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Prediction of resilient modulus for subgrade soils based on ANN approach 被引量:12
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作者 ZHANG Jun-hui HU Jian-kun +2 位作者 PENG Jun-hui FAN Hai-shan ZHOU Chao 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第3期898-910,共13页
The resilient modulus(MR)of subgrade soils is usually used to characterize the stiffness of subgrade and is a crucial parameter in pavement design.In order to determine the resilient modulus of compacted subgrade soil... The resilient modulus(MR)of subgrade soils is usually used to characterize the stiffness of subgrade and is a crucial parameter in pavement design.In order to determine the resilient modulus of compacted subgrade soils quickly and accurately,an optimized artificial neural network(ANN)approach based on the multi-population genetic algorithm(MPGA)was proposed in this study.The MPGA overcomes the problems of the traditional ANN such as low efficiency,local optimum and over-fitting.The developed optimized ANN method consists of ten input variables,twenty-one hidden neurons,and one output variable.The physical properties(liquid limit,plastic limit,plasticity index,0.075 mm passing percentage,maximum dry density,optimum moisture content),state variables(degree of compaction,moisture content)and stress variables(confining pressure,deviatoric stress)of subgrade soils were selected as input variables.The MR was directly used as the output variable.Then,adopting a large amount of experimental data from existing literature,the developed optimized ANN method was compared with the existing representative estimation methods.The results show that the developed optimized ANN method has the advantages of fast speed,strong generalization ability and good accuracy in MR estimation. 展开更多
关键词 resilient modulus subgrade soils artificial neural network multi-population genetic algorithm prediction method
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Evaluating the Subgrade Reaction Modulus Variations with Soil Grains Shape in Coarse-Grained Soils Using Genetic Algorithm
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作者 Pouya Salari Naser Hafezi Moghaddas +1 位作者 Gholam Reza Lashkaripour Mohammad Ghafoori 《Open Journal of Geology》 2020年第2期111-123,共13页
Subgrade reaction modulus (Ks) is one of the main factors in evaluating engineering properties of soils for structural calculations and operations. So, many studies have been performed on the effect of other soil geot... Subgrade reaction modulus (Ks) is one of the main factors in evaluating engineering properties of soils for structural calculations and operations. So, many studies have been performed on the effect of other soil geotechnical parameters on it. One is the effect of soil grains shape on engineering properties of soils, especially Ks. The aim of the present research is to evaluate the effect of soil grains shape on Ks for coarse-grained soils of the west of Mashhad, Iran. For this purpose, 20 PLTs were performed on coarse-grained soils of the west of Mashhad and Ks amounts were determined. Then, flakiness and