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
2013年
11期
2342-2348
,共7页
土力学%软土基坑%离心模型试验%破坏形式%支护形式%数值模拟
土力學%軟土基坑%離心模型試驗%破壞形式%支護形式%數值模擬
토역학%연토기갱%리심모형시험%파배형식%지호형식%수치모의
soil mechanics%soft soil foundation pit%centrifugal model tests%failure modes%supporting mode%numerical simulation
针对2组具有不同支护形式的软弱基坑进行离心模型试验,测试基坑开挖卸荷过程中支护结构内力和变形,以及坑周土变形,并进行相应的数值计算。试验结果表明:水平支撑对基坑的稳定性影响较大,未加水平支撑的基坑易发生由于支护结构与坑侧土体变形过大所导致的失稳;加水平支撑后基坑的稳定性提高,但要注意由于坑底土体隆起变形所导致的支护结构底端移动和坑顶支撑松弛,进而造成整个支护结构失稳。通过对基坑周边土体在开挖过程中形成的不同应力路径和蠕变参数分析,采用ABAQUS中的扩展D-P模型,对试验模型的原型基坑进行数值计算,计算结果和离心模型试验吻合较好,且可反映基坑周边土体的蠕变效应。
針對2組具有不同支護形式的軟弱基坑進行離心模型試驗,測試基坑開挖卸荷過程中支護結構內力和變形,以及坑週土變形,併進行相應的數值計算。試驗結果錶明:水平支撐對基坑的穩定性影響較大,未加水平支撐的基坑易髮生由于支護結構與坑側土體變形過大所導緻的失穩;加水平支撐後基坑的穩定性提高,但要註意由于坑底土體隆起變形所導緻的支護結構底耑移動和坑頂支撐鬆弛,進而造成整箇支護結構失穩。通過對基坑週邊土體在開挖過程中形成的不同應力路徑和蠕變參數分析,採用ABAQUS中的擴展D-P模型,對試驗模型的原型基坑進行數值計算,計算結果和離心模型試驗吻閤較好,且可反映基坑週邊土體的蠕變效應。
침대2조구유불동지호형식적연약기갱진행리심모형시험,측시기갱개알사하과정중지호결구내력화변형,이급갱주토변형,병진행상응적수치계산。시험결과표명:수평지탱대기갱적은정성영향교대,미가수평지탱적기갱역발생유우지호결구여갱측토체변형과대소도치적실은;가수평지탱후기갱적은정성제고,단요주의유우갱저토체륭기변형소도치적지호결구저단이동화갱정지탱송이,진이조성정개지호결구실은。통과대기갱주변토체재개알과정중형성적불동응력로경화연변삼수분석,채용ABAQUS중적확전D-P모형,대시험모형적원형기갱진행수치계산,계산결과화리심모형시험문합교호,차가반영기갱주변토체적연변효응。
Two series of centrifugal model tests were performed on soft soil foundation pit with different supporting structures. The deformation of soils and supporting structure was measured,and the internal force of structure was analyzed. On the basis of the tests,the numerical calculation was carried out. Test results show that the lateral bracing is very important for the stability of foundation pit;if not,the deformation of supporting structure and soils around the foundation pit would increase quickly with increasing excavation depth,and leading to slope instability. When lateral bracing was added in the foundation pit,the stability of foundation pit was improved. But if the uplift deformation of the basal soil increased,the supporting structure on the bottom will move and lateral bracing will relax;then the entire supporting structure will failure. The soils around the foundation pit have different stress paths and different creep parameters during excavation. For the model and prototype,the numerical calculations were carried out by adopting the extended D-P model in ABAQUS. It is shown that the numerical results accord with the centrifugal model test results,and also show the soil creep properties.