机械工程学报
機械工程學報
궤계공정학보
CHINESE JOURNAL OF MECHANICAL ENGINEERING
2014年
21期
17-22
,共6页
任宏%何强%胡祥涛%李自成
任宏%何彊%鬍祥濤%李自成
임굉%하강%호상도%리자성
松动土压力%极限分析法%盾构法%极限平衡法%太沙基理论
鬆動土壓力%極限分析法%盾構法%極限平衡法%太沙基理論
송동토압력%겁한분석법%순구법%겁한평형법%태사기이론
loosening earth pressure%limit analysis theory%shield tunneling%limit equilibrium method%Terzaghi theory
针对盾构法隧道施工过程中如何合理地确定上覆地层松动土压力问题,提出基于极限分析理论的松动土压力计算方法。研究地层发生主动失稳时的破坏模式,假设地层为服从莫尔-库仑屈服准则的理想弹塑性体,构建由多刚性滑块构成的失稳破坏模型,考虑了黏聚力、地表超载和岩土重力对地层稳定性的影响,建立松动土压力极限分析模型。算例分析表明:在大埋深情况下,极限分析模型的计算结果与离心模型试验和数值模拟的结果相接近,计算精度优于传统的太沙基理论,合理地反映了土层拱效应作用。计算结果也表明:受土层拱效应影响,松动土压力同隧道埋深成正比,并趋于稳定值,计算精度也随着埋深的增大而提高;松动土压力与砂土内摩擦角成反比,且内摩擦角越大计算精度越高。
針對盾構法隧道施工過程中如何閤理地確定上覆地層鬆動土壓力問題,提齣基于極限分析理論的鬆動土壓力計算方法。研究地層髮生主動失穩時的破壞模式,假設地層為服從莫爾-庫崙屈服準則的理想彈塑性體,構建由多剛性滑塊構成的失穩破壞模型,攷慮瞭黏聚力、地錶超載和巖土重力對地層穩定性的影響,建立鬆動土壓力極限分析模型。算例分析錶明:在大埋深情況下,極限分析模型的計算結果與離心模型試驗和數值模擬的結果相接近,計算精度優于傳統的太沙基理論,閤理地反映瞭土層拱效應作用。計算結果也錶明:受土層拱效應影響,鬆動土壓力同隧道埋深成正比,併趨于穩定值,計算精度也隨著埋深的增大而提高;鬆動土壓力與砂土內摩抆角成反比,且內摩抆角越大計算精度越高。
침대순구법수도시공과정중여하합리지학정상복지층송동토압력문제,제출기우겁한분석이론적송동토압력계산방법。연구지층발생주동실은시적파배모식,가설지층위복종막이-고륜굴복준칙적이상탄소성체,구건유다강성활괴구성적실은파배모형,고필료점취력、지표초재화암토중력대지층은정성적영향,건립송동토압력겁한분석모형。산례분석표명:재대매심정황하,겁한분석모형적계산결과여리심모형시험화수치모의적결과상접근,계산정도우우전통적태사기이론,합리지반영료토층공효응작용。계산결과야표명:수토층공효응영향,송동토압력동수도매심성정비,병추우은정치,계산정도야수착매심적증대이제고;송동토압력여사토내마찰각성반비,차내마찰각월대계산정도월고。
In shield tunneling, it is very critical to estimate the loosening earth pressure reasonably for preventing ground instability and controlling shield’s driving force effectively. However, due to the influence of ground property, overburden depth and geometric construction parameters, the ground behavior is extremely complicated. Comparing with the limit equilibrium method, the theoretical basis of the limit analysis theory is more rigorous. Therefore, the loosening earth pressure of shield-driven circular tunnels is investigated by an upper bound approach in limit analysis, and the Mohr-Coulomb failure criterion is adopted. Furthermore, a multi-blocks failure mechanism is developed for loosening earth pressure in sandy ground. The basic examples are carried out, and the results are examined by comparing with Terzaghi theory, numerical simulation and centrifugal tests. It is confirmed that the proposed model predicts the loosening earth pressure reasonably well at the case of large overburden depth, and shown that the overburden depth and friction angle are the important factors affecting the loosening earth pressure.