长江科学院院报
長江科學院院報
장강과학원원보
JOURNAL OF YANGTZE RIVER SCIENTIFIC RESEARCH INSTITUTE
2015年
2期
84-91
,共8页
温立峰%柴军瑞%王晓%许增光%覃源
溫立峰%柴軍瑞%王曉%許增光%覃源
온립봉%시군서%왕효%허증광%담원
水工结构%面板堆石坝%防渗墙%应力变形特性%数值分析
水工結構%麵闆堆石壩%防滲牆%應力變形特性%數值分析
수공결구%면판퇴석패%방삼장%응력변형특성%수치분석
hydraulic structure%concrete faced rockfill dam%cut-off wall%stress and deformation behavior%numer-ical analysis
采用三维非线性有限元方法分析深覆盖层上面板堆石坝防渗墙应力变形特性,覆盖层和坝体材料的本构关系采用邓肯-张 E -B 模型,在防渗墙和覆盖层之间设置接触摩擦单元以模拟两者之间的相互作用。通过建立的有限元模型分析了坝体分期筑坝、坝体填筑速度以及防渗墙施工顺序对墙体应力变形特性的影响,同时探讨悬挂式防渗墙的应力变形特性。计算结果表明:坝体分期填筑对防渗墙的应力变形特性影响较小;较快的施工速度将引起坝体竣工期防渗墙较大的应力变形,其中拉应力达到3 MPa,顺河向变形达到15 cm;防渗墙靠后的施工顺序可以使运行期防渗墙拉应力减小2.42 MPa,顺河向变形减小达85%;悬挂式防渗墙贯入深度越小,其应力变形特性越趋于安全稳定。
採用三維非線性有限元方法分析深覆蓋層上麵闆堆石壩防滲牆應力變形特性,覆蓋層和壩體材料的本構關繫採用鄧肯-張 E -B 模型,在防滲牆和覆蓋層之間設置接觸摩抆單元以模擬兩者之間的相互作用。通過建立的有限元模型分析瞭壩體分期築壩、壩體填築速度以及防滲牆施工順序對牆體應力變形特性的影響,同時探討懸掛式防滲牆的應力變形特性。計算結果錶明:壩體分期填築對防滲牆的應力變形特性影響較小;較快的施工速度將引起壩體竣工期防滲牆較大的應力變形,其中拉應力達到3 MPa,順河嚮變形達到15 cm;防滲牆靠後的施工順序可以使運行期防滲牆拉應力減小2.42 MPa,順河嚮變形減小達85%;懸掛式防滲牆貫入深度越小,其應力變形特性越趨于安全穩定。
채용삼유비선성유한원방법분석심복개층상면판퇴석패방삼장응력변형특성,복개층화패체재료적본구관계채용산긍-장 E -B 모형,재방삼장화복개층지간설치접촉마찰단원이모의량자지간적상호작용。통과건립적유한원모형분석료패체분기축패、패체전축속도이급방삼장시공순서대장체응력변형특성적영향,동시탐토현괘식방삼장적응력변형특성。계산결과표명:패체분기전축대방삼장적응력변형특성영향교소;교쾌적시공속도장인기패체준공기방삼장교대적응력변형,기중랍응력체도3 MPa,순하향변형체도15 cm;방삼장고후적시공순서가이사운행기방삼장랍응력감소2.42 MPa,순하향변형감소체85%;현괘식방삼장관입심도월소,기응력변형특성월추우안전은정。
Three-dimensional finite element method is used to analyze the stress and deformation behavior of cut-off wall of concrete faced rockfill dam on deep overburden foundation.The Duncan-Chang E-B model is used to simu-late the constitutive relationship between rockfill and overburden material.The contact friction elements are set to simulate the interaction between the concrete structures and the overburden and cushion materials.The influences of staged-filling scheme,construction rate of dam body and construction sequence on stress-deformation behavior of the cut-off wall are discussed.In addition,the stress-deformation behavior of the suspended cut-off wall is also ana-lyzed.Based on the numerical analysis,it is concluded that the staged-filling of dam body has small impact on the stress and deformation of the cut-off wall,whereas high construction rate may cause large stresses and displacements of the wall during completion period (tensile stress reaches 3MPa,deformation along the river direction amounts to 1 5cm),and the sequence of constructing cut-off wall in later stage could reduce the tensile stress by 2.42MPa and the deformation along river direction by 85%.A small depth of suspended cut-off wall could also improve its stress and deformation behavior.