长江科学院院报
長江科學院院報
장강과학원원보
JOURNAL OF YANGTZE RIVER SCIENTIFIC RESEARCH INSTITUTE
2009年
z1期
81-84
,共4页
深基坑%渗流稳定%渗流控制%涌水%减渗帷幕灌浆%固结灌浆%减渗效率%承压水
深基坑%滲流穩定%滲流控製%湧水%減滲帷幕灌漿%固結灌漿%減滲效率%承壓水
심기갱%삼류은정%삼류공제%용수%감삼유막관장%고결관장%감삼효솔%승압수
deep foundation pit%seepage stability%seepage control%water burst%seepage reducing curtain grouting%consolidation grouting%seepage reducing efficiency%confined water
在建溪洛渡高拱坝施工过程中,通过对河床深基坑出现涌水的成因分析,采取了减渗帷幕封闭渗水、截排地表水、降水等施工措施,达到控制河床深基坑涌水的目的.通过其效果分析,提出减渗帷幕的厚度和减渗帷幕深入相对隔水层最小深度,应当满足渗流稳定的要求;对强透水性基岩,要确定好幕体的防渗标准,即幕体的渗透系数与岩体渗透系数的比值,其值不大于0.1 ,渗透流量就明显减少;对先期导水通道灌浆封堵并进行坝基固结灌浆,不仅是坝体地基加固的需要,同时也是施工期加强基坑底部抵抗承压水能力的需要.
在建溪洛渡高拱壩施工過程中,通過對河床深基坑齣現湧水的成因分析,採取瞭減滲帷幕封閉滲水、截排地錶水、降水等施工措施,達到控製河床深基坑湧水的目的.通過其效果分析,提齣減滲帷幕的厚度和減滲帷幕深入相對隔水層最小深度,應噹滿足滲流穩定的要求;對彊透水性基巖,要確定好幕體的防滲標準,即幕體的滲透繫數與巖體滲透繫數的比值,其值不大于0.1 ,滲透流量就明顯減少;對先期導水通道灌漿封堵併進行壩基固結灌漿,不僅是壩體地基加固的需要,同時也是施工期加彊基坑底部牴抗承壓水能力的需要.
재건계락도고공패시공과정중,통과대하상심기갱출현용수적성인분석,채취료감삼유막봉폐삼수、절배지표수、강수등시공조시,체도공제하상심기갱용수적목적.통과기효과분석,제출감삼유막적후도화감삼유막심입상대격수층최소심도,응당만족삼류은정적요구;대강투수성기암,요학정호막체적방삼표준,즉막체적삼투계수여암체삼투계수적비치,기치불대우0.1 ,삼투류량취명현감소;대선기도수통도관장봉도병진행패기고결관장,불부시패체지기가고적수요,동시야시시공기가강기갱저부저항승압수능력적수요.
During construction of Xiludu High Arch Dam,the cause analysis on water blowing out from deep foundation pit in the riverbed was performed, the construction measures, such as sealing infiltration water with anti-seepage curtain, intercepting and draining the surface water, pumping and draining the water in the pit, were taken in order to control the water blowing out from deep pit. In this paper, thickness of seepage reducing curtain and the minimum depth into relative impermeable layer, which should meet seepage stability requirements, are proposed on the basis of effectiveness analysis. The seepage control criteria for high permeability rock should be carefully established , i. e . the ratio of permeability coefficient of curtain to that of rock mass. When the ratio is not more than 0. 1, the seepage flow would be decreased. The diversion passage should be grouted and blocked at earlier stage, then the consolidation grouting is carried out, not only for reinforcing dam foundation, but for strengthening the capacity of pit base to resist uplift pressure during construction.