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Research progress of intelligent testing technology and evaluation methods for subgrade engineering 被引量:1
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作者 Guojun Cai Hongliang Tian +2 位作者 Lulu Liu Xiaoyan Liu Songyu Liu 《Journal of Road Engineering》 2025年第2期164-183,共20页
Subgrade engineering is a fundamental aspect of infrastructure construction in China.As the primary structural element responsible for bearing and distributing traffic loads,the subgrade must not only withstand the su... Subgrade engineering is a fundamental aspect of infrastructure construction in China.As the primary structural element responsible for bearing and distributing traffic loads,the subgrade must not only withstand the substantial pressures exerted by vehicles,trains,and other forms of transportation,but also efficiently transfer these loads to the underlying foundation,ensuring the stability and longevity of the roadway.In recent years,advancements in subgrade engineering technology have propelled the industry towards smarter,greener,and more sustainable practices,particularly in the areas of intelligent monitoring,disaster management,and innovative construction methods.This paper reviews the application and methodologies of intelligent testing equipment,including cone penetration testing(CPT)devices,soil resistivity testers,and intelligent rebound testers,in subgrade engineering.It examines the operating principles,advantages,limitations,and application ranges of these tools in subgrade testing.Additionally,the paper evaluates the practical use of advanced equipment from both domestic and international perspectives,addressing the challenges encountered by various instruments in realworld applications.These devices enable precise,comprehensive testing and evaluation of subgrade conditions at different stages,providing real-time data analysis and intelligent early warnings.This supports effective subgrade health management and maintenance.As intelligent technologies continue to evolve and integrate,these tools will increasingly enhance the accuracy,efficiency,and sustainability of subgrade monitoring. 展开更多
关键词 subgrade engineering Intelligent testing technology Technology evaluation Health management and maintenance
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Advanced intelligent compaction strategy for subgrade soil considering heterogeneous database 被引量:1
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作者 Xuefei Wang Jianhua Li +2 位作者 Jiale Li Jianmin Zhang Guowei Ma 《Journal of Rock Mechanics and Geotechnical Engineering》 2025年第5期3265-3279,共15页
Real-time assessment of subgrade compaction quality poses a significant challenge in the implementation of intelligent compaction(IC).Current compaction evaluation models are confined to specific scenarios and lack ro... Real-time assessment of subgrade compaction quality poses a significant challenge in the implementation of intelligent compaction(IC).Current compaction evaluation models are confined to specific scenarios and lack robustness.This study proposes a subgrade compaction strategy that utilizes a heterogeneous dataset to estimate compaction quality across diverse scenarios while maintaining model accuracy.Field compaction tests are conducted in four distinct scenarios,considering various construction parameters.Compaction models are developed using several machine learning algorithms.The datasets are thoroughly assessed in terms of quality,diversity and similarity.The proposed model exhibits good performance in new scenarios by incorporating an additional 5%e8%of new data for retraining.The model's generalization capability is enhanced by conducting a limited number of field tests,which are labor-saving and time-efficient.The model's accuracy consistently improves across diverse scenarios and optimal algorithms.The proposed compaction strategy adopts a physics-and-data dual-driven approach,aimed at practical engineering applications and guiding the compaction procedure. 展开更多
关键词 Intelligent compaction subgrade construction Machine learning algorithms Heterogeneous scenarios Quality evaluation Training strategy
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Effect of fine-grained wood biochar on the geotechnical and microstructural behaviour of expansive clay as pavement subgrade
