岩土力学
巖土力學
암토역학
ROCK AND SOIL MECHANICS
2013年
z2期
306-310
,共5页
大断面%黄土隧道%格栅支护%型钢支护
大斷麵%黃土隧道%格柵支護%型鋼支護
대단면%황토수도%격책지호%형강지호
large-span%loess tunnels%grating supporting%section steel supporting
以武-西高速公路桃花峪黄土隧道为研究对象,采用现场试验与数值模拟的方法,研究格栅和型钢支护结构对浅埋大跨小间距黄土隧道的影响规律。现场试验表明,施工引起的沉降比较均匀,格栅支护与型钢支护对控制整体沉降差别不明显。格栅钢架的受力比型钢钢架小且分布更为均匀,说明格栅钢架受力更为有利。格栅与型钢钢架受力状态相似且都合理。模拟计算表明,格栅支护与型钢支护相比,型钢支护的位移更小。较之格栅,型钢支护拱顶沉降减小16%~18%,边墙收敛减小23%,拱脚沉降减小18%。在V级黄土隧道中采用双侧壁法开挖大断面隧道,围岩将发生较大塑性变形。塑性区域发展范围较大,需及时支护,格栅支护与型钢支护对塑性发展范围基本一致。
以武-西高速公路桃花峪黃土隧道為研究對象,採用現場試驗與數值模擬的方法,研究格柵和型鋼支護結構對淺埋大跨小間距黃土隧道的影響規律。現場試驗錶明,施工引起的沉降比較均勻,格柵支護與型鋼支護對控製整體沉降差彆不明顯。格柵鋼架的受力比型鋼鋼架小且分佈更為均勻,說明格柵鋼架受力更為有利。格柵與型鋼鋼架受力狀態相似且都閤理。模擬計算錶明,格柵支護與型鋼支護相比,型鋼支護的位移更小。較之格柵,型鋼支護拱頂沉降減小16%~18%,邊牆收斂減小23%,拱腳沉降減小18%。在V級黃土隧道中採用雙側壁法開挖大斷麵隧道,圍巖將髮生較大塑性變形。塑性區域髮展範圍較大,需及時支護,格柵支護與型鋼支護對塑性髮展範圍基本一緻。
이무-서고속공로도화욕황토수도위연구대상,채용현장시험여수치모의적방법,연구격책화형강지호결구대천매대과소간거황토수도적영향규률。현장시험표명,시공인기적침강비교균균,격책지호여형강지호대공제정체침강차별불명현。격책강가적수력비형강강가소차분포경위균균,설명격책강가수력경위유리。격책여형강강가수력상태상사차도합리。모의계산표명,격책지호여형강지호상비,형강지호적위이경소。교지격책,형강지호공정침강감소16%~18%,변장수렴감소23%,공각침강감소18%。재V급황토수도중채용쌍측벽법개알대단면수도,위암장발생교대소성변형。소성구역발전범위교대,수급시지호,격책지호여형강지호대소성발전범위기본일치。
With the Taohuayu loess tunnel of Wu-Xi expressway as the research object, it use field experiment and numerical simulation methods to research the influence laws of grating supporting and section steel supporting on shallow large-span neighborhood loess tunnel. The field experiment shows that the settlement caused by construction is uniform, and the control overall settlement ability by grating supporting and section steel supporting are similar. The stress of grating is smaller than section steel;and the stress distribution of grating is more uniform than section steel. The stress state of grating is similar to section steel;and they are reasonable. The numerical simulation shows that the displacement of section steel supporting is smaller than grating supporting. Compared with grating, the displacement on top arch of section steel supporting decreases 16%-18%, the convergence on side wall decrease 23%; the displacement on arch skew decrease 18%. Using twin-side heading method to excavate large-span tunnel in V grade loess tunnel, the surrounding rock has large plastic deformation. Plastic regional development range is very large, and it needs timely supporting. The plastic development scope by grating supporting and section steel supporting is similar.