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1.
剪切波速判别地震液化势的适用性研究   总被引:4,自引:2,他引:4  
本文阐述了剪切波速判别地震液化势的可行性, 对目前国内外各种剪切波速判别地震液化势的方法进行了分析对比, 指出公式(6)是一实用、可靠的判别方法。  相似文献   

2.
李兆焱  孙锐  曹振中  石江华  董林  袁晓铭 《岩土力学》2010,31(12):3907-3912
2003年2月24日新疆巴楚-伽师地区发生的6.8级地震中出现了自1996年唐山大地震以来我国大陆境内最为严重的砂土液化现象。以此地震液化调查为基础,检验包括我国规范液化判别方法、Robertson方法和Olsen方法的国内外现有静力触探试验为指标的液化判别方法的适用性。结果表明,我国规范、Robertson方法、Olsen方法在对巴楚地震液化场地判别中,总体上非液化场地判别成功率高于液化场地判别成功率,非液化场地的判别成功率分别为88%、71%和88%,但对液化场地判别成功率分别为55%、73%和45%,明显偏于危险,原因需要进一步查明,建立适合局部地区的液化判别方法应是未来必须进行的工作。  相似文献   

3.
《岩土力学》2017,(12):3643-3648
利用集集地震静力触探试验(CPT)数据,对基于CPT测试的Robertson液化判别方法和Olsen方法进行了检验,两个方法对液化点判别成功率分别为82.61%和80.43%,对非液化点判别成功率分别为31.82%和44.32%。CPT液化判别方法对液化点判别基本可靠,但对非液化点判别准确性较差。对集集地震标准贯入试验(SPT)数据,美国地震工程研究中心(NCEER)推荐的SPT液化判别方法对液化点和非液化点判别成功率分别达到92.41%和94.35%。SPT方法判别成功率非常高,整体准确性远高于CPT方法。另一方面,CPT的土分类图可以同时反映土的种类与强度,甚至可以对集集地震液化土与非液化土进行区分。对于细粒土的液化初判,CPT土分类图也优于SPT方法中的黏粒含量指标。因此,土分类图是CPT的优势所在。  相似文献   

4.
天津地区饱和粉土地震液化的试验研究   总被引:4,自引:1,他引:3  
周相国  邢贵发  苏玉国 《岩土力学》2009,30(12):3813-3819
地震液化是导致地基失稳和上部结构受损的直接原因之一。通过对天津地区粉土进行原位取土以及现场原位测试分析,研究了粉土土质特点对液化判别的影响,并在动三轴试验基础上阐述了该区域粉土的动力特性和液化机制。结合原位测试方法比较了现有的地震液化判别方法,指出该区域粉土液化判别应考虑粉土成分特征的影响,并提出孔压达到围压的60%~90%,双幅应变达到4%可作为液化的判别标准。  相似文献   

5.
本文简略介绍砂类土地震液化中两个地震因素:地震强度和地震持时的作用,同时还叙述了地震液化判别时“临界区”的存在问题,以及本文最后提出两个适合于工程技术人员使用的液化判别时正确选择近震、远震的实用性方法。  相似文献   

6.
随机地震荷载作用下饱和粉土的液化特性   总被引:3,自引:0,他引:3  
为了考虑随机地震荷载作用下饱和粉土的液化特性,研究了如何通过合理的地震响应分析确定饱和粉土层受到的随机地震荷载,进一步探讨了随机地震荷载作用下的动三轴试验技术,以及利用此种试验分析饱和粉土液化特性的方法。研究结果为形成判别饱和粉土层地震液化可能性的新方法提供了依据。  相似文献   

7.
历史地震液化调查数据是液化判别方法构建、改进以及验证的重要基础,也是检验现有液化认识和理论的主要标准。通过吸收我国集集、巴楚和松原等地震液化数据,将基于标准贯入试验(standard penetration test,简称SPT)锤击数的液化数据量库从121个增至465个。采用该液化数据库,对比研究了我国建筑抗震设计规范液化判别方法(简称建规法)、2个双曲线模型以及循环剪应力比CSR简化方法等4种基于SPT液化判别方法的可靠性。结果显示:2个双曲线模型能够很好地判别液化和非液化数据,成功率超过85%,对液化数据和非液化数据的判别成功率保持均衡;建规法以及CSR简化方法判别结果存在不足;地震烈度为7度区液化数据和非液化数据混合情况较多,不同液化判别公式判别效果均不够理想,而对8度区和9度区液化数据,4种方法判别成功率较高;与以往液化概率判别公式对比,基于CSR计算方法,采用新液化数据给出的液化风险评估概率判别公式虽然采用数据量不同,但公式预测临界线匹配良好;建规法存在明显不足,对饱和砂层埋深大于10 m的深层土液化判别结果过于保守。研究成果可为改进我国规范中液化判别方法提供参考。  相似文献   

