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1.
青藏铁路多年冻土区普通路基热状况监测分析   总被引:1,自引:1,他引:0  
基于现场地温监测数据,选取年平均地温不同的监测断面对青藏铁路普通路基的热状况进行分析,包括多年冻土上限变化及其地温变化、下伏多年冻土温度变化、原天然地表附近热收支等方面. 结果表明:在低温多年冻土区,路基下部多年冻土上限均有所提升,且新近形成的人为上限较为稳定,冷季时负温积累显著;路基下伏多年冻土总体热稳定性较好. 而在高温多年冻土区,左(阳坡)路肩下部多年冻土上限多表现为下降,右(阴坡)路肩下部多年冻土上限有升有降,但是新近形成的上限均温度较高且有进一步升温的趋势;与天然场地地温相比,路基下部多年冻土均出现一定的升温. 尤其在高温极不稳定多年冻土区,天然场地多年冻土自身处于吸热升温状态;路基修筑后,下部多年冻土已经出现了融化夹层及双向退化的情况,路基热稳定性较差. 对于普通路基来说,由于青藏高原强烈的太阳辐射及青藏铁路总体走向原因,普通阴阳坡效应显著,左、右路肩下部多年冻土热稳定性差异较大.  相似文献   

2.
青藏铁路多年冻土区路基变形特征及其来源   总被引:3,自引:0,他引:3  
基于青藏铁路多年冻土区34个路基监测断面2005-2011年的变形与地温资料,分析路基的变形特征及其来源。监测结果表明:①监测期累计变形量大于100 mm的断面均为普通路基,其变形主要来自路基下部因冻土上限下降而引起的高含冰量冻土的融沉变形以及融土的压密变形,其次为路基下部多年冻土因地温升高而产生的高温冻土的压缩变形。②监测期累计变形量小于100 mm的普通路基与块石结构路基断面,其变形主要来自路基下部多年冻土的压缩变形。③总体而言,块石结构路基变形量明显小于普通路基,从而验证了主动冷却措施的长期有效性。其研究结果可为冻土区路基稳定性判断及病害预警提供数据支持。  相似文献   

3.
青藏铁路冻土路基沉降变形现场试验研究   总被引:3,自引:0,他引:3  
Based on the field data of ground temperature and roadway settlement observed during the construction of the experimental embankments over permafrost along the Qinghai-Tibetan Railway, this paper discusses the differences of frost process on the roadway surface from that on the natural ground surface, the changes of permafrost table under the roadway embankment, and the peculiarities of roadway settlement. Analyses of the test results show : 1) The differences of the freezing indexes between the roadway surfaces and the natural ground surfaces are less than those of the thawing indexes for all the test sections; 2) Since the measures of permafrost protection were taken, the permafrost tables under the embankments have raised after the roadway was constructed. The minimum is about 0.4 m and the maximum is 1.2 m; 3) the settlements of the roadway are mainly from the compression and creep of the icerich frozen soils under the original permafrost tables and the maximum has reached 6 ~ 8 cm during the first year after the embankments were constructed. Moreover, concerning the processes of roadway settlement, the deformation of the embankments has no obvious trend of attenuation at present. Especially,for the roadway with high embankments, the settlement may reach a remarkable value and much consideration must be given for this problem.  相似文献   

4.
The effect of heterogeneity of soils on a seismic design procedure based on residual displacement according to safety factors is examined. Although soils are heterogeneous in nature, at present the seismic designs of embankments implement the assumption that soils are homogeneous. In this study, a seismic reliability analysis using a Monte Carlo simulation and considering the heterogeneity of soil strength was applied to the Newmark sliding block method. The data of the analysis in this study were based on in-situ soil test results of actual airport embankments. This paper indicates a rational and practical approach to modifying the actual heterogeneous soil conditions into homogeneous design parameters for the Newmark sliding block method in homogeneous ground conditions.  相似文献   

5.
青藏铁路多年冻土区路基变形裂缝发生机理及其防治   总被引:16,自引:0,他引:16  
青藏铁路多年冻土区路基工程的修建,改变了路基基底多年冻土的热量平衡状态.通过对青藏铁路多年冻土区试验工程和已经施工的路基工程所发生的变形裂缝的调查和分析,认为多年冻土区路基几何尺寸不对称和路基边坡坡向不同导致的路基人为上限形态不同,是造成多年冻土区路基温度场不对称以及基底土体冻结融化过程不同步的主要原因,也是造成路基变形裂缝的主要原因.文章在此基础上提出了减少或消除路基温度场不对称,从而减少或消除这类变形裂缝的主要工程结构形式和工程措施,作者的看法和结论已经在2003年青藏铁路冻土区路基工程设计和成形路基补强工程措施设计中得到广泛应用.  相似文献   

