宁波大学学报(理工版)
寧波大學學報(理工版)
저파대학학보(리공판)
JOURNAL OF NINGBO UNIVERSITY(NSEE)
2014年
3期
97-102
,共6页
注浆量%注浆压力%浆液硬化%地表沉降%数值模拟
註漿量%註漿壓力%漿液硬化%地錶沉降%數值模擬
주장량%주장압력%장액경화%지표침강%수치모의
grouting volume%grouting pressure%slurry hardening effect%ground settlement%numerical simulation
结合宁波轨道交通某区间隧道施工,研究了盾构壁后注浆对地表沉降的影响,考虑壁后注浆压力消散和浆液固结硬化过程,采用 FLAC3D 有限元软件对开挖过程模拟计算,分析了不同注浆量和不同注浆压力下的地表沉降变化规律以及浆液硬化作用对地表沉降和管片位移的影响规律,并将地表沉降和拱顶位移的计算值和实测值进行对比分析.结果表明:本工程最佳注浆量4.0~5.0 m3,最佳注浆压力约0.3 MPa;硬化作用引起的地表沉降占总沉降约5%,引起的管片位移占总位移约15%.针对宁波土质,合理确定注浆量和注浆压力能够有效控制地表沉降,合理配制浆液,实时监控注浆量、注浆压力和浆液强度,能够有效控制管片的上浮和变形.
結閤寧波軌道交通某區間隧道施工,研究瞭盾構壁後註漿對地錶沉降的影響,攷慮壁後註漿壓力消散和漿液固結硬化過程,採用 FLAC3D 有限元軟件對開挖過程模擬計算,分析瞭不同註漿量和不同註漿壓力下的地錶沉降變化規律以及漿液硬化作用對地錶沉降和管片位移的影響規律,併將地錶沉降和拱頂位移的計算值和實測值進行對比分析.結果錶明:本工程最佳註漿量4.0~5.0 m3,最佳註漿壓力約0.3 MPa;硬化作用引起的地錶沉降佔總沉降約5%,引起的管片位移佔總位移約15%.針對寧波土質,閤理確定註漿量和註漿壓力能夠有效控製地錶沉降,閤理配製漿液,實時鑑控註漿量、註漿壓力和漿液彊度,能夠有效控製管片的上浮和變形.
결합저파궤도교통모구간수도시공,연구료순구벽후주장대지표침강적영향,고필벽후주장압력소산화장액고결경화과정,채용 FLAC3D 유한원연건대개알과정모의계산,분석료불동주장량화불동주장압력하적지표침강변화규률이급장액경화작용대지표침강화관편위이적영향규률,병장지표침강화공정위이적계산치화실측치진행대비분석.결과표명:본공정최가주장량4.0~5.0 m3,최가주장압력약0.3 MPa;경화작용인기적지표침강점총침강약5%,인기적관편위이점총위이약15%.침대저파토질,합리학정주장량화주장압력능구유효공제지표침강,합리배제장액,실시감공주장량、주장압력화장액강도,능구유효공제관편적상부화변형.
In order to study the effect of wall back grouting on ground subsidence, the process of excavation is simulated with a three-dimensional finite element software FLAC3D, in which the Ningbo rail transit subway tunnel construction is combined, and the wall back grouting pressure dissipation and slurry concretion process is considered. The ground surface subsidence under varying grouting pressure and the slurry hardening effect on the law of ground settlement are analyzed. Comparisons between the calculated value of surface subsidence and the corresponding measured value are made. The results show that, considering the soil characteristics in Ningbo, the grouting pressure can effectively be used to control the surface settlement, and the engineering optimum grouting amount is 4.0~5.0 m3, the engineering optimum grouting pressure is about 0.3 MPa, the surface hardening induced settlement in total settlement is about 5%, and induced segment displacement in total displacement of about 15%. The good combination of slurry, real-time monitoring of grouting pressure and grout strength can effectively control the floating of segment and deformation.