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作者 Mohammad Saberian Jiasheng Zhu +3 位作者 Rajeev Roychand Xi Sun Jie Li Chun-Qing Li 《Journal of Rock Mechanics and Geotechnical Engineering》 2025年第10期6648-6661,共14页
Biochar,a solid carbonaceous material produced by heating biomass in oxygen-free or low-oxygen conditions(pyrolysis),has been used in various applications,including wastewater treatment,carbon sequestration,and improv... Biochar,a solid carbonaceous material produced by heating biomass in oxygen-free or low-oxygen conditions(pyrolysis),has been used in various applications,including wastewater treatment,carbon sequestration,and improving soil fertility.However,very limited research has been performed to explore its feasibility to improve the expansive clay(EC)subgrade.In this study,fine-grained wood biochar derived from wood waste was used to stabilise and enhance the mechanical performance of the EC as road subgrade.A comprehensive series of geotechnical tests,including unconfined compressive strength(UCS),California bearing ratio(CBR),repeated load triaxial(RLT),and swelling-shrinkage tests,were conducted to investigate the engineering properties of expansive clay mixed with different contents of the fine-grained biochar(FGB)(i.e.0,1%,2%,3%,and 4%by weight of dry soil).Furthermore,X-ray diffraction(XRD),X-ray fluorescence(XRF),X-ray micro-CT,and thermogravimetric analysis(TGA)analyses were performed to study the microchemical modification of the EC-FGB mixtures.The results showed that adding FGB reduced the swelling and shrinkage potential while enhancing the mechanical properties of the EC.The micro-level analysis also supported the enhancement of the geotechnical performance of the EC resulting from the incorporation of FGB.According to the test results,2%FGB was considered the optimum content,increasing UCS,CBR,and resilient modulus by 31.1%,24.1%,and 31.5%,respectively,and decreasing the swell-shrinkage index by 7%. 展开更多
关键词 Expansive clay Wood biochar Soil stabilisation Pavement subgrade
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Salt rock filling in subgrade:a comprehensive review
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作者 Liyang Wang Feng Chen +1 位作者 Pengcheng Wang Qianli Zhang 《Railway Sciences》 2025年第2期174-198,共25页
Purpose–Salt rock from salt lakes can serve as a cost-effective material for subgrade filling,as demonstrated in projects like the Qarhan Salt Lake section of the Qinghai-Tibet Railway and the Qarhan Salt Lake sectio... Purpose–Salt rock from salt lakes can serve as a cost-effective material for subgrade filling,as demonstrated in projects like the Qarhan Salt Lake section of the Qinghai-Tibet Railway and the Qarhan Salt Lake section of the G215 Highway.This state-of-the-art paper aims to summarize the engineering properties of salt rock filling and present the advances of its utilization.Design/methodology/approach–This paper collects and analyzes laboratory and field data of salt rock filling from previous studies to present a comprehensive analysis of the engineering properties and utilization of salt rock fillings.Findings–Salt rock primarily contains minerals such as halite and glauberite,which contribute to its unique phase-changing behavior under varying environmental conditions,impacting its mechanical properties.Salt rock filling shrinks when in contact with vapor or unsaturated brine and expands under cooling or evaporation.Its use is particularly recommended for arid regions,with specific restrictions depending on the structure type.This paper discusses suggested countermeasures to mitigate these issues,as well as key quality acceptance indices for salt rock filling compaction.Moisture content after air-drying is recommended as a crucial parameter for construction quality control.Originality/value–This review aims to support future research and engineering practices in salt rock subgrade applications. 展开更多
关键词 Salt rock subgrade filling Engineering properties WATERPROOFING Construction quality control
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Analysis of Key Technologies for On-site Detection of Subgrade and Pavement of Municipal Roads
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作者 Zijian Hu 《Journal of Architectural Research and Development》 2025年第6期90-97,共8页
