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1.
汶川地震液化土层类型验证及土性分析   总被引:1,自引:0,他引:1  
2008年5月12日汶川特大地震中,除在山区引发了大量山体滑坡、崩塌和泥石流外,在成都平原等地液化现象也十分普遍。液化主要分布在含砂、砾石和卵石等的第四系地层。依据地层分布特征和地震烈度,选择6个典型液化点(带)进行现场勘测和试验,以验证液化土层类型、了解液化土层的土性特征,并检验《建筑抗震设计规范》中液化判别方法的适应性。结果表明:(1) 典型液化点土类包含砂、砾石和卵石等,6个验证点中有2个为砂层液化(其中1个为砾砂)、3个为砾石层液化和1个为卵石层液化;(2) 与非液化地层相比,液化地层结构松散,均匀性差,颗粒大小分布曲线较平缓,不均匀系数较大,其中液化砂土级配良好,砾石和卵石级配不良;(3) 依据《建筑抗震设计规范》液化判别方法,将验证点1中砂液化判为非液化,其余5个验证点由于含较多粗颗粒,因无法进行标准贯入试验而无法进行液化判别。  相似文献   

2.
秦雅东  张士贞  刘函  李勇 《地球科学》2020,45(8):2945-2956
湖相沉积古地震研究是对地表破裂古地震研究的重要补充.通过详细的野外地质调查,在西藏许如错地区全新统湖相地层内新发现大量地震触发软沉积物变形构造(震积岩),层内发育液化脉、液化曲卷变形、液化角砾岩、液化水压构造、滴状体与锥状体、砾石丘、负载构造和火焰构造等软沉积变形标志,还发育同震断层、震裂缝和同震褶皱等同震构造标志.根据软沉积变形标志与震级之间的关系,结合历史地震统计液化颗粒范围,通过C14和光释光年龄测定,推测古地震事件发生在±7.5 ka,MS>7.5级;填补了该区历史地震的空缺,为恢复青藏高原南北向地堑地震活动历史及迁移规律提供了素材.震积岩中见大量砾石液化现象,这对现阶段以砂土-粉砂土研究为主的砂土液化调查工作提出了新挑战.   相似文献   

3.
2016年11月25日新疆阿克陶县木吉乡发生MS6.7地震,发震构造为公格尔山拉张系北端的木吉断裂,断裂总长度超过100 km,以右旋走滑为主兼有一定的拉张分量。文章在对震区进行了初步的地震地质灾害调查,总结砂土液化和地裂缝在高原季节性冻土地区的分布及发育特点的基础上,发现:1)在研究区Ⅰ维日麻村的砂土液化主要沿原有泉眼或沿地裂缝发育,沿泉眼形成的砂土液化其喷砂锥的覆盖面积达36.1 m2,占总液化面积的60%,研究区Ⅱ布拉克村的砂土液化则主要是沿草甸的根系喷出,在地表形成大面积的最新涌水结冻特征;2)对研究区Ⅱ布拉克村地裂缝的深度进行统计,反演出区域冻土层厚度,结合探槽揭露的地层剖面,推断冻土层发生大面积地裂缝是因为地震引起冻土层下部融土层发生砂土液化导致土层变形失稳,从而使冻土层发生形变产生一系列规律性的地裂缝。  相似文献   

