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1.
本文通过对某核电厂取水明渠导流堤地基土粉砂层室内共振柱试验及动三轴液化试验,测定了动剪切模量、阻尼比与动剪应变幅的双曲线关系,分析了粉砂的动力变形特性,探讨了砂土的抗液化强度与液化振次之间的乘幂函数关系,确定了该地基土的抗液化强度指标。为评价导流堤的地震稳定和液化分析提供了相关参数,同时对堤坝工程场地的地震安全性评价和液化评判有良好的借鉴和参考价值。  相似文献   

2.
对地震荷载作用下不同深度饱和粉土地基的液化特性进行研究,通过室内动三轴试验研究地震荷载作用下饱和粉土地基的最大可液化深度,试验中通过对给定不同应力幅值动荷载作用下饱和粉土的液化特性进行研究,得到不同地震烈度下不同深度土体的动剪应力比与破坏振次关系曲线,进而结合地基液化判别公式判断不同深度饱和粉土在不同地震烈度下是否发生液化。研究成果为高烈度地区确定抗液化措施及处理深度提供了依据。  相似文献   

3.
对地震荷载作用下不同深度饱和粉土地基的液化特性进行研究,通过室内动三轴试验研究地震荷载作用下饱和粉土地基的最大可液化深度,试验中通过对给定不同应力幅值动荷载作用下饱和粉土的液化特性进行研究,得到不同地震烈度下不同深度土体的动剪应力比与破坏振次关系曲线,进而结合地基液化判别公式判断不同深度饱和粉土在不同地震烈度下是否发生液化。研究成果为高烈度地区确定抗液化措施及处理深度提供了依据。  相似文献   

4.
黄河三角洲粉土液化的试验研究   总被引:2,自引:0,他引:2  
在野外自然地理和地质调查的基础上,以黄河地区可液化场地粉土为研究对象,利用室内动三轴和振动柱试验进行测定,分析了动荷载作用下粉土的动应力应变关系并模拟了地震荷载作用下粉土的孔压响应及抗液化强度,得出了液化破坏标准,提出了原状粉土的振动孔压上升模型。对试验结果进行分析发现,随着粘粒含量的增加,粉砂、粉土、粉质粘土、粘土达到相同剪应变所需的动剪应力也依次增加;粉土孔压比0.68、粉砂土孔压比0.87作为液化破坏开始的标志;粉土发生液化所需的循环应力比大于砂土。这些研究为以后建立适合本地区的饱和地基土地震破坏判别方法提供了参数和依据。  相似文献   

5.
简要回顾了国内外有关砂砾土动剪切模量和阻尼比的试验研究进展,总结了围压、固结比、颗粒形状、含砾量、颗粒破碎等因素对砂砾土动剪切模量、阻尼比及归一化动剪切模量比与阻尼比曲线特征的影响规律,发现砂砾土归一化动剪切模量比和阻尼比的曲线形状主要受围压大小的影响,其他因素的影响不明显;总结了砂砾土抗液化强度、振动孔压发展特征、液化判别方法方面的研究进展,含砾量、试样扰动、膜贯效应是影响砂砾土抗液化强度的主要因素;指出了砂砾土动力特性研究中存在的问题及今后应予以更深入关注的研究方向。  相似文献   

6.
因黄泛区粉砂土与其他地区有较大区别,对其动强度和抗液化强度的研究相对较少。对开封地区粉砂土的动强度和抗液化强度进行研究,选定围压、干密度、细粒含量作为影响因素,通过动三轴试验得到其动强度曲线和抗液化强度曲线,分别分析三个影响因素对黄泛区粉砂土动强度和抗液化强度的影响。结果表明:黄泛区粉砂土的动强度和抗液化强度随围压和干密度的增加而增大,随动荷载振动次数的增加而减小,随细粒含量的增加出现先降低后提高的现象,且其抗液化强度比动强度大。  相似文献   

7.
坝基地震液化特性及动力稳定性分析   总被引:3,自引:1,他引:2  
为了考虑水库大坝地基地震液化及动力特性,首先通过室内动三轴试验研究混黏土的粉土、粉砂在动荷载作用下的孔压累积特性,提出了选择双幅应变达到5%作为土样液化的标准;然后采用现场标贯试验和室内动三轴试验对水库坝基中的粉土、粉砂层进行了液化判别,并对判别结果进行了对比分析;同时在液化判别的基础上利用有效应力动力分析方法对坝基土体进行了考虑渗流和不考虑渗流的地震液化的非线性动力有限元分析,并将液化的判别结果与现场标贯试验、室内动三轴试验的判别结果进行对比,从中得出一些有益的结论可供类似工程参考。  相似文献   