On-site inspection of municipal road subgrade and pavement is of great significance for ensuring the quality,safety,and durability of urban road infrastructure.This paper analyzes its key technologies,introduces non-d... On-site inspection of municipal road subgrade and pavement is of great significance for ensuring the quality,safety,and durability of urban road infrastructure.This paper analyzes its key technologies,introduces non-destructive testing methods such as ground-penetrating radar and ultrasonic testing,elaborates on the multifaceted roles of inspection in engineering construction as well as relevant standards,explores site challenges,key technologies,and corresponding measures,and points out future research directions in intelligent sensing and predictive maintenance. 展开更多
关键词 Municipal roads subgrade and pavement inspection Key technologies
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Numerical simulation 0n the influence of different median strip types in the separated highway subgrade cross section on the transport law of wind-sand flow
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作者 ZHANG Jing LI Shengyu +1 位作者 SUN Yunlong XIA Tian 《Journal of Mountain Science》 2025年第5期1707-1722,共16页
To mitigate the sand burial of highways in sandy regions,a separated subgrade design was widely adopted in the embankments of high-grade highways,but the problem of sand deposition on subgrade slopes and pavements sti... To mitigate the sand burial of highways in sandy regions,a separated subgrade design was widely adopted in the embankments of high-grade highways,but the problem of sand deposition on subgrade slopes and pavements still happens frequently.Based on the theory of wind-sand two-phase flow,this paper constructed a three-dimensional model of the separated subgrade,the wind-sand flow transport law around the subgrade with varying median strip widths and concave depths was simulated by Fluent software.After comparison and analysis of seven subgrade models,the flow field distribution,wind speed horizontal variation,and erosion-deposition characteristics were investigated.The findings are as follows:(1)The width of the median strip in the separated subgrade had significant influences on the wind-sand flow.The smooth passage of wind-sand flow over the road surface was facilitated with the increase of the median strip width.However,sand deposition in the median strip happened.It can lead to secondary sand damage of downwind subgrade and increase the work load of road sand removal for subsequent maintenance.(2)The obstruction to airflow and sand accumulation was aggravated with greater concave depth of the median strip.Therefore,it is advisable to minimize the concave depth of the median strip in case of more sand damage.(3)A median strip width exceeding 12 m(possibly without guardrails)for an integral embankment without enough road land is recommended.Conversely,median strip width of over 40 m for separate subgrade with unrestricted land is suggested.(4)In the case of sand deposition in the existing separated subgrade,the median strip can be filled by sand deposition or other materials,then was covered with gravel to form a flat ground like Gobi smooth surface,which can let the wind-blown sand flow pass through the subgrade section without sand deposition. 展开更多
关键词 Highway engineering Separated subgrade Median strip Numerical simulation Embankment wind-sand flow
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Study on static characteristics of a novel prestress-reinforced railway subgrade
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作者 Junli Dong Fang Xu +3 位作者 Qishu Zhang Wuming Leng Yafeng Li Qi Yang 《Railway Engineering Science》 2025年第1期108-126,共19页
Understanding the reinforcement effect of the newly developed prestressed reinforcement components(PRCs)(a system composed of prestressed steel bars(PSBs),protective sleeves,lateral pressure plates(LPPs),and anchoring... Understanding the reinforcement effect of the newly developed prestressed reinforcement components(PRCs)(a system composed of prestressed steel bars(PSBs),protective sleeves,lateral pressure plates(LPPs),and anchoring elements)is technically significant for the rational design of prestressed subgrade.A three-dimensional finite element model was established and verified based on a novel static model test and utilized to systematically analyze the influence of prestress levels and reinforcement modes on the reinforcement