4.
回顾了1994年美国Northridge地震、1995年日本阪神地震、1999年土耳其Kocaeli地震、1999年台湾集集地震、2008年中国汶川地震、2010年智利Maule地震、2010~2011新西兰Darfield地震及余震、2011年东日本地震中大量的、不同类型的液化实例调查与研究,发现这些地震的液化具有以下特点:(1)罕见的特大地震(Mw9.0)使远离震中300~400 km的新近人工填土发生严重的大规模液化;(2)特大地震(Ms8.0、Mw8.8)使远离震中的低烈度Ⅴ~Ⅵ度地区发生严重液化;(3)海岸、河岸附近地区的新近沉积冲积、湖积土,填筑时间不到50年的含细粒、砂砾人工填土,容易发生严重液化;(4)天然的砂砾土层液化发生严重液化;(5)发生了深达20 m的土层液化现象;(6)松散土层液化后可以恢复到震前状态并再次发生液化;(7)高细粒(粒径≤75 ?m)含量≥50%或高黏粒(粒径≤5 ?m)含量≥25%的低-中塑性土严重液化,对介于类砂土与类黏土之间的过渡性态土,有时地表未见液化现象;(8)液化土层的深度较深或厚度较小时,容易出现地面裂缝而无喷砂现象;有较厚的上覆非液化土层时,场地液化不一定伴随地表破坏。液化实例证明,第四系晚更新世Q3地层可以发生严重液化;黏粒含量不是评价细粒土液化可能性的一个可靠指标;低液限、高含水率的细粒土易发生液化,采用塑性指数PI、含水率wc与液限LL之比作为细粒土液化可能性评价的指标是适宜的。综合Boulanger和Idriss、Bray和Sincio、Seed和Cetin等的液化实例调查与室内试验研究成果,建议细粒土液化可能性的评价准则如下:PI <12且wc/LL>0.85的土为易液化土,12<PI≤20和/wc/LL≥0.80的土为可液化土;PI >20或wc/LL<0.80的土为不液化土。  相似文献   

5.
为探明安庆市部分地区的液化情况,以现有的区域工程地质调查资料为依据,依照中国目前国家规范的液化判别方法,对安庆市的宜秀区、迎江区、大观区和怀宁县超820 km2区域地表至20 m深度内的饱和砂土层、粉砂层和粉土层等土层进行液化判别。结果表明:27个工程钻孔中,有10个判别结果为液化; 15个静力触探孔中,有14个判别结果为液化。实际工程中应对砂土液化可能造成的地基液化沉陷进行相应的处理。  相似文献   

6.
龙门山山前砂土液化初步研究   总被引:1,自引:1,他引:0       下载免费PDF全文
对龙门山山前的成都平原(金马河以北)和川北丘陵区进行了地震液化现场调查。结果表明:液化点主要沿河谷底部和低阶地分布,液化集中区平行于NE向龙门山地震断层,与断层的转折、终止、出现部位相对应,与地震动最大峰值加速度(PGA)等值线主轴一致。液化喷出砾石最大粒径30 cm,最大喷砂量约15m3,堆积厚达4m,冒水高达775 cm,地表破裂长达1 000m。喷砂冒水与强震动相一致,强震过后,大部分液化点上的喷砂冒水现象消失。分析表明:冒水高度总体随震中距增加而降低,亦存在随震中距增加而增高和波动的趋势。液化砂土来自第四系不同地层,并出现了下更新统下段的红色强风化泥砾。  相似文献   

7.
汶川8.0级地震液化震害及特征   总被引:3,自引:1,他引:2  
通过现场详细地调查,归纳总结了汶川地震液化导致的工程震害的现象、分布、规律和特征。结果表明,此次地震液化震害现象显著,位于德阳地区的3个液化区域震害严重,都江堰地区、绵阳游仙区以及江油市区的3个液化区域震害中等,其他地区轻微,液化震害分布与液化分布有一定关系,但二者有所不同;液化场地上房屋均不同程度受损,其中结构性差的房屋会直接倒塌,设有圈梁、构造柱的房屋,液化也会导致其整体倾斜、下沉、开裂;学校液化震害具有典型性,部分校区大面积液化,地裂缝纵横,地基不均匀沉降严重,主体结构开裂、倾斜,功能丧失。这次液化震害具有3个显著特征:(1)只要液化出现的地方,震害均比周围重,没有减震现象;(2)Ⅵ度区不仅有液化现象,而且有明显的液化震害;(3)液化伴随地裂缝,是构成此次地震液化震害的主因。  相似文献   