elongation of the samples measured and changes of Ks by soil grain shape were evaluated. The results showed the strength dependency of Ks to grain forms which an increase in flakiness and elongation indices leads to a decrease in Ks. Therefore, it is necessary to reduce Ks estimated form empirical relationships for flaky and elongated soils. So, by writing a genetic algorithm-based program to find the optimal relationship between the grain shape and the subgrade reaction coefficient, a valid equation for correcting the results from previous empirical equations was presented. 展开更多
关键词 subgrade Reaction modulus (Ks) Flakiness TEST ELONGATION TEST Plate Load TEST (PLT) Genetic Algorithm
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Analysis of ground vibrations induced by high-speed train moving on pile-supported subgrade using three-dimensional FEM 被引量:9
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作者 GAO Guang-yun BI Jun-wei +1 位作者 CHEN Qing-sheng CHEN Run-min 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第8期2455-2464,共10页
The pile-supported subgrade has been widely used in high-speed railway construction in China.To investigate the ground vibrations of such composite foundation subjected to moving loads induced by high-speed trains(HST... The pile-supported subgrade has been widely used in high-speed railway construction in China.To investigate the ground vibrations of such composite foundation subjected to moving loads induced by high-speed trains(HSTs),three-dimensional(3D)finite element method(FEM)models involving the pile,pile cap and cushion are established.Validation of the proposed model is conducted through comparison of model predictions with the field measurements.On this basis,ground vibrations generated by HSTs under different train speeds as well as the ground vibration attenuation with the distance away from the track centerline are investigated.In addition,the effects of piles and pile elastic modulus on ground vibrations are well studied.Results show that the pile-reinforcement of the subgrade could significantly contribute to the reduction of ground vibrations.In particular,the increase of elastic modulus of pile could lead to consistent reduction of ground vibrations.However,when the pile elastic modulus is beyond 10 GPa,this benefit of pile-reinforcement on vibration isolation can hardly be increased further. 展开更多
关键词 high-speed railway ground vibrations 3D FEM pile-supported subgrade pile elastic modulus
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Effect of granite gravel content on improved granular mixtures as railway subgrade fillings 被引量:2
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作者 陈晓斌 李志勇 张家生 《Journal of Central South University》 SCIE EI CAS 2014年第8期3361-3369,共9页