effect of the subgrade.The results show that the PRCs provide additional confining pressure to the subgrade through the diffusion effect of the prestress,which can therefore effectively improve the service performance of the subgrade.Compared to the unreinforced conventional subgrades,the settlements of prestressreinforced subgrades are reduced.The settlement attenuation rate(Rs)near the LPPs is larger than that at the subgrade center,and increasing the prestress positively contributes to the stability of the subgrade structure.In the multi-row reinforcement mode,the reinforcement effect of PRCs can extend from the reinforced area to the unreinforced area.In addition,as the horizontal distance from the LPPs increases,the additional confining pressure converted by the PSBs and LPPs gradually diminishes when spreading to the core load bearing area of the subgrade,resulting in a decrease in the Rs.Under the singlerow reinforcement mode,PRCs can be strategically arranged according to the local areas where subgrade defects readily occurred or observed,to obtain the desired reinforcement effect.Moreover,excessive prestress should not be applied near the subgrade shoulder line to avoid the shear failure of the subgrade shoulder.PRCs can be flexibly used for preventing and treating various subgrade defects of newly constructed or existing railway lines,achieving targeted and classified prevention,and effectively improving the bearing performance and deformation resistance of the subgrade.The research results are instructive for further elucidating the prestress reinforcement effect of PRCs on railway subgrades. 展开更多
关键词 Prestressed subgrade Static characteristic Reinforcement effect Reinforcement mode SETTLEMENT Numerical simulation
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Gray relational analysis and SBOA-BP for predicting settlement intervals of high-speed railway subgrade
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作者 Quanpeng He Shaoyuan Li 《Railway Sciences》 2025年第2期199-212,共14页
Purpose–The deformation of the roadbed is easily influenced by the external environment to improve the accuracy of high-speed railway subgrade settlement prediction.Design/methodology/approach–A high-speed railway s... Purpose–The deformation of the roadbed is easily influenced by the external environment to improve the accuracy of high-speed railway subgrade settlement prediction.Design/methodology/approach–A high-speed railway subgrade settlement interval prediction method using the secretary bird optimization(SBOA)algorithm to optimize the BP neural network under the premise of gray relational analysis is proposed.Findings–Using the SBOA algorithm to optimize the BP neural network,the optimal weights and thresholds are obtained,and the best parameter prediction model is combined.The data were collected from the sensors deployed through the subgrade settlement monitoring system,and the gray relational analysis is used to verify that all four influencing factors had a great correlation to the subgrade settlement,and the collected data are verified using the model.Originality/value–The experimental results show that the SBOA-BP model has higher prediction accuracy than the BP model,and the SBOA-BP model has a wider range of prediction intervals for a given confidence level,which can provide higher guiding value for practical engineering applications. 展开更多
关键词 Gray relational analysis Secretary bird optimization algorithm Backpropagation neural network subgrade settlement Interval prediction
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A novel digital design method for railway subgrade sections
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作者 Qingbo Bai Xu Li +2 位作者 Zhenze Ma Xiaokang Li Long Liu 《Railway Sciences》 2025年第3期375-387,共13页