8.
为研究液化场地中群桩在强震作用下的动力响应特征及桩侧土抗力-桩土相对位移(p-y)曲线规律,依托海文大桥实体工程,基于振动台模型试验,开展了0.15g~0.35g地震动作用饱和粉细砂土层不同埋置深度下的砂土孔压比、桩身弯矩及p-y曲线动力响应研究。结果表明:地震动强度达到0.25g时,不同埋置深度下的饱和粉细砂土层孔压比均大于0.8,产生液化现象,且随埋置深度增加,孔压比增长时刻明显滞后;不同埋置深度下,桩身弯矩最大值均位于液化土层和非液化土层分界面处;同一埋置深度时,随地震动强度的增大,p-y曲线所包围的面积逐渐增大,其整体斜率逐渐变小,说明桩-土相互作用动力耗能逐渐增大,桩周土体刚度逐渐减小;随埋置深度增加,p-y曲线所包围的面积逐渐减小,其整体斜率逐渐增大,说明桩-土相互作用动力耗能逐渐减小,桩周土体刚度逐渐增大。因此,液化场地桥梁群桩抗震设计时,应综合考虑液化土层与桩基础的相互位置关系,确保桩基础在液化土层与非液化土层分界处的抗弯承载能力。  相似文献   

9.
浅埋煤层地表厚砂土层“拱梁”结构模型研究   总被引:1,自引:0,他引:1  
黄庆享  张沛  董爱菊 《岩土力学》2009,30(9):2722-2726
西部地区拥有储量最大的浅埋煤田,煤层顶板主要特点是基岩薄,地表为厚砂土层。浅埋煤层采动后,上覆岩层垮落运动将直接波及地表厚砂土层,引起采场强烈来压及地表塌陷等灾害。通过物理模拟试验,揭示了厚砂土层贯通地表裂缝的形成和发展规律,发现地表厚砂土层初次垮落的“拱梁”和周期垮落的“弧形岩柱”结构。通过建立厚砂土层“拱梁”结构数学模型,得出了“拱梁”内的应力分量,并给出了厚砂土层破裂的判据和出现拉裂缝的位置,为确定周期性“弧形岩柱”的有关参数提供了依据,为工作面顶板压力控制和地表塌陷的分析提供了基础。  相似文献   

10.
埋地管道应用广泛,而在管道铺设过程中穿越的大范围可液化土层,面临着地震作用下管道液化上浮和变形破坏等风险。依托某临海火电站直埋管道工程,采用室内振动台模型试验方法,分析了海洋液化地基中输水管道的变形特性和动力响应,探究了砾石压重法和排水板加固法的抗液化效果。结果表明:海洋饱和砂土地基在动力荷载作用下发生液化,不同深度土层加速度出现不同程度的衰减,上部土层加速度衰减幅度最大且沿深度减小;不同土层中土体超孔压先快速上升达到峰值并维持稳定直至振动停止;在振动过程中,管道发生了明显上浮,且上浮速率逐渐降低,当振动停止时达到最大上浮位移;砾石压重法对于管道抗液化效果不佳,加速度和超孔压时程曲线与标准工况基本一致,中上层砂土出现明显液化现象,但超孔压峰值存在一定下降,且管道上浮与标准工况相比下降65.4%;而宽、窄排水板加固法效果更加显著,整体土层液化现象得到抑制,超孔压峰值与标准工况相比较小,且在振动期间持续降低,平均峰值与标准工况相比分别下降48.30%和38.91%,同时管道竖向位移与标准工况相比降幅均超过100%。在实际工程应用中,推荐使用排水板加固方案,同时需要选择适当的排水通道宽度。  相似文献   

11.
Kayen  Robert E.  Mitchell  James K. 《Natural Hazards》1997,16(2-3):243-265
Uncompacted artificial-fill deposits on the east side of San Francisco Bay suffered severe levels of soil liquefaction during the Loma Prieta earthquake of 17 October 1989. Damaged areas included maritime-port facilities, office buildings, and shoreline transportation arteries, ranging from 65 to 85 km from the north end of the Loma Prieta rupture zone. Typical of all these sites, which represent occurrences of liquefaction-induced damage farthest from the rupture zone, are low cone penetration test and Standard Penetration Test resistances in zones of cohesionless silty and sandy hydraulic fill, and underlying soft cohesive Holocene and Pleistocene sediment that strongly amplified ground motions. Postearthquake investigations at five study sites using standard penetration tests and cone penetration tests provide a basis for evaluation of the Arias intensity-based methodology for assessment of liquefaction susceptibility.  相似文献   