The improved granular mixtures are widely used as the fillings of railway 8ubgrade, and in order to investigate the effect of coarse grain content on granular mixtures, a series of field tests were conducted. The expe... The improved granular mixtures are widely used as the fillings of railway 8ubgrade, and in order to investigate the effect of coarse grain content on granular mixtures, a series of field tests were conducted. The experimental results indicate that the permeability coefficient increases significantly with the increment of granite gravel content, especially in the range of 60%-70%. Thcrc exists a coarse grain content limit defined as 53%-58.5% to reform the permeable granular skeleton. Beyond this limit, the permeable granular skeleton is efficiently formed, and the macro pores between the separate gravels are partially filled, which is the explanation lbr the permeability increase. The investigations indicate the subgrade resistance modulus (ks0, Ev2, and Evd) depends on the granite gravel content, and the resistance modulus increases significantly beyond granite gravel content of 50%. The skeletons of granitc gravel clayey sand mixture change in the long-term deformation objected to the train-induced dynamic load, which involves three main repeated and circular deformation stages. Generally, the long-time deformation is explained as the gravel crushing and filling the internal porous space with crushed gravel fragments. Through these investigations, the C40-G60 or C30-G70 is recommended as an optimum soil mixture for the good permeability and high resistance modulus. 展开更多
关键词 granular mixture coarse grain content permeability coefficient railway subgrade fillings subgrade resistance modulus
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Resilient modulus prediction of soft low-plasticity Piedmont residual soil using dynamic cone penetrometer 被引量:1
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作者 S.Hamed Mousavi Mohammed A.Gabr Roy H.Borden 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2018年第2期323-332,共10页
Dynamic cone penetrometer(DCP) has been used for decades to estimate the shear strength and stiffness properties of the subgrade soils. There are several empirical correlations in the literature to predict the resil... Dynamic cone penetrometer(DCP) has been used for decades to estimate the shear strength and stiffness properties of the subgrade soils. There are several empirical correlations in the literature to predict the resilient modulus values at only a specific stress state from DCP data, corresponding to the predefined thicknesses of pavement layers(a 50 mm asphalt wearing course, a 100 mm asphalt binder course and a200 mm aggregate base course). In this study, field-measured DCP data were utilized to estimate the resilient modulus of low-plasticity subgrade Piedmont residual soil. Piedmont residual soils are in-place weathered soils from igneous and metamorphic rocks, as opposed to transported or compacted soils.Hence the existing empirical correlations might not be applicable for these soils. An experimental program was conducted incorporating field DCP and laboratory resilient modulus tests on "undisturbed" soil specimens. The DCP tests were carried out at various locations in four test sections to evaluate subgrade stiffness variation laterally and with depth. Laboratory resilient modulus test results were analyzed in the context of the mechanistic-empirical pavement design guide(MEPDG) recommended universal constitutive