Purpose-Conventional high-speed railways(HSR)subgrade design methods remain constrained by platformdependent drafting systems,leading to data interaction hindrances and redundant design processes.This study strives to... Purpose-Conventional high-speed railways(HSR)subgrade design methods remain constrained by platformdependent drafting systems,leading to data interaction hindrances and redundant design processes.This study strives to develop a digital earthwork design methodology that enhances design while reducing collaborative expenses.Design/methodology/approach-A novel digital subgrade design approach,utilizing sophisticated analysis and modeling tools customized for different subgrade elements,is put forward in this study.The methodology incorporates the following essential steps:(1)the advancement of digital analysis and modeling techniques for diverse subgrade components,including surfaces,filling,slopes,retaining structures,and foundation treatments;(2)the formulation of a digital design principle repository incorporating various slope protection combinations;(3)the establishment of a comprehensive digital design framework and process for subgrade cross-sections;and(4)the development and implementation of an open-source digital design system.Findings-The proposed method liberates subgrade design from the constraints of conventional drawing platforms,elevating efficiency,intelligence,and flexibility.The open software architecture and code have achieved over 60%efficiency gains in design workflows during its deployment on three major high-speed rail projects:the Baotou-Yinchuan HSR corridor,Shenyang-Baihe HSR network,and Weifang-Yantai HSR system.Originality/value-This paper introduces an innovative digital design methodology that enables modular and parametric design for railway subgrade sections.The proposed approach provides a digital base for the intelligent design and maintenance of the next-generation high-speed railway. 展开更多
关键词 Software development Digital design subgrade High-speed railway Paper type Technical paper
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Research on risk identification of railway subgrade deformation based on Bayesian and ICA theories
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作者 Yi Liu Fengyan Yang +3 位作者 Hu Wang Xuanqi Wang Chengwen Wu Hongsheng Yu 《Railway Sciences》 2025年第6期711-728,共18页
Purpose–This paper conducts a joint analysis of monitoring data in the hidden danger areas of railway subgrade deformation using a data-driven method,thereby realizing the systematic risk identification of regional h... Purpose–This paper conducts a joint analysis of monitoring data in the hidden danger areas of railway subgrade deformation using a data-driven method,thereby realizing the systematic risk identification of regional hidden dangers.Design/methodology/approach–The paper proposes a regional systematic risk identification method based on Bayesian and independent component analysis(ICA)theories.Firstly,the Gray Wolf Optimization(GWO)algorithm is used to partition each group of monitoring data in the hidden danger area,so that the data distribution characteristics within each sub-block are similar.Then,a distributed ICA early warning model is constructed to obtain prior knowledge such as control limits and statistics of the area under normal conditions.For the online evaluation process,the input data is partitioned following the above-mentioned procedure and the ICA statistics of each sub-block are calculated.The Bayesian method is applied to fuse online parameters with offline parameters,yielding statistics under a specific confidence interval.These statistics are then compared with the control limits–specifically,checking whether they exceed the pre-set confidence parameters–thus realizing the systematic risk identification of the hidden danger area.Findings–Through simulation experiments,the proposed method can integrate prior knowledge such as control limits and statistics to effectively determine the overall stability status of the area,thereby realizing the systematic risk identification of the hidden danger area.Originality/value–The proposed method leverages Bayesian theory to fuse online process parameters with offline parameters and further compares them with confidence parameters,thereby effectively enhancing the utilization efficiency of monitoring data and the robustness of the analytical model. 展开更多
关键词 Bayesian theory Grey Wolf Algorithm Independent component analysis Railway subgrade Deformation analysis
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Full-scale performances of the slab track subgrade filled with basalt fiber-reinforced foamed concrete
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作者 Zhichao Huang Qian Su +3 位作者 Wenhui Zhao Zongyu Zhang Junjie Huang Sakdirat Kaewunruen 《Railway Engineering Science》 2025年第2期238-258,共21页