8.
李兴祥 《浙江地质》2002,18(1):45-47
针对国家标准《建筑抗震设计规范》规定的地震液化判别规则,本提出一种简化的判别计算方法。  相似文献   

9.
我国规范液化分析方法的发展设想   总被引:1,自引:0,他引:1  
袁晓铭  孙锐 《岩土力学》2011,32(Z2):351-358
通过分析我国地震形势、液化震害潜在威胁以及震害防御工作现状,阐明了我国发展液化分析方法的客观需求,简要评述了我国规范中现有液化判别方法,总结了我国近来两次大地震液化考察经验,提出了与规范修订相关的研究设想。通过我国地震安全性评价工作的发展现状以及我国大陆地震重点监视区与第四纪沉积分布性态分析,说明了我国发展液化分析方法的必要性和紧迫性。根据2003年新疆巴楚地震和2008年汶川大地震中液化震害考察结果,比较我国规范现状,提出了与未来规范的完善和发展相关的10个研究课题,包括:液化对设计谱的影响、 特殊土类液化判定标准、区域性的液化判别标准、场地液化概率评价、基于液化土层PGD的结构物损害估计、液化引起地裂缝的生成条件、基于剪切波速的液化判别方法、VI度区内场地液化及危害性判定、深层土液化判定以及场地液化的现场判定和识别技术  相似文献   

10.
基于判别分析法的地震砂土液化预测研究   总被引:5,自引:3,他引:2  
颜可珍  刘能源  夏唐代 《岩土力学》2009,30(7):2049-2052
将距离判别分析方法应用于砂土液化的预测问题中,建立了砂土液化预测的距离判别模型。选用震级、研究深度、震中距、标贯击数、地下水位及地震持续时间等6项指标作为判别因子,以大量的工程实例数据作为学习样本进行训练,建立了线性判别函数对待评样本进行了评价。研究结果表明,距离判别分析模型判别砂土液化效果良好,预测准确度高,回判估计误判率低,可望成为砂土液化预测的有效手段。  相似文献   

11.
Two important aspects of the liquefaction of level ground are discussed; the liquefaction potential of a site due to specified earthquake motions and the total probability of liquefaction at a site due to the entire seismic environment surrounding the site. Dynamic effective stress analysis is used to explore two important case histories of liquefaction due to specified ground motions. The probability of liquefaction is assessed by a method which estimates the joint probability of occurence of earthquake magnitude and acceleration amplitude sufficient to cause liquefaction.  相似文献   

12.
During the 2011 Great East Japan Earthquake, severe liquefaction occurred in reclaimed ground in Urayasu city, Chiba prefecture. This liquefaction provided important lessons for us to re-recognize the liquefaction mechanism. A distinct feature of the liquefaction in this earthquake is that severe liquefaction happened not only in the main shock but also in an aftershock with a maximum acceleration of 25 gal. In some areas, liquefaction happened in the aftershock is even more serious than that happened in the main shock. In this paper, focus is placed on the characteristic features in the occurrence of liquefaction and consequent ground settlement. Based on the observed data, a series of dynamic–static analyses, considering not only the earthquake loading but also static loading during the consolidation after the earthquake shocks, are conducted in a sequential way just the same as the scenario in the earthquake. The calculation is conducted with 3D soil–water coupling finite element–finite difference analyses based on a cyclic elasto-plastic constitutive model. From the results of analyses, it is recognized that small sequential earthquakes, which cannot cause liquefaction of a ground in an independent earthquake vibration, cannot be neglected when the ground has already experienced liquefaction after a major vibration. In addition, the aftershock has great influence on the long-term settlement of low permeability soil layer. The observed and predicted liquefaction and settlements are compared and discussed carefully. It is confirmed that the numerical method used in this study can describe the ground behavior correctly under repeated earthquake shocks.  相似文献   

13.
地震引起地基土层中的砂土液化,其临界液化深度是多少?世界岩土工程界进行了大量的实际资料分析和试验研究,至今众说纷纭。笔者在综合分析各国专家研究成果时,从中发现地震引起砂土液化的普遍自然规律,并建立起Gan—chen模式,可简易计算砂土液化的临界深度在5~12m范围内。  相似文献   

14.
Assessment of the liquefaction potential is one of the important aspects for earthquake hazard assessment. Liquefaction in the sediments during earthquake events may cause significant ground deformation, which in turn, may lead to significant structural damages to civil or engineering structures, further leading to loss of life and property. Liquefaction in sediments occurs in specific geological and geoenvironmental conditions under the influence of a certain level of earthquake shaking.In this paper an assessment of the liquefaction potential of the sediments present in and around Chandigarh has been made. The sub-surface disposition and geotechnical properties of the sedimentary units mapped and depth wise probed by drilling 24 shallow boreholes prima facie indicates susceptibility of interlayed sequence to liquefaction. The conditioning factors and geoenvironmental conditions essential for occurrence of liquefaction have been integrated and analysed to determine potential areas for liquefaction around the Union Territory of Chandigarh with respect to different levels of ground acceleration values expected in the area due to earthquake events.  相似文献   