model. A new approach for predicting the resilient modulus from DCP by estimating MEPDG constitutive model coefficients(k;,k;and k;) was developed through statistical analyses. The new model is capable of not only taking into account the in situ soil condition on the basis of field measurements,but also representing the resilient modulus at any stress state which addresses a limitation with existing empirical DCP models and its applicability for a specific case. Validation of the model is demonstrated by using data that were not used for model development, as well as data reported in the literature. 展开更多
关键词 Dynamic cone penetrometer(DCP) Resilient modulus Mechanistic-empirical pavement design guide(MEPDG) Residual soils subgrade soils
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A geomechanics classification for the rating of railroad subgrade performance 被引量:1
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作者 Antonio Gomes Correia Ana Ramos 《Railway Engineering Science》 2022年第3期323-359,共37页
The type of subgrade of a railroad foundation is vital to the overall performance of the track structure.With the train speed and tonnage increase,as well as environmental changes,the evaluation and influence of subgr... The type of subgrade of a railroad foundation is vital to the overall performance of the track structure.With the train speed and tonnage increase,as well as environmental changes,the evaluation and influence of subgrade are even more paramount in the railroad track structure performance.A geomechanics classification for subgrade is proposed coupling the stiffness(resilient modulus)and permanent deformation behaviour evaluated by means of repeated triaxial loading tests.This classification covers from fine-to coarse-grained soils,grouped by UIC and ASTM.For this achievement,we first summarize the main models for estimating resilient modulus and permanent deformation,including the evaluation of their robustness and their sensitivity to mechanical and environmental parameters.This is followed by the procedure required to arrive at the geomechanical classification and rating,as well as a discussion of the influence of environmental factors.This work is the first attempt to obtain a new geomechanical classification that can be a useful tool in the evaluation and modelling of the foundation of railway structures. 展开更多
关键词 subgrade Resilient modulus Permanent deformation Geomechanical classification
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Soil Subgrade’s Characterization and Classification of Thies (Senegal, West Africa) on a Radius of 2.5 Kilometers along Five Roads 被引量:1
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作者 E.H.B.M. Niakhate Séni Tamba +2 位作者 Makhaly Ba Adama Dione Issa Ndoye 《Geomaterials》 2016年第1期1-17,共17页