Foamed concrete has been used to address the issue of differential settlement in high-speed railway subgrades in China.However,to enhance crack resistance,reinforcement is still necessary,and further research is requi... Foamed concrete has been used to address the issue of differential settlement in high-speed railway subgrades in China.However,to enhance crack resistance,reinforcement is still necessary,and further research is required to better understand the performance of foamed concrete in subgrade applications.To this end,a series of tests—including uniaxial compres-sive and dynamic triaxial tests—were conducted to comprehensively examine the effects of basalt fiber reinforcement on the mechanical properties of foamed concrete with densities of 700 and 1000 kg/m3.Additionally,a full-scale model of the foamed concrete subgrade was established,and simulated loading was applied.The diffusion patterns of dynamic stress and dynamic acceleration within the subgrade were explored,leading to the development of experimental formulas to calculate the attenuation coefficients of these two parameters along the depth and width of the subgrade.Furthermore,the dynamic displacement and cumulative settlement were analyzed to evaluate the stability of the subgrade.These findings provide valuable insights for the design and construction of foamed concrete subgrades in high-speed rail systems.The outcomes are currently under consideration for inclusion in the code of practice for high-speed rail restoration. 展开更多
关键词 High-speed railway Slab track subgrade Basalt fiber-reinforced foamed concrete Model testing Dynamic performances
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Mechanical behavior of train-slab track coupled system under subgrade settlement and earthquake excitation
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作者 LOU Ping SHI Tao YANG T.Y. 《Journal of Central South University》 2025年第11期4417-4438,共22页
Subgrade settlement is a common issue in soil ground within earthquake-prone regions,posing a threat to the safe operation of train-slab track coupled system(TSCS)in high-speed railways(HSRs).This study aims to analyz... Subgrade settlement is a common issue in soil ground within earthquake-prone regions,posing a threat to the safe operation of train-slab track coupled system(TSCS)in high-speed railways(HSRs).This study aims to analyze the mechanical behavior evolution of TSCS under subgrade settlement and earthquake excitation.The refined numerical model of slab track under subgrade differential settlement is established.The short settlement wavelength of 10 m causes the separation between the base and subgrade.The dynamic model of TSCS under subgrade settlement and earthquake excitation is developed.The dynamic response of TSCS exhibits more pronounced fluctuations under the combined effects of subgrade settlement and earthquake excitation than under the effects of settlement or earthquake alone.The evaluation indexes for the running safety of train on slab track under different settlement wavelengths exhibit varying degrees of increase with settlement amplitude and are particularly sensitive to the short settlement wavelength of 10 m.The wheel unloading rate and derailment coefficient of TSCS increase with earthquake intensity.Under the settlement wavelength of 10 m and amplitude of 20 mm,the wheel unloading rate of TSCS exceeds the allowable limit when the earthquake intensity exceeds 0.17g,and the derailment coefficient exceeds the allowable limit when the earthquake intensity surpasses 0.29g. 展开更多
关键词 train-slab track coupled system mechanical behavior subgrade differential settlement earthquake excitation running safety of train
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Pile-plate structure subgrade performance in seasonally frozen regions with freeze-thaw cycles
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作者 LIU Xianfeng LIU Tianyu +3 位作者 YUAN Shengyang ZHANG Shuming REN Hao JIANG Guanlu 《Journal of Mountain Science》 2025年第9期3480-3492,共13页