6.
通过对青藏铁路清水河试验段片石护坡、无片石护坡的冻土路堤和地基的温度进行的全面监测,对比分析了路堤体内及基底的地温、积温及温度场中最大融化深度的变化情况,结果表明,采用片石护坡措施的试验路堤,与对比段(普通路堤)相比,降温效果明显。负积温量值大于对比段,最大融化深度抬升幅度较大。因此,片石护坡能够有效发挥降低地温、保护多年冻土的作用,并有利于坡面防护,是一种施作方便,既能用于新建,又能用于补强的多年冻土主动保护措施。  相似文献   

7.
青藏铁路冻土与融区过渡段路基变形特性试验研究   总被引:1,自引:1,他引:0  
冻胀和融沉是影响寒区路基稳定性的两大问题.对于多年冻土到融区过渡段路基,除考虑冻胀和融沉外,还应考虑多年冻土区和融区路基沉降变形差和冻胀变形差问题.根据青藏铁路沱沱河试验段路基在竣工后3a内的现场试验数据,分析了有代表性路基的地温变化、路基基底变形以及整个试验段的冻胀、沉降变形差问题,计算出了多年冻土与融区过渡段路基的合理长度.结果表明:多年冻土与融区过渡地带沉降总变形量相差较大,但从年沉降速率来看,路基不会产生突降,且随着沉降速率逐渐减小,路基趋于稳定;试验段内冻胀量差异不大,不会影响线路平顺度.对于本试验段此类工程地质条件,可以采用允许多年冻土融化原则的工程措施.  相似文献   

8.
为了研究斜坡含软弱夹层地基路堤边坡的稳定性及破坏机制,采用离心模型试验和数值分析方法进行了研究。研究表明:斜坡均质地基路堤边坡仍是呈现整体圆弧滑动破坏;而对于含软弱夹层地基路基边坡来说,由于软弱夹层的影响其稳定性有了明显的降低,并有利于张拉裂缝的产生和发展,路堤边坡不再是整体圆弧滑动破坏,而是部分土体沿着软弱夹层发生滑动破坏。  相似文献   

9.
李国玉  李宁  全晓娟 《冰川冻土》2004,26(Z1):108-114
Finite Element Method has been used to operate the numerical analysis and comparison between the traditional ventilated embankment and the adjustable ventilated embankment adopted in Qinghai-Tibet Railway construction. The numerical results show that: 1) The adjustable ventilated embankments can prevent the thermal entry from air into ducts during summer from thawing the permafrost beneath the embankments; 2) The cooling effects of the adjustable ventilated embankments on permafrost is much better than the traditional ventilated embankments although two kinds of embankments can generate the thawing bulbs at the beginning of finishing construction; 3) The drop of the mean temperature of permafrost under the adjustable ventilated embankments keeps faster than that of the mean temperature of permafrost under the traditional ventilated embankments. It is clear that the adjustable ventilated embankments can keep the embankment more stable than the traditional ventilated embankments.  相似文献   

10.
Infrastructures such as roads and railways as well as urbanised areas, in mountainside regions, can frequently be endangered by rockfalls and, therefore, need to be protected against the impact of rolling blocks. Among the various protection works that can be used, ground reinforced embankments can be considered a feasible technique. A set of full-scale tests on embankments made of ground reinforced by geogrids are presented and discussed. The experiments were performed in a specifically designed and constructed test facility, where concrete blocks up to 9,000 kg in weight were thrown onto a geogrid reinforced embankment at a speed of about 30 m/s. Several embankments made of different geogrid types, different soils and construction layouts were tested at different impact energy levels, permitting a quantitative assessment of the resistance impact of these structures. The experimental results were compared with those obtained from a dynamic finite element method numerical model, and a good agreement was obtained.  相似文献   