This article explains the results of a study conducted on the characterizations of subgrade soils in the region of Thies. The road platforms are mainly composed of a background soil, which is generally overlapped by a... This article explains the results of a study conducted on the characterizations of subgrade soils in the region of Thies. The road platforms are mainly composed of a background soil, which is generally overlapped by a surface layer that plays two roles. Firstly, it protects the soil structure, ensures the leveling, and facilitates the movement of vehicles. Secondly, it brings harmony in the mechanistic characteristics of the materials that compose the soil while improving the long-term life force. The methodology consisted in taking samples of subgrade soil along the roads all over the region of Thies in a 5 km diameter span. The identification tests allowed the Thies-Tivaoune, Thies-Khombole and Thies-Noto axes are characterized by tight sands, poorly graded size. While Thies Pout-axis is characteristic of severe solid particle size and spread well graded and serious to spread and well graded particle size. Finally the Thies-Montrolland axis is characterized by severe to very tight particle size and graduated to spread and serious and well graded particle size. The specific gravity values found Proctor test shows the presence of sand, sandy laterite and laterite. In the target area, polished soils of the A-3 type according to the AASHTO classification system are the most represented with 60%, followed by the A-2-6 type 25%, and the A-2-4 type with 9%, which are typical of gravel, clay, and silty sands. Soils of the A-1-b type (2%) typical of roc fragments, sands and clay are also represented. Polished sands of the A-3 type have a better efficiency on road infrastructures than other types of soil listed above. Finally, we’ve also noted the presence of soils of the A-2-7 and A-4 types with the low percentage of 2%. Subgrade soils of class S4 are the most represented with 58%, followed by those of class S5 with 42%. Samples of the Thies-Montrolland road have a claylike plasticity (CL or CH group), while those of the Thies-Pout road belong to the ML or OL and CL or OL groups with a tendency mostly directed to the CL or OL group. All these results confirm the very nature of soils on the two roads and put the light on the presence of lateritic materials with certain plasticity. 展开更多
关键词 subgrade Soil Mechanistic Pavement Design Arc GIS AASHTO CBR Resilient modulus
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Bending the Foundation Beam on Elastic Base by Two Reaction Coefficient of Winkler’s Subgrade
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作者 Mirko Balabusic Boris Folic Slobodan Coric 《Open Journal of Civil Engineering》 2019年第2期123-134,共12页
A new method for analysis of counter beams is presented in the paper. The analysis has taken into account their stiffness EI, Winkler’s space with modulus of subgrade reaction k and equality deformities of the founda... A new method for analysis of counter beams is presented in the paper. The analysis has taken into account their stiffness EI, Winkler’s space with modulus of subgrade reaction k and equality deformities of the foundation beam with the ground. The solution is found by using the numerical analysis of the Winkler’s model, with variation of different moduli of the subgrade reaction k2 outside the force zone r, while under the force P exists the modulus of the