The pile-plate structure has proven highly effective support for high-speed railway subgrades,particularly in poor geological conditions.Although its efficacy in non-frozen regions is well-established,its potential in... The pile-plate structure has proven highly effective support for high-speed railway subgrades,particularly in poor geological conditions.Although its efficacy in non-frozen regions is well-established,its potential in frozen regions remains underexplored.In seasonally frozen areas,F-T(freeze-thaw)cycles threaten subgrade stability,necessitating research on pile-plate structure’s behavior under such conditions.To address this challenge,a scaled model experiment was conducted on a silty sand foundation,simulating F-T cycles using temperature control devices.Key parameters,including soil temperature,frozen depth,and displacement,were systematically monitored.Results indicate that the bearing plate functions as an effective insulation layer,significantly reducing sub-zero temperature penetration.Additionally,the anchoring action of the piles mitigates frost heave in the foundation soil,while the plate middle restrains soil deformation more effectively due to increased constraint.The thermal insulation provided by the plate maintains higher soil temperatures,delaying the onset of freezing.By the end of each freezing stage,the vertical displacement in the natural subgrade is approximately 4 times greater than that beneath the pile-plate structure.Furthermore,the frost depth is about 1.3-1.4 times and 1.6-4.9 times greater than that measured below the plate edge and middle,respectively.These insights contribute to the development of more resilient designs for high-speed railway subgrades in seasonally frozen regions,offering engineers a robust,scientifically-backed foundation for future infrastructure projects. 展开更多
关键词 Pile-plate structure High speed railway subgrade Freeze thaw cycles Seasonally frozen soil Scaled model experiment
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Impact of sandstone slurry waste with calcium carbonate nanoparticles on geotechnical properties of clayey soil subgrade
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作者 Amrit Singh Shekhawat Suresh Kumar Tiwari 《Journal of Rock Mechanics and Geotechnical Engineering》 2025年第8期5318-5333,共16页
The sustainable geotechnical approach for addressing the challenges associated with clayey soils at construction sites involves the modification of these soils’mechanical and chemical characteristics using soil enhan... The sustainable geotechnical approach for addressing the challenges associated with clayey soils at construction sites involves the modification of these soils’mechanical and chemical characteristics using soil enhancement methods.The present study investigates the coupling effect of sandstone slurry waste(SSW)and calcium carbonate nanoparticle(CCN)as potential stabilizers to enhance the characteristics of clayey soil.A comprehensive investigation was conducted using compaction tests,plasticity index(PI)tests,California bearing ratio(CBR)tests,unconfined compressive strength(UCS)tests,and microstructural analyses of clayey soil,SSW and SSW-CCN-treated clay samples containing 5%,10%,15%,20%,25%,30%,and 35%SSW and 0.3%,0.6%,0.9%,1.2%,and 1.5%CCN mixed with clayey soil in different combinations of clay,SSW,and CCN.The findings reveal that incorporating 25%SSW with 0.9%CCN into clay soil results in an increase in the UCS from 132.2 kPa for untreated clayey soil without curing to 263 kPa after a 28-d curing period.Similarly,a rising trend in CBR results is observed up to 25%SSW addition in clay soil and up to 0.9%CCN addition in SSW-clay mixture.Initially,notable enhancements in UCS were attributed to a denser soil structure,followed by the formation of calcium–silicate–hydrate(CSH)gel,which intensified with prolonged curing.Gel patches were detected by scanning electron microscopy(SEM)in addition to particle aggregation.The results obtained from thermogravimetric analysis,Fourier transform infrared spectroscopy(FTIR),and X-ray diffraction(XRD)supported the presence of hydration products such as CSH.The experimental study indicates that SSW,in combination with CCN,offers a sustainable alternative to traditional soil stabilizers. 展开更多
关键词 Clayey soil stabilization Sandstone slurry waste(SSW) Calcium carbonate nanoparticle(CCN) subgrade stabilization
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铁路路基压电俘能器-路基刚度耦合试验研究
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作者 陈晓斌 周应华 +1 位作者 杨伟超 王密 《铁道建筑》 北大核心 2026年第1期57-62,共6页
