岩石力学与工程学报
巖石力學與工程學報
암석역학여공정학보
CHINESE JOURNAL OF ROCK MECHANICS AND ENGINEERING
2014年
2期
243-256
,共14页
陈国庆%黄润秋%石豫川%许强
陳國慶%黃潤鞦%石豫川%許彊
진국경%황윤추%석예천%허강
边坡工程%稳定性评价%滑动面扩展%强度折减法%动态安全系数
邊坡工程%穩定性評價%滑動麵擴展%彊度摺減法%動態安全繫數
변파공정%은정성평개%활동면확전%강도절감법%동태안전계수
slope engineering%stability evaluation%sliding surface propagation%strength reduction method%dynamic safety factor
基于强度折减法的边坡稳定性评价只能获得静态单一的安全系数。为获得边坡渐进失稳过程中的稳定性状况,提出基于动态和整体强度折减法的边坡动态稳定性评价方法,利用动态强度折减法搜索出渐进扩展的滑动面,并结合整体强度折减法计算安全系数的优势,在边坡渐进失稳过程中计算动态安全系数,从而实现对边坡失稳全过程的分析和调控。首先,利用动态强度折减法确定出一系列扩展的滑动面,然后,在每一步折减中降低滑动面的强度参数,随后采用整体强度折减法计算此刻的安全系数。最后进行滑动面扩展-安全系数的对应分析,根据安全系数的动态变化规律对边坡进行稳定性评价和支护。两实例计算表明,动态强度折减法获得的滑动面与实际监测数据相吻合,合理反映边坡(滑坡)的变形破坏特征。利用动态和整体强度折减法的各自优势,获得边坡渐进失稳过程中的一系列动态安全系数,更利于边坡的稳定性判断及支护措施建议。相比于极限平衡法,动态强度折减法也更适合于非均质边坡的稳定性评价,能搜索出正确的潜在滑动面。
基于彊度摺減法的邊坡穩定性評價隻能穫得靜態單一的安全繫數。為穫得邊坡漸進失穩過程中的穩定性狀況,提齣基于動態和整體彊度摺減法的邊坡動態穩定性評價方法,利用動態彊度摺減法搜索齣漸進擴展的滑動麵,併結閤整體彊度摺減法計算安全繫數的優勢,在邊坡漸進失穩過程中計算動態安全繫數,從而實現對邊坡失穩全過程的分析和調控。首先,利用動態彊度摺減法確定齣一繫列擴展的滑動麵,然後,在每一步摺減中降低滑動麵的彊度參數,隨後採用整體彊度摺減法計算此刻的安全繫數。最後進行滑動麵擴展-安全繫數的對應分析,根據安全繫數的動態變化規律對邊坡進行穩定性評價和支護。兩實例計算錶明,動態彊度摺減法穫得的滑動麵與實際鑑測數據相吻閤,閤理反映邊坡(滑坡)的變形破壞特徵。利用動態和整體彊度摺減法的各自優勢,穫得邊坡漸進失穩過程中的一繫列動態安全繫數,更利于邊坡的穩定性判斷及支護措施建議。相比于極限平衡法,動態彊度摺減法也更適閤于非均質邊坡的穩定性評價,能搜索齣正確的潛在滑動麵。
기우강도절감법적변파은정성평개지능획득정태단일적안전계수。위획득변파점진실은과정중적은정성상황,제출기우동태화정체강도절감법적변파동태은정성평개방법,이용동태강도절감법수색출점진확전적활동면,병결합정체강도절감법계산안전계수적우세,재변파점진실은과정중계산동태안전계수,종이실현대변파실은전과정적분석화조공。수선,이용동태강도절감법학정출일계렬확전적활동면,연후,재매일보절감중강저활동면적강도삼수,수후채용정체강도절감법계산차각적안전계수。최후진행활동면확전-안전계수적대응분석,근거안전계수적동태변화규률대변파진행은정성평개화지호。량실례계산표명,동태강도절감법획득적활동면여실제감측수거상문합,합리반영변파(활파)적변형파배특정。이용동태화정체강도절감법적각자우세,획득변파점진실은과정중적일계렬동태안전계수,경리우변파적은정성판단급지호조시건의。상비우겁한평형법,동태강도절감법야경괄합우비균질변파적은정성평개,능수색출정학적잠재활동면。
Slope stability evaluation based on strength reduction can only obtain static single safety factor. The dynamic evaluation method of slope stability is proposed based on dynamic and whole strength reduction methods in order to obtain the slope stability in the progressive failure process. At first,a series of expanded sliding surfaces are searched by using the dynamic strength reduction method(DSRM);and then the strength parameters of the sliding surface are reduced in each reduction step. The corresponding safety factor of the slope is calculated by using whole strength reduction calculation. At last,the relationship of sliding surface propagation and the related safety factor is analyzed. Therefore,slope stability evaluation and support suggestion can be given according to the change rule of dynamic safety factors of slope. Two case studies show that sliding surface obtained by DSRM is consistent with in-situ monitoring data,reasonably reflecting the failure characteristics of slope or landslide. A series of dynamic safety factors are presented in the progressive failure process by using the advantages of DSRM and whole strength reduction method respectively. The DSRM benefits stability judgment and supporting measures suggestion of slope. Compared with the limit equilibrium method,the DSRM is more suitable for stability evaluation of the heterogeneous slopes;and it can search the potential sliding surface accurately.