subgrade reaction k, up to the definition of minimum bending moments. The exponential function k2(r), as the geometric position of the minimum moments is approximately assumed. From the potential energy conditions of the reciprocity of displacement and reaction, the width of the zone r and the modulus of the subgrade reaction k2 are explicitly determined, introducing in the calculation initial and calculation soil displacement wsi successively. At the end of the paper, it presented numerical example in which the influence of k and k2 values on bending moments of the counter beam is analyzed. The essential idea of this paper is to decrease the quantity of the reinforcement in the foundations, beams, i.e. to obtain a cost-efficient foundation construction. 展开更多
关键词 Foundation Beam Winkler’s Model Coefficient of subgrade Reaction modulus k and k2 Zone r under the Force P Soil Displacement wsi
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基于FWD三参数的路基模量预测方法 被引量:1
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作者 张磊 张定一 +2 位作者 肖倩 王龙 姚鹏飞 《哈尔滨工业大学学报》 北大核心 2025年第3期25-33,共9页
为了建立能够客观准确评价既有路基承载能力状况的测算方法,改善路面模量反算软件因初值选取不唯一而导致的误差问题,建立了路面弹性层状体系有限元动力模型,基于相关性分析筛选优化了弯沉盆参数,提出了基于BDI-F 2-d 9的三参数路基模... 为了建立能够客观准确评价既有路基承载能力状况的测算方法,改善路面模量反算软件因初值选取不唯一而导致的误差问题,建立了路面弹性层状体系有限元动力模型,基于相关性分析筛选优化了弯沉盆参数,提出了基于BDI-F 2-d 9的三参数路基模量预测模型;在此基础上形成多层路面模量反算新方法,并利用北京RIOHTrack环道的4种不同典型路面结构的实测数据对该模型的有效性和准确性进行验证。结果表明:应用所提出的FWD三参数预测模型计算得到的路基模量较常规反算方法更为准确,且与承载板实测值之间存在较好的线性关系(R^(2)=0.9106),两者比值介于0.19~0.28之间,符合已有文献研究结论。以此路基模量预测值作为输入参数并利用沥青路面动力有限元模型能更加准确地模拟FWD测试动态过程,从而提高了路面各层模量的反算精度。研究成果为模量反算软件初值选取提供了参考,并为利用弯沉盆参数(DBP指标)构建适用于实际工程的路基、路面模量反算方法提供了理论依据。 展开更多
关键词 道路工程 FWD模型 非线性特性 路基模量反算
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冻融循环下纤维水泥改良风积沙动力特性研究 被引量:1
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作者 阮波 沈一凡 +3 位作者 张向京 路占海 张佳森 聂如松 《铁道科学与工程学报》 北大核心 2025年第4期1614-1621,共8页
以新疆和若(和田—若羌)铁路为背景,采用水泥、玄武岩纤维及工地现场的风积沙作为原材料,制作纤维水泥改良风积沙试样,研究冻融循环作用和纤维掺量对纤维水泥改良风积沙动力特性的影响。试样的水泥掺量为5%,纤维掺量为0.8%。采用锤击法... 以新疆和若(和田—若羌)铁路为背景,采用水泥、玄武岩纤维及工地现场的风积沙作为原材料,制作纤维水泥改良风积沙试样,研究冻融循环作用和纤维掺量对纤维水泥改良风积沙动力特性的影响。试样的水泥掺量为5%,纤维掺量为0.8%。采用锤击法制作直径为39.1 mm、高度为80 mm的圆柱体试样,标准养护28 d后进行冻融循环试验与三轴循环加载试验。冻融循环试验的冻结与融化温度分别为-20℃和20℃,采用三向冻结的冻结路径和无外界补给水的冻结方式。三轴循环加载试验采用正弦波加载,加载频率1 Hz,循环加载次数5000次。试验结果表明,纤维水泥改良风积沙骨干曲线符合修正Hardin-Drnevich模型。随着冻融循环次数增加,纤维水泥改良风积沙试样的动弹性模量呈指数函数减小,而阻尼比呈指数函数增大,试样达到指定动应变时对应的动应力减小。与未掺纤维试样相比,冻融循环1、3、6、10、15次时,掺入纤维试样的动弹性模量提高了6.74%、5.52%、4.18%、8.91%、9.65%,阻尼比减少了13.9%、8.9%、19.7%、15.9%、22.8%,且掺入纤维试样动应变达到0.08%时对应的动应力增大了18.08%、9.90%、9.75%、22.57%、24.74%。研究成果可以为采用改良风积沙作为路基填料的工程提供参考。 展开更多
关键词 铁路路基基床 动三轴试验 冻融循环试验 风积沙 玄武岩纤维 骨干曲线 动弹性模量 阻尼比
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预崩解炭质泥岩路堤填料动力特性试验
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作者 何忠明 向达 +1 位作者 刘正夫 谢唐新 《中国公路学报》 北大核心 2025年第2期123-136,共14页
