现代隧道技术
現代隧道技術
현대수도기술
Modern Tunnelling Technology
2015年
5期
40-47
,共8页
河谷边坡%地下工程%地震效应%动荷载%围岩稳定评价
河穀邊坡%地下工程%地震效應%動荷載%圍巖穩定評價
하곡변파%지하공정%지진효응%동하재%위암은정평개
Valley slope%Underground works%Earthquake effect%Dynamic load%Evaluation of surrounding rock stability
地震动作用下,高山峡谷地形将对邻近岸坡的岩体地下工程围岩地震响应特性产生影响,岸坡建筑物的动荷载也可能构成围岩稳定的不利影响因素. 文章针对这个问题,首先分析了邻近岸坡地下工程围岩稳定的主要影响因素,并对岩体地下工程地震响应计算分析的一些关键问题进行了探讨. 然后结合数值试验手段,对邻近岸坡地下工程围岩稳定的影响因素开展量化对比分析. 最后以乌东德水电站地下洞室为例,根据其设防标准确定地震输入,对围岩稳定性进行了时程分析. 计算时考虑了洞室施工开挖、高山峡谷地形和岸坡建筑物动荷载等影响地下工程地震响应特性的主要因素. 研究结果表明,由于地下结构基本布置于岩性较好岩层,受到地震影响程度总体上较小,围岩稳定仍然主要由开挖支护工况控制;拱坝建基面动荷载对围岩稳定性也不构成控制性影响.
地震動作用下,高山峽穀地形將對鄰近岸坡的巖體地下工程圍巖地震響應特性產生影響,岸坡建築物的動荷載也可能構成圍巖穩定的不利影響因素. 文章針對這箇問題,首先分析瞭鄰近岸坡地下工程圍巖穩定的主要影響因素,併對巖體地下工程地震響應計算分析的一些關鍵問題進行瞭探討. 然後結閤數值試驗手段,對鄰近岸坡地下工程圍巖穩定的影響因素開展量化對比分析. 最後以烏東德水電站地下洞室為例,根據其設防標準確定地震輸入,對圍巖穩定性進行瞭時程分析. 計算時攷慮瞭洞室施工開挖、高山峽穀地形和岸坡建築物動荷載等影響地下工程地震響應特性的主要因素. 研究結果錶明,由于地下結構基本佈置于巖性較好巖層,受到地震影響程度總體上較小,圍巖穩定仍然主要由開挖支護工況控製;拱壩建基麵動荷載對圍巖穩定性也不構成控製性影響.
지진동작용하,고산협곡지형장대린근안파적암체지하공정위암지진향응특성산생영향,안파건축물적동하재야가능구성위암은정적불리영향인소. 문장침대저개문제,수선분석료린근안파지하공정위암은정적주요영향인소,병대암체지하공정지진향응계산분석적일사관건문제진행료탐토. 연후결합수치시험수단,대린근안파지하공정위암은정적영향인소개전양화대비분석. 최후이오동덕수전참지하동실위례,근거기설방표준학정지진수입,대위암은정성진행료시정분석. 계산시고필료동실시공개알、고산협곡지형화안파건축물동하재등영향지하공정지진향응특성적주요인소. 연구결과표명,유우지하결구기본포치우암성교호암층,수도지진영향정도총체상교소,위암은정잉연주요유개알지호공황공제;공패건기면동하재대위암은정성야불구성공제성영향.
Because of the motion during an earthquake, terrain such as high mountains and canyons may affect the seismic response characteristics of surrounding rocks around underground works adjacent to bank slopes, and structures on the bank slopes may also have adverse effects on the stability of the surrounding rock due to dynamic loads. On this basis, the main factors affecting surrounding rock stability are analyzed and the key problems regarding the calculation analysis of its seismic response are discussed and compared quantitatively by means of numerical simulation. Then, using the underground caverns of the Wudongde hydropower station as an example, a time-history analysis of the stability of the surrounding rocks is performed, with earthquake inputs determined by the fortification criterion. The factors of cavern excavation, high mountainous and canyon terrain and the dynamic loads of structures on bank slopes are considered in the calculation. The research results show that earthquakes have a little influence on the underground structures because of the sound rock lithology, the stability of the surrounding rock is mainly governed by cavern support, and the dynamic loads of the arch dam foundation base do not have a controlling influence on surrounding rock stability.