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81.
The dynamic response of a seismic soil–pile–structure interaction (SSPSI) system is investigated in this paper by conducting nonlinear 3D finite element numerical simulations. Nonlinear behaviors such as non-reflecting boundary condition and soil–pile–structure interaction modeled by the penalty method have been taken into account. An equivalent linear model developed from the ground response analysis and the modified Drucker–Prager model are separately used for soil ground. A comparison of the two models shows that the equivalent linear soil model results in an underestimated acceleration response of the structure under this ground shaking and the soil behavior should be considered as a fully-nonlinear constitutive model in the design process of the SSPSI system. It was also observed that the dynamic response of the system is greatly affected by the nonlinearity of soil–pile interface and is not sensitive to the dilation angle of the soil. Furthermore, the effect of the presence of pile foundations on SSPSI response is also analyzed and discussed. 相似文献
82.
基于有限元强度折减法的边坡稳定性分析 总被引:1,自引:0,他引:1
运用有限元强度折减法进行边坡的稳定性分析,同时运用简化bishop法对比结果,发现运用强度折减法进行边坡稳定性分析时,伴随着折减系数的增大,边坡的坡顶水平位移最初缓慢增大,但当折减系数接近边坡的安全系数,坡顶水平位移突然急剧减小,边坡的塑性区也伴随着折减系数的增大,从无到有,直到基本贯通。运用简化bishop法计算的结果和强度折减法的结果对比后得知,两者计算得到破裂面基本一致,但是简化bishop法得到的安全系数偏于保守。 相似文献
83.
84.
Complex terrain causes great MT noise.This paper puts forward a FEM model method using adaptive topography and quadratic elements based on studies by previous researchers.This method can model all kinds of complicated terrain and geoelectric bodies preferably.The numeric modeling,calculation of the auxiliary field and definition of resistivity are deduced by electromagnetic equations.Lastly,several examples are presented,which show the method is rapid,effective and has highly accurate. 相似文献
85.
在采用双侧壁导坑法施工的双向八车道特大断面连拱隧道中,施工步繁多,临时支护设置的时间长,隧道全断面的变形量测只能在临时支护拆除后进行。由于全断面变形数据获取得较晚,故较难将其用于围岩力学参数的反演。将有限元计算和BP神经网络技术相结合,并在有限元计算过程中考虑实际的施工步,建立起所有临时支护拆除之前这一施工状态下导坑的变形量与围岩力学参数之间的非线性映射关系,并通过对应状态下实测的导坑变形值反演了围岩的力学参数。将反演的结果用于正分析验算,验证了该方法是可行的。 相似文献
86.
Enriched finite element procedures for analyzing decoupled bolts installed in rock mass 总被引:1,自引:0,他引:1
Numerical procedures are developed to analyze interaction between fully grouted bolts and rock mass using ‘enriched finite element method (EFEM)’. A solid element intersected by a rock bolt along any arbitrary direction is termed as ‘enriched’ element. The nodes of an enriched element have additional degrees of freedom for determining displacements, stresses developed in the bolt rod. The stiffness of the enriched element is formulated based on properties of rock mass, bolt rod and grout, orientation of the bolt and borehole diameter. Decoupling at grout–bolt interface and elasto‐plastic behavior of rock mass have also been incorporated into the EFEM procedures. The results of this method are compared with analytical pull‐out test results presented by Li and Stillborg (Int. J. Rock Mech. Min. Sci. 1999; 36 :1013–1029). In addition, a numerical example of a bolted tunnel is provided to demonstrate the efficacy of the proposed method for practical applications. Copyright © 2010 John Wiley & Sons, Ltd. 相似文献
87.
88.
2001年11月14日,在青海和新疆交界处发生了昆仑山Ms8.1级强烈地震,GPS后观测显示,此次地震震后形变不仅在断裂南北两侧存在很大的差异,而且在短时间调整后断裂南北两侧表现为同向运动.本文以观测的地震形变为约束,通过有限元数值模拟分析昆仑山地震震后形变的物理机制.建立有关的有限元虚功方程,通过有限元数值方法模拟震后形变,从理论上分析介质的非均匀性、黏滞性松弛、流体调整对震后形变的影响.采用网格搜索确定昆仑断裂南北两侧下地壳的黏滞系数分别为5.0×1017Pa·s, 9.0×1018Pa·s左右,正是这十余倍的差异引起了断裂两侧震后形变的非对称性和同向运动,这一差异既是长期地质作用的结果,又是现代地球动力学环境的决定因素之一.通过数值模拟定性讨论了断裂北侧地表形变在震后短期内的调整,对于靠近断裂附近的测点可能是黏弹性松弛和孔隙流体调整共同作用的结果,所以在分析短期震后形变时综合考虑黏弹松弛和孔隙流体调整是很有必要的. 相似文献
89.
研究和提出了一种坑道直流电阻率超前聚焦探测新方法.该方法通过在掌子面上设立不同功能的环状电极组,使一次场电流具有像探照灯一样的聚焦功能,可有效探测坑道掘进前方不良地质体的存在,达到超前预报的目的.本文首先介绍了直流电阻率超前聚焦探测的基本原理,并给出了两种聚焦观测方式.为了验证所提方法的可行性,通过轴对称电性介质二维异常电位有限元数值模拟方法,对聚焦观测条件下几例坑道模型进行了模拟计算.结果表明,该方法对异常反映明显,可进行即时解释,建议在坑道超前预报中逐步推广使用. 相似文献
90.
Small variation of annual temperature in deep tunnel can produce annual variation in tilt and strain
In this paper,finite element method (FEM) of axisymmetric linear elastic model has been used to calculate the tilt and strain induced by small annual temperature variations in a deep tunnel. The results show that even if the am-plitude of the annual variation meets the construction standard of seismic station issued by China Earthquake Ad-ministration (the annual temperature variation amplitude in the tunnel is no more than 0.5 °C),a small annual tem-perature variation of amplitude just 0.2 °C in the tunnel would produce 10?7 rad changes in tilt and 10?7 changes in strain. Especially,at the end and the corner of the tunnel,changes of tilt and strain can be even larger. Therefore,in the future,it is an important task to reduce the annual temperature variation in the tunnel as far as possible. Within the tunnel,for both baseline instrument and pendulum instrument,the modeling suggests ways of construction of the tunnel and installation of the instrument to decrease the influence of the annual temperature variation. 相似文献