15.
2008年汶川Mw7.9地震的强地面震动在龙门山前地区造成大量的砂土液化、喷砂冒水等地震灾害现象。震后野外调查发现,砂土液化点主要分布于地下水位只有几米深的山前河流的低阶地处,以大面积砾性土液化为特征,约58%的液化点位于距北川断层20~35km的范围内。对喷水高度及喷水过程进行了详细记录,喷水高度与峰值加速度并没有明显的相关性,喷水高度异常点(2m)集中于山前断裂系统近地表投影处。汶川地震中喷水高度异常、砾性土液化的位置与山前断裂系统的吻合性说明,沉积盆地内的地质构造可能在砂土液化强度和与震动相关的地震灾害方面起到促进作用,所以在类似的地质和水文环境中,除主震的断层错动外,应考虑地质构造在地震危险性评估和建筑物抗震设计中的重要作用。  相似文献   

16.
运用标贯法和seed简化方法对坝基的抗震液化进行了分析判别,发现坝基中粉砂和细砂层存在严重液化问题,中砂层局部存在液化问题,液化深度一般为7~9m,最大液化深度可达13.2m。依据坝坡稳定分析结果,确定上、下游坝脚内15m,坝脚外5m为坝基液化处理范围,粉砂、细砂层为主要处理地层。在实际防治工作中,采用振冲碎(砂)石桩或振动沉管砂石桩,结合水平排水对坝基的地震液化进行处理。处理后对各区砂土层的密实度及饱和砂土的地震液化进行检验,结果表明处理厚的坝基基本上达到了基础处理的目的。  相似文献   

17.
孙锐  唐福辉  袁晓铭 《岩土力学》2011,32(Z2):383-388
场地液化实时监测是减轻地震灾害的新手段,其核心是建立依据强震记录识别场地液化技术,但目前建立的方法尚不成熟,可靠性也缺少实际地震的检验。2011年新西兰地震中液化及其震害现象显著,为检测现有液化识别方法提供了条件。利用该次强震记录,采用孙锐和袁晓铭以往提出的频率下降率法对记录场地液化进行了盲测,为今后方法改进提供思路。针对震中距小于50 km的全部27条原始强震记录进行了识别,有9个场地识别为液化场地,其余为非液化场地;对两个已报道为液化的场地,频率下降率法给出了正确的识别结果;识别出的液化场地主要集中在克赖斯特彻奇市东侧Avon河两岸,这一结果与报导定性相符;发现有两个场地原始强震记录存在疑点,经处理后给出了修正结果。  相似文献   

18.
Liquefaction of loose, saturated granular soils during earthquakes poses a major hazard in many regions of the world. The determination of liquefaction potential of soils induced by earthquake is a major concern and an essential criterion in the design process of the civil engineering structures. A large number of factors that affect the occurrence of liquefaction during earthquake exist a form of uncertainty of non-statistical nature. Fuzzy systems are used to handle uncertainty from the data that cannot be handled by classical methods. It uses the fuzzy set to represent a suitable mathematical tool for modeling of imprecision and vagueness. The pattern classification of fuzzy classifiers provides a means to extract fuzzy rules for information mining that leads to comprehensible method for knowledge extraction from various information sources. Therefore, it is necessary to handle the soil liquefaction problem in a rational framework of fuzzy set theory. This study investigates the feasibility of using fuzzy comprehensive evaluation model for predicting soil liquefaction during earthquake. In the fuzzy comprehensive evaluation model of soil liquefaction, the following factors, such as earthquake intensity, standard penetration number, mean diameter and groundwater table, are selected as the evaluating indices. The results show that the method is a useful tool to assess the potential of soil liquefaction.  相似文献   

19.
汤皓  陈国兴  李方明 《岩土力学》2006,27(Z1):1007-1012
采用组件式GIS (COMGIS)技术开发了结合BP神经网络分析模型的场地地震液化势评价系统,调用水平成层土地震反应分析程序SHAKE91实现设定地震下地震动影响场的模拟。在VB下调用Matlab神经网络工具箱来完成场地地震液化势评价模型在COMGIS系统中的模块化;利用GIS技术对评价结果,即液化势等级进行空间复合,给出场地潜在的地层液化势空间分布图。研究表明,SHAKE91应用程序在系统菜单下可直接调用,实现地震动影响场计算的模块化;BP神经网络技术应用于场地地震液化势评价中能达到较为理想的效果;系统的GIS空间分析功能可使评价结果与场地信息进行空间匹配,实现目标场地潜在地震液化势的快速评估。  相似文献   

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