬木塘水库大山岭引水隧洞工程,采用数字图像技术对HC法进行修正,可实现对水工隧洞进行精细化围岩分级,为合理的隧洞支护设计提供依据.为此,首先明确了水工隧洞围岩分级HC法中岩石强度采用点荷载试验,岩体完整程度、结构面状态、结构面产状采用数字图像技术进行确定的评分方法;其次,通过对九龙岭隧洞2号支洞的实际应用表明,所取岩体的岩石单轴抗压强度为24.22 MPa、结构面走向与洞轴线夹角为32.5°、结构面倾角为40.1°,结构面充填物主要为岩屑、呈微张状态、...

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Published in中国农村水利水电 no. 11; pp. 227 - 246
Main Authors 李颂章, 李星霖, 韦凡秋, 罗亮明, 夏裕栋
Format Journal Article
LanguageChinese
Published 湖南省水利水电勘测设计规划研究总院有限公司,湖南 长沙 410000%中南林业科技大学,湖南 长沙 410000%中南大学,湖南 长沙 410000 15.11.2024
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ISSN1007-2284
DOI10.12396/znsd.240557

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Abstract U452.12; 现有水工隧洞围岩分级方法仍以经验性为主,易造成围岩分级结果存在偏差,进而导致隧洞支护设计不合理,甚至开挖过程发生围岩失稳.依托犬木塘水库大山岭引水隧洞工程,采用数字图像技术对HC法进行修正,可实现对水工隧洞进行精细化围岩分级,为合理的隧洞支护设计提供依据.为此,首先明确了水工隧洞围岩分级HC法中岩石强度采用点荷载试验,岩体完整程度、结构面状态、结构面产状采用数字图像技术进行确定的评分方法;其次,通过对九龙岭隧洞2号支洞的实际应用表明,所取岩体的岩石单轴抗压强度为24.22 MPa、结构面走向与洞轴线夹角为32.5°、结构面倾角为40.1°,结构面充填物主要为岩屑、呈微张状态、起伏较为粗糙,岩体体积节理数3≤Jv≤10;最后,参照《水力发电工程地质勘察规范》,并结合HC法评分准则,评定犬木塘九龙岭2号支洞ZG23+717.5处围岩总评分T为29分,围岩级别为Ⅳ类围岩.该方法具有图像采集便捷、计算过程简洁、分析结果准确等优点,可为水工隧洞开挖支护设计提供重要的决策支持,具有显著的工程实用价值和广泛的应用前景.
AbstractList U452.12; 现有水工隧洞围岩分级方法仍以经验性为主,易造成围岩分级结果存在偏差,进而导致隧洞支护设计不合理,甚至开挖过程发生围岩失稳.依托犬木塘水库大山岭引水隧洞工程,采用数字图像技术对HC法进行修正,可实现对水工隧洞进行精细化围岩分级,为合理的隧洞支护设计提供依据.为此,首先明确了水工隧洞围岩分级HC法中岩石强度采用点荷载试验,岩体完整程度、结构面状态、结构面产状采用数字图像技术进行确定的评分方法;其次,通过对九龙岭隧洞2号支洞的实际应用表明,所取岩体的岩石单轴抗压强度为24.22 MPa、结构面走向与洞轴线夹角为32.5°、结构面倾角为40.1°,结构面充填物主要为岩屑、呈微张状态、起伏较为粗糙,岩体体积节理数3≤Jv≤10;最后,参照《水力发电工程地质勘察规范》,并结合HC法评分准则,评定犬木塘九龙岭2号支洞ZG23+717.5处围岩总评分T为29分,围岩级别为Ⅳ类围岩.该方法具有图像采集便捷、计算过程简洁、分析结果准确等优点,可为水工隧洞开挖支护设计提供重要的决策支持,具有显著的工程实用价值和广泛的应用前景.
Abstract_FL The existing hydraulic tunnel surrounding rock classification method is still mainly empirical,which is easy to cause deviation of the surrounding rock classification results and lead to irrational tunnel support design,and even surrounding rock destabilization in the exca-vation process.Relying on the Dashanling diversion tunnel project of Quanmutang Reservoir,this paper adopts the numerical image technolo-gy to modify the HC method,which can realize the fine surrounding rock classification of hydraulic tunnels and provide a basis for reasonable tunnel support design.To this end,firstly,the grading method of HC method for hydraulic tunnel surrounding rock classification is clarified by adopting the point load test for rock strength,and the grading method of determining the degree of integrity of the rock body,the state of structural surface,and the yield of structural surface by adopting the numerical image technology.Secondly,the practical application of the Jiulongling Tunnel No.2 branch shows that the uniaxial compressive strength of the rock body taken is 24.22 MPa,the angle of the structural surface strike to the tunnel axis is 32.5 The uniaxial compressive strength of the rock body taken is 24.22 MPa,the angle between the struc-tural plane and the axis of the hole is 32.5°,the inclination of the structural plane is 40.1°,and the filler of the structural plane mainly con-sists of rock debris,which is in the state of microtension,with a rough undulation and the number of volumetric joints of the rock body is 3≤Jv≤10.Finally,with reference to the"Code for Hydropower Engineering Geological Investigation",and combining with the scoring guide-line of the HC method,the total scoring of surrounding rock at the branch hole No.2 of Jiulongling of Quanmutang,ZG23+717.5,assessed to be 29 points,and the grade of the surrounding rock is class Ⅳ.The method has the advantages of convenient image acquisition,concise calculation process,and accurate analysis results,etc.It can provide important decision-making support for the design of excavation and support of hydraulic tunnels,and has significant engineering practical value and wide application prospects.
Author 罗亮明
李颂章
夏裕栋
韦凡秋
李星霖
AuthorAffiliation 湖南省水利水电勘测设计规划研究总院有限公司,湖南 长沙 410000%中南林业科技大学,湖南 长沙 410000%中南大学,湖南 长沙 410000
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Author_FL LI Xing-lin
LI Song-zhang
WEI Fan-qiu
XIA Yu-dong
LUO Liang-ming
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DocumentTitle_FL Research on Fine Classification of Surrounding Rock in Hydraulic Tunnels Based on Digital Image Correction HC Method
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Issue 11
Keywords hydraulic tunnel
数字图像
水工隧洞
surrounding rock classification
HC法
围岩分级
tunnel face
digital images
HC method
掌子面
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