为提升铁路系统振动能量回收效率并推动其低碳化应用,本研究设计并开发了一种铁路路基压电俘能器(Railway Subgrade Piezoelectric Energy Harvester,RAS-PEH)。依托改进的IC-1型智能振动压实仪,构建了可模拟高速列车动荷载及真实路基... 为提升铁路系统振动能量回收效率并推动其低碳化应用,本研究设计并开发了一种铁路路基压电俘能器(Railway Subgrade Piezoelectric Energy Harvester,RAS-PEH)。依托改进的IC-1型智能振动压实仪,构建了可模拟高速列车动荷载及真实路基约束条件的试验系统,研究RAS-PEH在红层泥岩与石灰岩两类典型路基填料中的力-电耦合响应特性及发电性能。结果表明,在0~20 Hz频率范围内,RAS-PEH的负载电压均峰值随激励频率整体呈增长趋势,但增幅逐渐减缓;在动荷载频率恒定条件下,电压均峰值随偏心距(荷载幅值)增大而近似线性提高。对比分析发现,在相同加载工况下,石灰岩路基中的电压输出整体高于红层泥岩路基,在35 mm偏心距条件下,石灰岩环境下的最大输出电压较红层泥岩提高约18%。路基填料刚度差异及动荷载特性共同影响RAS-PEH的能量转换性能,为其在不同路基环境中的适应性设计与性能优化提供了试验依据。 展开更多
关键词 铁路路基 压电俘能 室内试验 能量收集 路基填料
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考虑应力主轴旋转的路基服役性能试验系统研制及验证
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作者 崔新壮 包振昊 +5 位作者 杜业峰 郝建文 金青 曹天才 张圣琦 张小宁 《土木工程学报》 北大核心 2026年第1期115-128,共14页
为了精准复现交通荷载作用下公路路基三维应力状态与服役性能演化过程,研制一种考虑应力主轴旋转的公路路基服役性能试验系统。路基服役性能试验系统主要是以加载系统为核心、全数字伺服控制系统及数据采集系统等辅助模块组成。根据交... 为了精准复现交通荷载作用下公路路基三维应力状态与服役性能演化过程,研制一种考虑应力主轴旋转的公路路基服役性能试验系统。路基服役性能试验系统主要是以加载系统为核心、全数字伺服控制系统及数据采集系统等辅助模块组成。根据交通荷载作用下路基土单元全应分量(3个正应力、3个切应力)的时程特征,设计以4个动态作动器及3个静态作动器为核心的加载系统,通过静动协同加载来实现不同层位路基土单元的应力主轴旋转效应。基于交通荷载作用下公路路基动力响应理论模型,结合加载系统的机械结构与空间特征,建立公路路基三维动应力复现理论,并提出由“应力谱”到“加载谱”的转化方法。基于该试验系统,开展汽车荷载作用下公路路基内部三维应力状态验证试验。结果表明,各静动伺服作动器的实际输出荷载偏差低于1%,表明研制的路基服役性能试验系统能够精准复现交通荷载作用下路基内部的三维应力状态;路基内部的竖向动应力沿深度方向逐渐衰减,土单元所经历的应力路径呈近似“心形”,并且各动应力分量时程曲线与竖向动应力衰减规律均与理论计算结果有较高的吻合度。虽然该试验系统的加载装置在加载过程中位置不变,但是依然可以通过“七缸联动、协调加载”的方式复现交通荷载“远-近-远”移动过程中路基工作区不同深度土单元的动力响应。因此,该文研制的路基服役性能试验系统为开展真实应力条件下公路路基服役性能演化规律研究提供新思路、新方法和新技术。 展开更多
关键词 道路工程 公路路基 应力主轴旋转 模型试验 加载系统 服役性能
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铁路路基压电俘能器电学特性现场试验
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作者 陈晓斌 周应华 +2 位作者 杨伟超 金伟涛 王密 《铁道建筑》 北大核心 2026年第2期101-105,共5页
为实现重载铁路系统振动能量的高效回收与低碳化发展,本文设计并研制了铁路路基压电俘能器(RAS-PEH),并在京广铁路典型区段开展现场试验。通过对比两代压电俘能器在外接电阻10~100 kΩ范围内的电学特性,揭示了其能量转换规律。结果表明... 为实现重载铁路系统振动能量的高效回收与低碳化发展,本文设计并研制了铁路路基压电俘能器(RAS-PEH),并在京广铁路典型区段开展现场试验。通过对比两代压电俘能器在外接电阻10~100 kΩ范围内的电学特性,揭示了其能量转换规律。结果表明:随着外接电阻增大,两代装置的电压平均峰值呈单调递增趋势,RAS-PEH-Ⅱ最高达131.79 V,但增幅逐渐减小;RAS-PEH-Ⅱ输出功率呈现先上升后下降的趋势,最优负载区间为70~80 kΩ,其中RAS-PEH-Ⅱ的峰值功率较RAS-PEH-Ⅰ提升16.21%~22.73%。量化分析表明,在一列和谐1C型电力机车牵引货运车厢以40 km/h通过时,单个RAS-PEH-Ⅱ装置单次可收集电能19.54 J,满足铁路路基健康监测系统间歇式数据采集与无线传输的供电需求。本研究验证了压电俘能技术在重载铁路工程中的可行性,为振动能量回收系统的优化设计与规模化应用提供了重要依据。 展开更多
关键词 铁路路基 压电俘能 现场试验 能量收集 重载铁路
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动力湿化作用下土体水分迁移规律试验研究
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作者 马德良 韩弘驰 +3 位作者 董静 李腾 冯怀平 杨志浩 《岩土工程学报》 北大核心 2026年第2期280-290,共11页
揭示动力湿化作用下(dynamic slaking,D-S)路基土的水分迁移规律对于分析重载铁路翻浆冒泥病害成因至关重要。通过自主开发水-力联合测试系统,开展路基土的动力湿化三轴试验,通过电阻率特征分析水分迁移过程,揭示动力影响水分迁移过程... 揭示动力湿化作用下(dynamic slaking,D-S)路基土的水分迁移规律对于分析重载铁路翻浆冒泥病害成因至关重要。通过自主开发水-力联合测试系统,开展路基土的动力湿化三轴试验,通过电阻率特征分析水分迁移过程,揭示动力影响水分迁移过程的机理。建立了基于归一化电阻率的含水率计算方法,分析了动应力和干密度对水分迁移规律的耦合作用机制。研究发现,动力湿化作用下土样电阻率出现了“递减-递增-稳定”的三阶段演化规律,验证了水-力联合测试系统在动力湿化试验的适用性。随动应力升高,水分迁移速度降低了约11%,土样平衡含水率降低了约0.8%;随着干密度升高,土样前期含水率增速提高,较大干密度土样内部孔隙产生了抽吸现象,加速了底部水分向上迁移。本研究成果为完善土体动力湿化水分迁移模型、揭示路基翻浆冒泥病害发病机理提供了试验依据。 展开更多
关键词 动力湿化 水分迁移规律 水-力联合测试 路基土
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考虑围压变化的灰土桩复合地基沉降计算方法
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作者 李哲 马季 +1 位作者 刘路路 夏树峥 《西安建筑科技大学学报(自然科学版)》 北大核心 2026年第1期15-25,共11页
近年来,各种建筑物在填方工程中应用灰土桩复合地基的模式逐渐增多,在使用这些建筑时,由于填方复合地基倾斜沉降,致使建筑物倾斜,阻碍建筑物的正常运行,因此需要对填方灰土桩复合地基沉降计算问题进行深入研究,这对建筑物的正常运行具... 近年来,各种建筑物在填方工程中应用灰土桩复合地基的模式逐渐增多,在使用这些建筑时,由于填方复合地基倾斜沉降,致使建筑物倾斜,阻碍建筑物的正常运行,因此需要对填方灰土桩复合地基沉降计算问题进行深入研究,这对建筑物的正常运行具有重大意义.本文应用室内自研三向加载设备进行静止土压力试验和三向压缩试验,阐述了填土及灰土的沉降变形特征,修正了复合模量法中计算复合模量的公式,提出了填方灰土桩复合地基的沉降计算公式,并对其进行了验证.主要研究工作及成果如下:填土及灰土的静止土压力系数分别为0.312和0.217;填土在不同围压下,竖向应变与侧向应变随竖向荷载增大而增大,随围压增大而减小,竖向应变增长速率越来越小,侧向应变增长速率越来越大;灰土也有同样上述规律,但随着龄期的增大,竖向及侧向应变逐渐减小;提出了考虑不同地基深度下的复合模量计算公式,推导出填方灰土桩复合地基沉降计算公式,通过工程实例计算,证明此公式可以提高计算精度. 展开更多
关键词 复合地基 沉降计算 公式修正 填方路基
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基于Winkler地基梁理论的拼宽公路新老路基差异沉降分析
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作者 张玲 彭芯钰 +1 位作者 章瑞环 刘小平 《河北大学学报(自然科学版)》 北大核心 2026年第1期1-12,共12页
为分析拼宽公路水泥混凝土路面新老承载结构在交通荷载作用下的差异性沉降特性,本文将路面结构视为Winkler地基梁,建立考虑新老路基刚度差异的连续梁计算模型,并通过引入弹性铰考虑路面结构的非连续性.采用幂级数法推导出新老路基路面... 为分析拼宽公路水泥混凝土路面新老承载结构在交通荷载作用下的差异性沉降特性,本文将路面结构视为Winkler地基梁,建立考虑新老路基刚度差异的连续梁计算模型,并通过引入弹性铰考虑路面结构的非连续性.采用幂级数法推导出新老路基路面在交通荷载作用下的沉降解析解,并与传统Winkler地基梁初参数法计算结果进行对比验证了其正确性.在此基础上,系统分析了新老路基填料压缩模量比、路基填高、结合部宽度及弹性铰抗剪刚度等各因素对路面沉降的影响规律.研究表明:当新老路基土体压缩模量比由0.4增加至1.0时,最大差异沉降约降低20%;路基填高由1 m增加至4 m时,最大沉降值由22.4 mm上升至78.0 mm;结合部宽度由3 m增加至6 m时,沉降峰值约减少15%.此外,弹性铰抗剪刚度显著影响路面结构拼接区域的局部变形行为,当其刚度低于1×10^(4) kN/m时,拼接区域局部变形急剧增大.本研究可为拼宽公路路面结构设计与差异沉降控制提供理论依据及参数优化指导. 展开更多
关键词 拼宽公路 新老路基 WINKLER地基 非连续梁 差异沉降
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