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机构地区:[1]中国地震局工程力学研究所,黑龙江哈尔滨150080 [2]广州大学土木工程学院,广东广州510006
出 处:《地震工程学报》2015年第2期329-335,共7页China Earthquake Engineering Journal
基 金:国家自然科学基金项目(51408566);中央级公益性研究所基本科研业务费专项(2014B03);国家自然科学基金项目(51438004);博士点基金(20124410110004);973课题(2011CB013606)
摘 要:饱和砂土地基在地震作用下存在液化的潜在危险,液化引起的地基失效可能会导致地下结构的严重震害。以Opensees作为计算平台,对饱和砂土中带中柱箱型隧道的地震反应进行输入不同幅值地震动时的动力数值计算,研究场地和结构的加速度反应及其频谱特性、场地的永久变形、隧道的震后位移以及隧道的内力分布。计算结果表明,饱和砂土中箱型隧道的地震附加内力仍受周围土体的相对位移控制,此外在震后隧道可能会产生侧移和上浮的永久位移,并且可能存在残余内力。Foundations in saturated sand have the potential to liquefy under the effects of earthquakes,and foundation failure caused by liquefaction can lead to a serious damage of underground structures.Considering Opensees as the computing platform,a dynamic numerical simulation was performed to calculate the seismic response of a box tunnel with mid-columns in saturated sand when seismic waves of different amplitudes were input.Acceleration responses and the spectral properties of ground and structure,as well as the permanent deformation of the ground,aftershock displacement of the tunnel,and internal force distribution of the tunnel,were studied.The results show that the additional internal seismic forces in a box tunnel in saturated sand are controlled by the relative displacement of the surrounding soil.The permanent displacement of the tunnel such as side shift and floating probably appear after the main shock;in addition,remnant internal forces also probably occur.
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