12.
One of the major causes of earthquake damage is liquefaction. However, it doesn't result in severe harm unless it leads to ground surface damage or ground failure. Therefore, prediction of potential for ground surface damage due to liquefaction is one of the important issues in microzonation studies for liquefaction-induced damage in areas with high seismicity. In 1985, based on a database compiled from Chinese and Japanese earthquakes, Ishihara considered the influence of the non-liquefied cap soil on the occurrence or non-occurrence of ground failure (mainly sand boiling), and proposed an empirical approach to predict the potential for ground surface damage at sites susceptible to liquefaction. However, some investigators indicated that this approach is not generally valid for sites susceptible to lateral spread or ground oscillation. In this study, a contribution to improve the approach by Ishihara is made. For the purpose, an index called liquefaction severity index (LSI) and data from two devastating earthquakes, which occurred in Turkey and Taiwan in 1999, were employed. The data from liquefied and non-liquefied sites were grouped and then analysed. Based on the observations reported by reconnaissance teams who visited both earthquake sites and the results of the liquefaction potential analyses using the filed-performance data, a chart to assess the potential for ground surface disruption at liquefaction-prone areas was produced. The analyses suggest that the procedure proposed by Ishihara is quite effective particularly for the occurrence of sand boils, while the bounds suggested in this method generally may not be valid for the prediction of liquefaction-induced ground surface disruption at sites susceptible to lateral spreading. The chart proposed in this study shows an improvement over the Ishihara's approach for predicting the liquefaction-induced ground surface damage. The microzonation maps comparing the liquefaction sites observed along the southern shore of Izmit Bay and in Yuanlin, and the surface damage and non-damage zones predicted from the proposed chart can identify accurately the liquefaction (sand boiling and lateral spreading) and no-liquefaction sites.  相似文献   

13.
液化型路堤边坡动力稳定性问题涉及岩土工程与工程地震两个学科领域,是边坡工程与砂土液化的交叉课题。采用天然地震记录为输入条件,应用Finn本构关系模型,运用有限差分法,对填土+砂土+卵砾土地层组合的路堤边坡进行了全时程动力分析,探讨了地震作用下路堤边坡的液化初步规律和稳定性。数值模拟结果表明:地震作用引起了路基饱和砂土有效应力急剧减小,并导致路基砂土液化,引起路堤变形破坏。孔隙水压力的积累与消散不仅与地震记录序列存在对应关系,也与砂土所处的位置和深度有密切关系。地表变形破坏主要表现为路堤顶面发生震陷和拉裂破坏,坡底面产生挤压隆起变形。地面以下的变形破坏主要包括土体剪切破坏和深部砂土液化引起的侧向流动破坏。  相似文献   

14.
地震历史对砂土抗液化性能影响的试验研究   总被引:1,自引:0,他引:1  
苏栋  李相崧 《岩土力学》2006,27(10):1815-1818
为探讨地震历史对饱和砂土抗液化性能的影响,通过离心机动力模型试验,观测了遭受过不同强度地震的饱和砂土水平场地在再次地震荷载作用下的响应,包括超静孔隙水压力的发展和土体的变形。研究表明,小地震有利于增强砂土颗粒之间的咬合及结构的稳定性,极大地提高了其抗液化能力,而遭受强地震并且发生液化的砂土,由于在沉积过程中形成的不稳定结构,则可能在将来强度相对较小的地震中再次液化。试验结果说明了地震历史对砂土液化性能有重大影响及进一步开展砂土细观结构研究的重要性。  相似文献   

15.
The increasing importance of performance-based earthquake engineering analysis points out the necessity to assess quantitatively the risk of liquefaction of embankment-type structures. In this extreme scenario of soil liquefaction, devastating consequences are observed, e.g., excessive settlements, lateral spreading and slope instability. The present work discusses the global dynamic response and interaction of an earth structure-foundation system, so as to determine quantitatively the collapse mechanism due to foundation’s soil liquefaction. A levee-foundation system is simulated, and the influence of characteristics of input ground motion, as well as of the position of liquefied layer on the liquefaction-induced failure, is evaluated. For the current levee model, its induced damage level (i.e., induced crest settlements) is strongly related to both liquefaction apparition and dissipation of excess pore water pressure on the foundation. The respective role of input ground motion characteristics is a key component for soil liquefaction apparition, as long duration of mainshock can lead to important nonlinearity and extended soil liquefaction. A circular collapse surface is generated inside the liquefied region and extends toward the crest in both sides of the levee. Even so, when the liquefied layer is situated in depth, no significant effect on the levee response is found. This research work provides a reference case study for seismic assessment of embankment-type structures subjected to earthquake and proposes a high-performance computational framework accessible to engineers.  相似文献   