11.
青藏铁路沿线融区的特征及其变化趋势   总被引:4,自引:4,他引:0  
基于青藏铁路多年冻土区工程长期监测系统所获取的地温与变形资料,对铁路沿线4处融区的特征及其变化趋势进行了分析。这4处融区分别为沱沱河北面洼地辐射-渗透融区(R1)、休冬曲北岸河流融区(R2)、扎加藏布河西岸河流融区(R3)与洼里希里唐盆辐射-渗透融区(R4)。结果表明:R1土体温度处于升温中,融区正在发展;R2土体温度较为稳定,位于融区边缘地带;R3土体升温趋势明显,融区处于快速发展之中;R4深部土体温度较为稳定,融区仍处于稳定状态。在R1、R3与R4,路基下未形成隔年冻土;但在R2融区,路基下有形成隔年冻土的可能。监测期内,路基累计沉降变形小于50 mm,满足铁路路基设计规范的要求。  相似文献   

12.
孙彦峰  骆瑞萍  陈保国 《探矿工程》2009,36(5):56-58,65
利用有限元数值模拟方法研究了桩承式加筋路堤的时效性变化规律。通过无桩无筋、无桩加筋、竖向桩体及水平加筋联合使用3种情况对比研究,分析了路堤填土荷载作用下软土地基中超静孔隙水压力随时间的变化规律,探讨了路堤水平位移、沉降和工后沉降、筋材最大拉力及桩体荷载分担比随固结时间的变化规律。研究结论可为软土地基上路堤的设计和施工提供重要的参考。  相似文献   

13.
青藏高原多年冻土区碎石护坡降温作用及效果分析   总被引:6,自引:3,他引:3  
孙志忠  马巍  李东庆 《冰川冻土》2007,29(2):292-298
基于青藏高原北麓河多年冻土区碎石护坡路基与普通路基温度监测资料分析,结果表明:碎石层的铺设具有减小坡面年平均温度及坡面温度年较差的作用;与普通路基相比,碎石护坡在暖季主要起到隔热作用,但在冷季主要存在不利于路基散热的弊病.从路基人为冻土上限抬升状况、温度降低程度和路基变形量的差异来看,碎石护坡路基较普通路基有利于冻土路基的热稳定性.但碎石护坡调节路基内部温度场是一个长期过程,即坡面温度对多年冻土温度的影响具有滞后性,若作为青藏铁路多年冻土区补强措施使用时应慎重.  相似文献   

14.
青藏铁路块石路基冷却降温效果对比分析   总被引:2,自引:0,他引:2  
穆彦虎  马巍  孙志忠  刘永智 《岩土力学》2010,31(Z1):284-292
基于现场地温监测数据,对青藏铁路两种主要块石路基(块石护坡及U型块石路基)在不同年平均地温分区的冷却降温效果进行对比分析,发现不论是在低温基本稳定区(年平均温度-2.0 ℃≤TCP<-1.0 ℃)还是高温极不稳定区(TCP>-0.5 ℃),两种块石路基的应用都能够有效地提升路基下部多年冻土上限。但两种不同块石结构路基表现出不同的冷却降温效果,其中U型块石路基冷却降温效果较好,在路基下多年冻土上限提升及下伏浅层多年冻土降温的同时,深层多年冻土温度保持稳定;而块石护坡路基下人为多年冻土上限的提升及浅层多年冻土温度的降低一定程度上消耗了下伏深层多年冻土的冷量,从而导致其温度有所升高。同时,在不同的年平均地温分区块石路基表现出不同的冷却降温效果:年平均地温较低断面,块石路基冷却降温效果显著。在年平均地温较高的断面,尤其是高温极不稳定多年冻土区,块石护坡路基下伏深层多年冻土温度升高明显,路基长期稳定性难以得到保证。  相似文献   

15.
Permafrost along the Qinghai-Tibet railway is featured by abundant ground ice and high ground temperature. Under the influence of climate warming and engineering activities, the permafrost is under degradation process. The main difficulty in railway roadbed construction is how to prevent thawing settlement caused by degradation of permafrost. Therefore the proactively cooling methods based on controlling solar radiation, heat conductivity and heat convection were adopted instead of the traditional passive methods, which is simply increasing thermal resistance. The cooling methods used in the Qinghai-Tibet railway construction include sunshine-shielding roadbeds, crushed rock based roadbeds, roadbeds with rock revetments, duct-ventilated roadbeds, thermosyphon installed roadbeds and land bridges. The field monitored data show that the cooling methods are effective in protecting the underlying permafrost, the permafrost table was uplifted under the embankments and therefore the roadbed stability was guaranteed.  相似文献   