8.
很多河流的堤防工程修建在人口密集地区,失事后往往会造成严重后果,尤其是细粒土填筑而成的堤防,在地震作用下存在液化破坏的可能。采用合理方法对堤防进行液化判别,确定其在地震作用下的动力稳定性十分必要。针对某实际堤防工程,进行五种拟用筑堤土料动力特性试验研究,并基于试验成果,采用能够考虑地基-堤身相互作用的非线性剪切梁方法,对堤防的液化可能性进行判别。研究表明:提出的非线性剪切梁方法能够考虑地基和堤身间的相互作用,且简单实用、可操作性强;土体的相对密度、空隙比和颗粒粒径大小及其他粒分布特性对其抗地震液化能力影响较大;在设定运行工况下,Ⅷ度地震时除拟选粉质壤土外,其他四种土筑堤均有发生液化的可能,选用粉质壤土筑堤较合适。  相似文献   

9.
淮安市典型土动力特性的试验研究   总被引:3,自引:2,他引:3  
通过对淮安市典型的全新世沉积粉土和粘性土进行室内自振柱试验及粉土的动三轴液化试验,把粉土和粘性土的自振柱试验结果与Seed和Idriss建议的砂土及饱和粘土的剪切模量比G/Gmax-γ曲线和阻尼比λ-γ曲线的变化范围进行对比,结果表明:粉土的剪模量比要比饱和粘土的大,而比砂土的剪模量比要小,其阻尼比接近于砂土的阻尼比;粘性土的剪模量比要比一般饱和粘土的大,而与砂土的剪模量比相近,其阻尼比要比砂土的略低;粉土的抗液化强度与液化振次之间的关系可以用指数函数来表示,其振动孔隙水压力的发展规律可以用反正弦三角函数拟合;粘粒含量是影响淮安市全新世沉积粉土抗液化强度的主要影响因素。  相似文献   

10.
利用GDS循环三轴仪进行一系列饱和砂砾土不排水动三轴液化试验,研究其在循环荷载作用下的液化特性,分析含砾量对饱和砂砾土动强度和动孔压的影响规律。研究表明:含砾量对砂砾土液化性能影响较大,随着含砾量的增加砂砾土抗液化强度呈单调增加趋势;随循环周次的增加孔隙水压力不断升高,增长速率与所施加的循环应力幅值有关,同一固结压力下,振次比相同时循环动应力幅值越大动孔压比越大;破坏振次对动孔压增长模式存在影响,破坏振次较小时砂砾土动孔压增长模式呈双曲线型发展,破坏振次较大时砂砾土的动孔压增长模式可用反正弦函数来表示,且含砾量越大循环荷载引起的孔隙水压力越高;含砾量对砂砾土液化特性的影响可从砂砾土的微细观结构特征得到阐释,并借助其粒间状态参量进行分析。  相似文献   

11.
The availability of efficient numerical techniques and high speed computation facilities for carrying out the nonlinear dynamic analysis of soil-structure interaction problems and the analysis of ground response due to earthquake loading increase the demand for proper estimation of dynamic properties of soil at small strain as well as at large strain levels. Accurate evaluation of strain dependent dynamic properties of soil such as shear modulus and damping characteristics along with the liquefaction potential are the most important criteria for the assessments of geotechnical problems involving dynamic loading. In this paper the results of resonant column tests and undrained cyclic triaxial tests are presented for Kasai River sand. A new correlation for dynamic shear damping (Ds) and maximum dynamic shear modulus (Gmax) are proposed for the sand at small strain. The proposed relationships and the observed experimental data match quite well. The proposed relationships are also compared with the published relationships for other sands. The liquefaction potential of the sand is estimated at different relative densities and the damping characteristics at large strain level is also reported. An attempt has been made to correlate the Gmax with the cyclic strength of the soil and also with the deviator stress (at 1% strain) from static triaxial tests.  相似文献   

12.
在地震反应分析中常采用总应力分析法,但总应力法没有考虑孔隙水压力的变化规律和液化随时间的发展过程。基于二维有效应力动力分析方法,结合Biot动力固结理论,采用自行开发的有效应力动力分析程序对某核电站导流堤地基进行液化分析,给出在地震作用下砂土层的液化范围,并计算出永久变形。所得结论可以给类似工程提供理论指导。  相似文献   

13.
在饱和砂土地震液化评估中,多用单向动三轴试验代替双向动三轴试验获得土体的抗液化强度。由于单向激振和双向激振产生的应力路径不同,土的动力特性受应力路径影响,其合理性尚待证明。本文利用双向振动三轴仪分别采用单、双向振动形式进行饱和砂土振动液化试验,对比了相同动剪应力作用下累积孔压和动强度,分析了较大循环振次作用下单、双向振动方式使试样动力响应产生差异的原因,提出了利用单向三轴试验代替双向振动模拟地震循环剪应力获得砂土动力特性的室内试验方法的适用条件。  相似文献   

