大连理工大学学报
大連理工大學學報
대련리공대학학보
JOURNAL OF DALIAN UNIVERSITY OF TECHNOLOGY
2014年
2期
197-203
,共7页
孔宪京%余翔%邹德高%周扬
孔憲京%餘翔%鄒德高%週颺
공헌경%여상%추덕고%주양
沥青混凝土心墙坝%三维有限元%静动力分析%动剪应变
瀝青混凝土心牆壩%三維有限元%靜動力分析%動剪應變
력청혼응토심장패%삼유유한원%정동력분석%동전응변
rockfill dam with asphalt concrete core%3D FE%static and dynamic analysis%dynamic shear strain
针对沥青混凝土心墙均质坝,运用非线性三维有限元法进行静动力分析.对大坝填筑与蓄水阶段分别进行模拟,并计算了沥青混凝土心墙坝动力响应,分析了坝高、动剪切模量、地震峰值加速度及地震波对心墙最大动剪应变的影响,总结了心墙应力与变形、动剪应变分布规律.结果表明:静力状态下,尤其是满蓄期,应重点关注心墙坝肩处、顶部和底部区域,且高心墙处于更不利的应力与变形状态.地震作用下,动剪应变最大值发生在河谷中央心墙顶部区域,但动剪应变幅值较小,一般不超过0.5%.
針對瀝青混凝土心牆均質壩,運用非線性三維有限元法進行靜動力分析.對大壩填築與蓄水階段分彆進行模擬,併計算瞭瀝青混凝土心牆壩動力響應,分析瞭壩高、動剪切模量、地震峰值加速度及地震波對心牆最大動剪應變的影響,總結瞭心牆應力與變形、動剪應變分佈規律.結果錶明:靜力狀態下,尤其是滿蓄期,應重點關註心牆壩肩處、頂部和底部區域,且高心牆處于更不利的應力與變形狀態.地震作用下,動剪應變最大值髮生在河穀中央心牆頂部區域,但動剪應變幅值較小,一般不超過0.5%.
침대력청혼응토심장균질패,운용비선성삼유유한원법진행정동력분석.대대패전축여축수계단분별진행모의,병계산료력청혼응토심장패동력향응,분석료패고、동전절모량、지진봉치가속도급지진파대심장최대동전응변적영향,총결료심장응력여변형、동전응변분포규률.결과표명:정력상태하,우기시만축기,응중점관주심장패견처、정부화저부구역,차고심장처우경불리적응력여변형상태.지진작용하,동전응변최대치발생재하곡중앙심장정부구역,단동전응변폭치교소,일반불초과0.5%.
In order to study the static and dynamic characteristics of homogeneous rockfill dams with asphalt concrete core,the nonlinear three-dimensional finite element method was employed.Filling and storing processes of the dam were simulated,and the dynamic response of the dam was also got considering the influences of height of the dam,dynamic shear modulus,peak acceleration and seismic waves on the maximum dynamic shear strain of the core.The distribution of the stress,deformation and dynamic shear strain of the core were summed up.The results show that the top,bottom and abutment regions of the core should be paid more attention to and high core will be under more unfavorable conditions in static state, especially in full storage period. Under the action of earthquake,the dynamic shear strain at the top of core of central valley is the largest,but the value is small,less than 0.5%.