路堤填料的动力特性对道路耐久性设计至关重要,目前预崩解炭质泥岩路堤填料动力特性研究尚不完善,为此开展动三轴试验研究预崩解炭质泥岩路堤填料的动力特性及累积塑性应变变化规律,分析不同围压σ_(3)、含水率w、静偏应力σ_(s)、压实... 路堤填料的动力特性对道路耐久性设计至关重要,目前预崩解炭质泥岩路堤填料动力特性研究尚不完善,为此开展动三轴试验研究预崩解炭质泥岩路堤填料的动力特性及累积塑性应变变化规律,分析不同围压σ_(3)、含水率w、静偏应力σ_(s)、压实度K和分形维数D对预崩解炭质泥岩路堤填料的骨干曲线、动模量Ed、阻尼比λ、累积塑性应变ε_(p)和临界动应力σ_(cri)的影响。建立了预崩解炭质泥岩路堤填料累积塑性应变经验模型,并对该模型的合理性进行验证。研究结果表明:试样骨干曲线呈明显非线性,顶点处动应力σ_(d)随D的增加先增大后减小,当D=2.53时,对应的最大动应力为111.9 kPa,顶点处动应变ε_(d)则随D的增加单调递增;试样动模量E_(d)随着动应变的增加而逐渐降低并趋于稳定,阻尼比λ随着动应变的增加而增加,试样破坏时的动应变越小,对应的阻尼比越大,动模量E_(d)与阻尼比λ在不同σ_(3)、w、σ_(s)、K和D下呈现不同的发展规律;试样累积塑性应变εp与σ_(3)、K成反比,与w、σ_(s)成正比;临界动应力σ_(cri)与σ_(3)之间呈现较好的线性正相关,与K和D之间为非线性正相关,与w和σ_(s)之间均呈现非线性负相关。所建立的预崩解炭质泥岩路堤填料累积塑性应变经验模型计算数据与试验实测数据的相对标准偏差RSD在0.03~0.21之间,可较好预测预崩解炭质泥岩路堤填料累积塑性应变。研究成果可为预崩解炭质泥岩路堤动力特性分析提供参考。 展开更多
关键词 路基工程 动力特性 三轴试验 炭质泥岩填料 动模量 阻尼比 累积塑性应变
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埋地管道弹性稳定性计算相关问题的讨论
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作者 周晨 《特种结构》 2025年第3期62-65,82,共5页
本文回顾了埋地管道弹性屈曲临界压力公式的建立过程,梳理了公式的基本设定及通过土环模型建立基床系数与土变形模量联系的过程,结合有限元模拟和计算比较,讨论了埋地管道稳定计算时,采用土工试验确定管侧土综合变形模量的可能性。
关键词 埋地管道 弹性稳定 弹性屈曲理论 基床系数 综合变形模量
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分级变围压条件下粉土路基填料回弹模量试验研究 被引量:2
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作者 陈有为 冷伍明 +4 位作者 徐方 张期树 董俊利 聂如松 杨奇 《铁道科学与工程学报》 北大核心 2025年第2期625-635,共11页
新型预应力路基通过施加水平预应力,改善路基土的围压状态,可达到路基加固或路基病害整治的目的。为探究水平预应力对粉土路基填料回弹特性的影响,开展同一试样分级变围压的系列循环动三轴试验,研究该条件下粉土填料回弹模量的变化规律... 新型预应力路基通过施加水平预应力,改善路基土的围压状态,可达到路基加固或路基病害整治的目的。为探究水平预应力对粉土路基填料回弹特性的影响,开展同一试样分级变围压的系列循环动三轴试验,研究该条件下粉土填料回弹模量的变化规律,并提出了相应的回弹模量经验预测模型。试验结果表明:分级增大围压不仅可提高粉土填料的回弹模量,还可改善试样的应力状态,使原本常围压下呈塑性破坏的试样最终转变为弹性稳定状态。每次分级增长围压均会引起试样回弹模量的瞬时骤增,而后其值随动荷载作用振次逐步趋于稳定。分级变围压的振次间隔会影响试样回弹模量的稳定值,且振次间隔越小,试样回弹模量的稳定值越高。就稳定型试样而言,低动应力水平下增大围压引起的试样回弹模量增幅大于高动应力水平的试验工况。分级增大围压对试样回弹模量的增益效应并不能补偿含水率增加带来的负面影响。基于试验结果,改进现有回弹模量预测模型,提出了综合考虑路基土动应力状态和应力历史的回弹模量预测模型,并对分级变围压加载下稳定试样的回弹模量进行预测,取得了良好的预测效果。研究结果可为进一步揭示水平预应力加固路基的效果和机制提供参考,同时对预应力路基的设计具有重要指导意义。 展开更多
关键词 粉土路基填料 回弹模量 分阶段变围压 动三轴试验 影响因素
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考虑额外等效应力的土工格栅加筋高液限黏土变形特性试验及预估研究
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作者 顾凡 李海 +2 位作者 蒋晨煜 罗蓉 张军辉 《中国公路学报》 北大核心 2025年第10期158-172,共15页
中国南方大部分地区气候湿热,高液限黏土作为路基填料具有较低的承载力和抗剪强度,在施工过程中往往需要进行加固补强,其中土工格栅加筋技术是一种常见的路基物理加固方法。为准确表征土工格栅加筋高液限黏土的回弹变形与永久变形特性,... 中国南方大部分地区气候湿热,高液限黏土作为路基填料具有较低的承载力和抗剪强度,在施工过程中往往需要进行加固补强,其中土工格栅加筋技术是一种常见的路基物理加固方法。为准确表征土工格栅加筋高液限黏土的回弹变形与永久变形特性,建立了一个考虑筋土相对位移、土工格栅侧向约束以及压实过程影响的土工格栅加筋高液限黏土回弹模量与永久变形预估模型,量化了土工格栅横向约束对土体回弹模量与永久变形的影响;开展了不同类型格栅、加筋方式、围压水平和偏应力水平等条件下土工格栅加筋路基土回弹模量和永久变形试验研究,分析了各影响因素对加筋路基土变形特性的影响。试验结果表明:土工格栅加筋增加了土体的黏聚力和内摩擦角,其中双层加筋效果优于单层加筋,双向格栅加筋效果优于三向格栅,且格栅加筋效果与其张拉强度正相关;土工格栅加筋提升了土体的回弹模量,其回弹模量提升率随着偏应力水平的增加而降低;土工格栅加筋降低了土体在循环荷载作用下的永久变形,其永久变形降低率随着偏应力增加而增加,随着围压增加而降低。通过试验验证了新建立的基于额外等效应力的土工格栅加筋路基土回弹模量与永久变形模型预估精度,新模型能准确预测不同类型格栅和加筋方式条件下路基土在不同应力水平和荷载作用次数时的回弹模量和永久变形,可为土工格栅加筋路基设计和工程实践提供有益参考。 展开更多
关键词 路基工程 土工格栅 动三轴试验 回弹模量 永久变形 额外等效应力
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考虑路面自重与循环荷载影响的路基结构模量特性研究
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作者 刘超超 鲁文龙 +2 位作者 郑健龙 吕松涛 张良奇 《中国公路学报》 北大核心 2025年第5期11-25,共15页
现行路基回弹模量测试方法未考虑上覆路面结构约束效应与真实车辆荷载特性的影响,导致测试的回弹模量难以反映路基实际承载能力,给公路建设带来众多不确定性。为此,提出了一种路基动静回弹模量原位测试方法,在以套环模拟路面结构层自重... 现行路基回弹模量测试方法未考虑上覆路面结构约束效应与真实车辆荷载特性的影响,导致测试的回弹模量难以反映路基实际承载能力,给公路建设带来众多不确定性。为此,提出了一种路基动静回弹模量原位测试方法,在以套环模拟路面结构层自重及约束效应的基础上,研究车辆荷载特性(荷载频率、荷载幅值)对路基结构模量的影响,并通过开展不同尺寸承载板与不同宽度套环下的路基动静回弹模量试验研究,寻找最佳承载板与套环加载组合,以优化动静回弹模量原位测试方法结构体系,为测试新建或改扩建路基在其实际服役期的刚度水平提供重要手段。试验结果表明:路基回弹模量与动载频率、动载幅值均成正相关,与承载板尺寸成负相关,对于Φ30 cm承载板在未装配套环时,动载频率从1 Hz增加到10 Hz,回弹模量测试值增加了119%;动载幅值从0.1 MPa增加到0.35 MPa,回弹模量测试值增加了38.7%。此外,相同尺寸承载板下,路基回弹模量测试值随着套环所模拟的上覆路面结构约束范围的增大先增大后趋于稳定,对于30 cm承载板,在套环宽度达到20 cm时趋于稳定,较未装配套环时模量提高了13%;对于20 cm承载板,在套环宽度达到30 cm时趋于稳定,较未装配套环时模量提高了35%;对于10 cm承载板,在套环宽度达到35 cm时趋于稳定,较未装配套环时模量提高了31%。同时,基于原位试验结果建立了不同尺寸承载板下路基回弹模量转换模型、相同承载板不同宽度套环测试下回弹模量转换模型及不同荷载频率测试下回弹模量转换模型,以实现各尺寸承载板与各宽度套环组合在不同频率动载下测试结果之间的相互转换,并通过实际工程现场试验验证了转换模型的准确性。 展开更多