16.
地层组合对砂土液化的影响分析   总被引:1,自引:1,他引:0  
利用Laplace变换取得了下卧与上覆层的组合地层在已知地震烈度或地层位移两种初始条件下的剪应力的解析表达式,提出了一种新的液化判别方法;并利用编程计算,分析了地层组合中各参数对砂土液化的影响,得到了在各种组合情况下砂土液化的难易程度。对工程判别有一定的理论指导作用。  相似文献   

17.
The town of Edessa is located on Northern Greece at a region that is characterized as low seismicity zone due to the fact that few moderate events of M < 6 occurred during the last century. According to the Greek Seismic Code, the expected acceleration having a 10% probability of being exceeded in 50 years is equal to 0.16g. However, an amplification of ground motion is likely to occur due the local geology that is consisted of Holocene fluvio-torrential deposits. The basic aim of this paper is to evaluate the site amplification due to geological conditions and to assess the liquefaction hazard. In order to achieve this, 1-D site response analyses were performed. The data that were employed for the construction of the numerical models have been collected from borings with standard penetrations tests (SPT) that were drilled for construction purposes. Afterward, the liquefaction potential of the subsoil layers was evaluated taking into consideration two seismic scenarios. The first scenario was based on the seismic parameters, earthquake magnitude and PGA, assigned by the Greek Seismic Code. On the second seismic model, we employed the values of acceleration, resulted from the 1-D analyses and the earthquake magnitude as it was defined by the Greek Seismic Code. In order to compile the liquefaction hazard maps, we initially estimated the liquefaction potential index (LPI) of the soil columns using the parameters provided by SPT, for both seismic loadings, and afterward we correlated these values with the proposed classification of the severity of liquefaction-induced deformations. In addition, having computed the value of probability based on the LPI, liquefaction manifestations probability maps were compiled for both scenarios. The result of this study was that liquefaction-induced ground disruptions are likely to occur at the center of the city, among the branches of Voda River, only when the amplified values of acceleration are taken into account to the computation of liquefaction potential.  相似文献   

18.
砂土地震液化的模糊概率评判方法   总被引:2,自引:1,他引:1  
刘章军  叶燎原  彭刚 《岩土力学》2008,29(4):876-880
利用模糊数学中的模糊概率理论,建立了砂土地震液化的模糊概率综合评判模型。在此模型中,提出了模糊权重的概念,可充分考虑权重的模糊性,从而避免权重取值带来的不确定性。结合砂土地震液化特点,选取地震烈度、标准贯入击数、平均粒径和上覆有效压力作为主要评价影响因子,同时将液化程度划分为不液化、轻微液化、中等液化和严重液化4个等级,进而使其评判结果更为精细化。通过算例分析,表明文中方法对砂土液化评判的合理性与有效性。  相似文献   

19.
Yalova City (Turkey) is in a tectonically active location that is particularly affected by the northern branch of the North Anatolian Fault Zone. Magnitudes 7.4 and 7.2 earthquakes in 1999 caused great destruction in Yalova. The heavy damage to buildings and other civil engineering structures was mainly due to liquefaction-induced settlement and site effects such as resonance and amplification. In the first phase of this study, the soil liquefaction potential index (PL) and the induced soil settlement were estimated. In the second phase, the effects on sites in Yalova soil were investigated using microtremor and earthquake data. The fundamental periods and amplification in soft soil were compared with microtremor data and strong ground motion records obtained by a local array of eight accelerograph stations deployed in Yalova. Thirty-seven ‘single site’ ambient noise measurements were taken in a dense grid of points covering the centre of the city. A comparison between fundamental periods obtained from strong ground motion records and from microtremor measurements showed similarities, in the 0.1–5 Hz range. Finally, soil liquefaction and amplification (or resonance) were divided into regions according to the extent of damage and the geotechnical/geophysical results.  相似文献   

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