14.
The August 17, 1999 Kocaeli earthquake affected the city of Adapazari, which is located in the northwest of Turkey, with severe liquefaction and bearing capacity failures causing tilting of buildings, excessive settlements and lateral displacements. To understand the stress–strain behavior and pore pressure behavior of undisturbed soils during the earthquake, the cyclic and post-cyclic shear strength tests have been conducted on soil samples obtained from Adapazari in a cyclic triaxial test system within the scope of this research. Cyclic tests have been conducted under stress controlled and undrained conditions. Post-cyclic monotonic tests have been conducted following cyclic tests. The strength curves obtained in the experiments showed that the dynamic resistance of silty sand was found to be 45% lower than those of high plasticity soils (MH). The strength of clayey soils with the plasticity index of PI=15–16% was lower compared to the strength of high plasticity soils. Also, it was observed that silty sand soils had the lowest strength. The dynamic strength of the soils increased with the increase in plasticity.  相似文献   

15.
Based on the dynamic triaxial liquefaction test of the loess samples which are taken from Shibei tableland, Guyuan City, Ningxia, China, the characteristics of dynamic strain, dynamic stress and pore water pressure are studied under cyclic loading. Triaxial shear test is conducted immediately after the sample reaches liquefaction point. During the test, the property of the liquefied soil is analyzed through fluid mechanics method, whereby the fluidity of the liquefied soil is represented by apparent viscosity.The results show that the fluidity of liquefied loess changes from "shear thickening" to "shear thinning" as the shear force continues, and the fluidity of liquefied loess is closely related to its structure. In addition, in the process of forming a new stable state, the apparent viscosity and deviant stress change with axial strain in a similar approach. When the sample reaches its stable state, it meanwhile shows a relatively stable apparent viscosity. According to the fluid mechanics and the law of conservation of energy, the slip distance of the liquefied soil is estimated, and the results are in good agreement with the field investigation results.  相似文献   

16.
地震作用下核电取水明渠导流堤稳定分析   总被引:1,自引:0,他引:1  
采用岩土工程专业软件Geo-slope对某核电站取水明渠导流堤工程进行抗震稳定性分析。运用极限平衡法及动力有限元两种方法分析导流堤在地震作用下的稳定性,得出其在地震作用下的稳定安全系数及相应滑动面的位置。从安全系数可以看出,在SL1地震动作用下各工况导流堤的稳定安全系数均大于1,说明导流堤处于稳定状态;在SL2地震动作用下,安全系数出现小于1的情况,说明在极限安全地震动作用下(万年一遇),导流堤会出现滑动破坏。本分析可为类似工程提供设计依据。  相似文献   

17.
Wang Jun    Wang Lanmin    Wang Ping   《中国地震研究》2009,23(2):223-227
ugh the sinusoid loading dynamic triaxial test, the liquefaction property of saturated loess and sand selected from a civil airport of Lanzhou, Gansu is examined. Based on the laboratory results, a comprehensive assessment on the earthquake liquefaction potential of the loess and sand is given, using the liquefaction resistance shear stress method and the results of seismic hazard assessment. It is found that under the effect of ground motion with exceedance probability of 10% within 50 years, the loess in the study is more susceptible to liquefaction than sand.  相似文献   

18.
通过室内动三轴试验,研究了西北地区遗址土体的动本构关系,得到了模型参数,分析了遗址土体的动剪模量比和阻尼比的特性,并通过归一化处理得出模型参数,结果表明:遗址土体符合Hardin-Dinevich双曲线模型,其相关系数均大于0.991 7,模型参数a、b与土样密度不存在相关性;在相同荷载下,密度越大,动应变和动残余应变越小,其中陕西定边陡沟子明长城墙体土承受动荷载能力下降较快,而草滩段秦长城墙体、瞭望台台基处初始弹性模量和初始剪切模量较小,三处土体硬度较小,易于遭受病害侵蚀破坏,需进行重点加固维护;遗址墙体所建窑洞处土体强度和硬度明显大于长城墙体,动弹性模量和动剪切模量约为其墙体2倍。草滩段瞭望台土体强度和硬度明显大于同地区长城墙体;遗址土体的动剪切模量G/G0随着动剪应变γd的增加而减小,且密度越大,衰减速度越快,阻尼比D随着动剪应变γd的增长,呈现先缓慢增加-急剧增加-缓慢增加的过程,且密度越大,阻尼比越大。按建造年代、建造形制和用途划分、所处地区对典型遗址进行动力特性的对比分析,为今后土遗址加固保护提供理论基础和参考依据。  相似文献   

19.
The linear and non-linear responses of surface soil layers have been predicted through the simultaneous simulation test against the observed ground motions at the six sites in Kobe City during the 1995 Hyogo-ken Nanbu earthquake. The total stress analysis method and the effective stress analysis method have been applied for the rough and detailed verification of the predicted non-linear dynamic behavior at the PIS and RKI sites including the liquefaction phenomenon. The shear strain distribution along depth, the ratio of excess pore water pressure to initial effective stress, the liquefaction strength parameters to initial effective stress, and the stress–strain curve during the earthquake at the PIS site have been investigated when the predicted ground motion could simulate successfully the observed acceleration time histories and response spectra in the non-linear range.  相似文献   

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