AbstractThe underground powerhouse of the Houziyan Hydropower Station is under the conditions of high '/> Large Deformation Characteristics and Reinforcement Measures for a Rock Pillar in the Houziyan Underground Powerhouse
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Large Deformation Characteristics and Reinforcement Measures for a Rock Pillar in the Houziyan Underground Powerhouse

机译:Houziyan地下厂房岩石柱的大变形特征及加固措施

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AbstractThe underground powerhouse of the Houziyan Hydropower Station is under the conditions of high geo-stress and a low strength/stress ratio, which leads to significant rock deformation and failures, especially for rock pillars due to bidirectional unloading during the excavation process. Damages occurred in thinner rock pillars after excavation due to unloading and stress concentration, which will reduce the surrounding rock integrity and threaten the safety of the underground powerhouse. By using field investigations and multi-source monitoring data, the deformation and failure characteristics of a rock pillar are analyzed from the tempo-spatial distribution features. These results indicate that significant deformation occurred in the rock pillar when the powerhouse was excavated to the fourth layer, and the maximum displacement reached 107.57?mm, which occurred on the main transformer chamber upstream sidewall at an elevation of 1721.20?m. The rock deformation surrounding the rock pillar is closely related to the excavation process and has significant time-related characteristics. To control large deformation of the rock pillar, thru-anchor cables were used to reinforce the rock pillar to ensure the stability of the powerhouse. The rock deformation surrounding the rock pillar decreases gradually and forms a convergent trend after reinforcement measures are installed based on the analysis of the temporal characteristics and the rock pillar deformation rate.]]>
机译:<![cdata [ <标题>抽象 ara id =“par1”> Houziyan水电站的地下功率所在高地理应力和低强度/应力比的条件导致显着的岩石变形和故障,特别是由于在挖掘过程中由于双向卸载而导致岩石柱。由于卸载和应力集中,挖掘后较薄的岩石柱发生损坏,这将减少周围的岩石完整性并威胁到地下厂房的安全性。通过使用现场调查和多源监测数据,从节奏 - 空间分布特征分析岩柱的变形和故障特性。这些结果表明,当挖掘到第四层时,岩柱发生显着变形,并且最大位移达到107.57Ωmm,在主变压器室上游侧壁上发生在1721.20Ωm的升高。岩柱周围的岩石变形与挖掘过程密切相关,具有显着的时间相关的特征。为了控制岩柱的大变形,通过锚固电缆来加强岩柱,以确保该燃气所的稳定性。岩柱周围的岩石变形逐渐降低,并在基于时间特征和岩石柱变形率的分析安装加固措施后,在安装加固措施后形成会聚趋势。 ]]>

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