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小峰水库大坝风化花岗岩岩体防渗处理施工技术 被引量:2
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作者 龚高武 《湖南水利水电》 2009年第1期28-29,共2页
文章根据广西防城港市小峰水库除险加固工程防渗处理施工的实际情况,针对花岗岩风化后的特殊地质条件,如何解决坝体、坝基内防渗墙与帷幕的形成与连接,全风化层内球状孤石段处理,高喷时遇孔底不返浆、回浆密度过小或偏大以及帷幕灌浆时... 文章根据广西防城港市小峰水库除险加固工程防渗处理施工的实际情况,针对花岗岩风化后的特殊地质条件,如何解决坝体、坝基内防渗墙与帷幕的形成与连接,全风化层内球状孤石段处理,高喷时遇孔底不返浆、回浆密度过小或偏大以及帷幕灌浆时的大量吸浆、固管埋塞、吸水不进浆浆液回浓等特殊问题,简要地总结了相应的处理方法,供类似工程借鉴参考。 展开更多
关键词 风化花岗岩岩体 防渗幕墙搭接 球状风化孤石 高压旋喷 帷幕灌浆
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Updating of the hierarchical rock mass rating(HRMR) system and a new subsystem developed for weathered granite formations 被引量:1
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作者 Miranda Tiago e Sousa L.Ribeiro Tinoco Joaquim 《International Journal of Mining Science and Technology》 SCIE EI 2014年第6期769-775,共7页
The RMR system is still very much applied in rock mechanics engineering context. It is based on the evaluation of six weights to obtain a final rating. To obtain the final rating a considerable amount of information i... The RMR system is still very much applied in rock mechanics engineering context. It is based on the evaluation of six weights to obtain a final rating. To obtain the final rating a considerable amount of information is needed concerning the rock mass which can be difficult to obtain in some projects or project stages at least with accuracy. In 2007 an alternative classification scheme based on the RMR, the Hierarchical Rock Mass Rating(HRMR) was presented. The main feature of this system was the adaptation to the level of knowledge existent about the rock mass to obtain the classification of the rock mass since it followed a decision tree approach. However, the HRMR was only valid for hard rock granites with low fracturing degrees. In this work, the database was enlarged with approximately 40% more cases considering other types of granite rock masses including weathered granites and based on this increased database the system was updated. Granite formations existent in the north of Portugal including Porto city are predominantly granites. Some years ago a light rail infrastructure was built in the city of Porto and surrounding municipalities which involved considerable challenges due to the high heterogeneity levels of the granite formations and the difficulties involved in their geomechanical characterization. In this work it is intended to provide also a contribution to improve the characterization of these formations with special emphasis to the weathered horizons. A specific subsystem applicable to the weathered formations was developed. The results of the validation of these systems are presented and show acceptable performances in identifying the correct class using less information than with the RMR system. 展开更多
关键词 Rock mass classification system Decision tree Weathered granite formations
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