16.
青藏高原冻土区路面类型对路基温度场影响的非线性分析   总被引:4,自引:1,他引:3  
采用焓模型, 建立含相变的冻土路基温度场, 综合考虑气温、太阳辐射、风速风向、坡面蒸发等气象因素, 将诸多气象因素归结为第二、三类边界条件的叠加组合, 对不同气温地区的沥青路面及水泥路面路基温度场进行了有限元计算. 结果表明: 路面类型对冻土路基温度场有着重要影响, 水泥路面的采用可有效地降低路面温度, 延缓冻土上限下降速率, 从而可以有效保护基底多年冻土; 从对基底冻土上限影响的角度来看, 路面类型、外部气温与路基高度三者间存在一定的动态等效关系.  相似文献   

17.
Zhou  Haizuo  Zheng  Gang  Liu  Jifu  Yu  Xiaoxuan  Yang  Xinyu  Zhang  Tianqi 《Acta Geotechnica》2019,14(5):1571-1584

Rigid columns penetrating a firm underlying stratum have often been used to enhance the stability and improve the settlement of embankments over soft ground. Furthermore, an inclined underlying stratum is commonly encountered in engineering practice. This investigation experimentally and numerically studies the performance of embankments over soft ground reinforced by rigid columns with various embedment depths. In centrifuge tests, a tilting failure occurs for columns with an embedment depth Le of 2D (D is the diameter of columns), whereas the embankments remain stable for Le of 7D. This result indicates that the inclined underlying stratum weakens the restraint effect at the column base and that a greater embedment depth is required to ensure the stability of embankments. Parametric studies numerically reveal that there exists a critical embedment depth, which represents a shift in the failure mechanism. The optimum column layout is determined based on the contributions of columns in different locations beneath an embankment. Finally, the influence of the embedment depth on the distribution of the bending moment of the columns and the soil reaction are discussed.

  相似文献   

18.
软土地基上填筑高路堤常常面临地基承载力不足、沉降和不均匀沉降过大等问题。桩承式加筋路堤能够有效地解决这些难题。通过理论分析和有限元数值模拟,研究了路堤填土-加筋材料-桩体-桩间土之间的相互作用机理,讨论了路堤填土中的土拱效率、桩体效率、路堤底面差异沉降和筋材拉力的变化规律。研究结果表明,填土中的土拱效应和筋材张力膜效应能够有效地提高桩体效率,防止软土屈服;筋材内部拉力呈非线性分布,桩顶边缘处筋材拉力最大。  相似文献   

19.
Predictive displacement-based methods provide a useful index of the seismic performance of earth dams and embankments and can be used in preliminary assessments of these structures. In practice, simplified Newmark-type sliding block methods are commonly used for this purpose. Using a database of 122 previously published case histories of permanent deformations of earth dams and embankments, the performance of six simplified sliding block models was examined. The results show that all six simplified methods underpredict seismic displacement for many of the embankment and earth dam cases that were examined, sometimes by a significant amount. An empirical correlation was developed by performing linear multiple regression analysis utilizing multiple slope and ground motion input parameters. This approach is believed to more properly reflect strong ground motion characteristics than the use of a single ground motion parameter such as the peak ground acceleration, the approach that has been previously employed in other correlations of this type. After exploring numerous functional forms, the final resulting seismic displacement correlation that was proposed was determined to be a function of the critical acceleration, the critical acceleration ratio, the slope height, the peak ground acceleration, the peak ground velocity, the spectral acceleration, and the predominant period of earthquake shaking. The proposed empirical equation yields better correlation with the case history database than does other existing empirical correlations or simplified sliding block models.  相似文献   

20.
冻土区路基的安全可靠性取决于路基地温场特征和路基面抗自然侵蚀特征。在路基基床上部修筑遮阳棚和在边坡上修筑遮阳板既可阻挡太阳对路基面和路基边坡的直接辐射,改变路基地温场形态,降低土层温度,又可防止降水渗入路基或降雪覆盖路面。这对防止冻土退化,提高冻土区铁路路基安全可靠性是一种非常有效而又简单易行的工程措施。本文以青藏铁路冻土区遮挡式路基结构路基表面温度数据和该地段气象资料为基础,运用带有相变的一维热传导方程模拟分析了青藏铁路长期运营过程中遮挡式路基结构对冻土区路基人为上限的抬升效果及对路基稳定性的影响,认为遮挡式路基结构是一种安全可靠的冻土区路基工程结构形式,同时也是未来铁路运营过程整治路基病害的一种有效工程措施。  相似文献   

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