关键词 路基工程 路基动回弹模量 足尺试验 路面自重 循环荷载
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路面结构层对高速公路加宽路基沉降的影响研究 被引量:2
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作者 李钰馨 王鹏飞 马志宏 《山西建筑》 2025年第2期146-148,共3页
为了预防和控制高速公路加宽工程路基出现差异沉降,保障工程质量,利用有限元法,系统分析了路面面层模量与厚度、基层模量与厚度、土基模量等对高速公路加宽路基沉降变形的影响规律。结果表明:路面结构层参数对于高速公路加宽路基的受力... 为了预防和控制高速公路加宽工程路基出现差异沉降,保障工程质量,利用有限元法,系统分析了路面面层模量与厚度、基层模量与厚度、土基模量等对高速公路加宽路基沉降变形的影响规律。结果表明:路面结构层参数对于高速公路加宽路基的受力与变形特性具有显著的影响,高速公路加宽路基的沉降量随着路面结构层厚度和刚度的增大而显著减小,提升路面结构层的厚度和刚度可以有效预防高速公路加宽工程出现差异沉降。 展开更多
关键词 高速公路加宽工程 路基变形 差异沉降 路面结构 基层模量
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火山渣填料在国道331线路基工程中的应用研究
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作者 王金财 张登峰 +1 位作者 刘建坤 褚晓强 《建材世界》 2025年第2期16-19,28,共5页
以阿巴嘎旗地区的火山渣为研究对象,通过室内试验与试验路工程相结合的方法,分析了其颗粒级配、液塑性、击实特性及承载力等性能,提出了火山渣路基填筑的优化施工方案。结果表明,火山渣作为路基填料具有孔隙率大、干密度小的特点,表现... 以阿巴嘎旗地区的火山渣为研究对象,通过室内试验与试验路工程相结合的方法,分析了其颗粒级配、液塑性、击实特性及承载力等性能,提出了火山渣路基填筑的优化施工方案。结果表明,火山渣作为路基填料具有孔隙率大、干密度小的特点,表现出优异的排水性和轻质特性,可有效减少路基沉降。火山渣的加州承载比(California Bearing Ratio,CBR)值显著高于公路路基施工技术规范中路床土最小强度要求,具备较高的承载力。施工过程中,通过合理配置压实机械提高了火山渣破碎效率,优化了颗粒级配,并采用边坡黏土包边封闭措施,显著提升了路基整体稳定性。工程应用表明,火山渣填料符合技术要求,且锡盟地区丰富的火山渣资源为公路工程提供了可持续的本地化材料支持,具有显著的经济与社会效益。 展开更多
关键词 火山渣 路基填料 加州承载比 回弹模量
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基于ANN的路基土回弹模量湿度调整系数和干湿循环折减系数预测
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作者 王绪丰 付伟 +3 位作者 彭俊辉 胡健坤 张军辉 李之光 《中外公路》 2025年第3期9-17,共9页
既有路基土回弹模量湿度调整系数和干湿循环折减系数的确定方法多基于耗费大量的人力和时间的室内试验,且受限于规范取值范围,预测精度不足。为实现快速准确预测这两个系数,该文通过室内动三轴试验探究应力状态、含水率、干湿循环次数... 既有路基土回弹模量湿度调整系数和干湿循环折减系数的确定方法多基于耗费大量的人力和时间的室内试验,且受限于规范取值范围,预测精度不足。为实现快速准确预测这两个系数,该文通过室内动三轴试验探究应力状态、含水率、干湿循环次数对路基土回弹模量的影响规律,结合已有文献选取路基土物性参数、状态参数和应力参数,建立了遗传算法优化的人工神经网络预测模型,实现了路基土湿度调整系数和干湿循环折减系数快速预测。研究表明:含水率和干湿循环对路基土回弹模量影响较大,而湿度调整系数和干湿循环折减系数则表现出应力依赖性。该智能预测模型对湿度调整系数和干湿循环折减系数的预估精度较高。 展开更多
关键词 路基工程 回弹模量 湿度调整系数 干湿循环折减系数 人工神经网络 智能预测 遗传算法优化
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平衡湿度下基于弯沉等效的路基路面 动态回弹模量研究
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作者 宋帅 张羽 +3 位作者 王贺 杨广庆 尹宝银 王岩 《甘肃科学学报》 2025年第2期28-36,共9页
为了探究运营期平衡湿度条件下公路路基路面动态回弹模量的变化规律,通过理论计算,得出不同重载条件下满足弯沉等效的优化路基路面结构;利用有限元分析软件建立模型进行数值模拟分析,通过模拟历经降雨及地下水渗流的过程来等效平衡湿度... 为了探究运营期平衡湿度条件下公路路基路面动态回弹模量的变化规律,通过理论计算,得出不同重载条件下满足弯沉等效的优化路基路面结构;利用有限元分析软件建立模型进行数值模拟分析,通过模拟历经降雨及地下水渗流的过程来等效平衡湿度条件,分析运营期平衡湿度条件下路基路面结构动态回弹模量和弯沉值的变化规律。结果表明:随着降雨强度的增加、历时时间的延长和地下水位的上升,弯沉值呈增大趋势,而动态回弹模量呈线性降低趋势。相对于优化前的路基路面模型,优化后模型的动态回弹模量显著提升,验证了重载条件下基于弯沉等效设计路基路面结构的可行性。 展开更多
关键词 公路 路基路面结构 动态回弹模量 平衡湿度 弯沉等效
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路基回弹模量变化对沥青路面结构的影响分析
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作者 郑晨 《工程建设与设计》 2025年第18期38-40,共3页
分析了路基回弹模量的影响因素,研究了路基回弹模量对沥青路面各结构层的影响,提出了提高路基回弹模量的方法。结果表明,高回弹模量的路基能提供更好的支撑,减小路面层的变形和裂缝风险,延长道路使用寿命。
关键词 路基 回弹模量 沥青 路面结构
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