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Form and load transfer aspects of foundation systems:Case-based implementation and adaptation for buildings
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作者 Abolfazl Eslami Amirhossein Ebrahimipour +2 位作者 Meysam Imani Reza Imam Pinqiang Mo 《Deep Underground Science and Engineering》 2026年第1期176-192,共17页
Conventionally,foundations have been classified as shallow or deep in routine civil engineering practice.However,due to recent developments,two other approaches,semi-deep and ground modification foundations,are now av... Conventionally,foundations have been classified as shallow or deep in routine civil engineering practice.However,due to recent developments,two other approaches,semi-deep and ground modification foundations,are now available,complicating foundation categorization.Accordingly,a new concept for foundation categorization is introduced in this paper based on insights into the theory of structure analysis.Based on the form aspect,foundation systems can be categorized as one-dimensional(linear),two-dimensional(planar),and threedimensional(volumetric).Based on the load transfer aspect,foundations can also be categorized as vector-acting(piles),section or surface-acting(rafts and shells),and block-acting(piled rafts).As a step toward implementing this new categorization scheme,a database of 22 cases has been compiled,symbolizing novel introduced foundation systems.This compilation involves structures such as offshore jackets,high-rise buildings,towers and storages,and diverse geomaterials.Among them,a few have been selected for detailed evaluation,emphasizing influential factors in foundation selection,comprising superstructure,subsoil condition,foundation system,circumferential conditions,and supplementary considerations,that is,constructional and sustainability-based issues.Lessons learned from experience and these knowledge-based cases have described for foundation selection and implementation.Geotechnical and practical aspects with critical components have been realized as major performance assessment and comparison factors.Foundation systems have been compared and ranked using the improved analytic hierarchy process approach.Finally,four categories of buildings,from low-rise to towers and four prevailing levels of soil strength,from soft to very hard,have been considered to propose a perspective for building substructure implementation,adapted via relevant cases.Overall,the introduced categorization is recognized as an efficient algorithm for the experimentation of appropriate foundations for specific structures and subsoil conditions. 展开更多
关键词 case-based adaptation FORM foundation system load transfer underground substructure
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Bearing capacity and load transfer mechanism of a static drill rooted nodular pile in soft soil areas 被引量:21
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作者 Jia-jin ZHOU Kui-hua WANG +1 位作者 Xiao-nan GONG Ri-hong ZHANG 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2013年第10期705-719,共15页
The static drill rooted nodular pile is a new type of pile foundation consisting of precast nodular pile and the surrounding cemented soil.This composite pile has a relatively high bearing capacity and the mud polluti... The static drill rooted nodular pile is a new type of pile foundation consisting of precast nodular pile and the surrounding cemented soil.This composite pile has a relatively high bearing capacity and the mud pollution will be largely reduced during the construction process by using this type of pile.In order to investigate the bearing capacity and load transfer mechanism of this pile,a group of experiments were conducted to provide a comparison between this new pile and the bored pile.The axial force of a precast nodular pile was also measured by the strain gauges installed on the pile to analyze the distribution of the axial force of the nodular pile and the skin friction supported by the surrounding soil,then 3D models were built by using the ABAQUS finite element program to investigate the load transfer mechanism of this composite pile in detail.By combining the results of field tests and the finite element method,the outcome showed that the bearing capacity of a static drill rooted nodular pile is higher than the bored pile,and that this composite pile will form a double stress dispersion system which will not only confirm the strength of the pile,but also make the skin friction to be fully mobilized.The settlement of this composite pile is mainly controlled by the precast nodular pile;meanwhile,the nodular pile and the surrounding cemented soil can be considered as deformation compatibility during the loading process.The nodes on the nodular pile play an important role during the load transfer process,the shear strength of the interface between the cemented soil and the soil of the static drill rooted pile is larger than that of the bored pile. 展开更多
关键词 Static drill rooted nodular pile load transfer Bearing capacity ABAQUS Double stress dispersion system Three-dimensional modeling
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Optimization of the fully grouted rock bolts for load transfer enhancement 被引量:9
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作者 Ghadimi Mostafa Shahriar Korosh Jalalifar Hossein 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2015年第5期707-712,共6页
The purpose of this study is to investigate the role of bolt profile configuration in load transfer capacity between the bolt and grout.Therefore,five types of rock bolts are used with different profiles.The rock bolt... The purpose of this study is to investigate the role of bolt profile configuration in load transfer capacity between the bolt and grout.Therefore,five types of rock bolts are used with different profiles.The rock bolts are modeled by ANSYS software.Models show that profile rock bolt T_3 and T_ with load capacity 180 and 195 kN in the jointed rocks,are the optimum profiles.Finally,the performances of the selected profiles are examined in Tabas Coal Mine by FLAC software.There is good subscription between the results of numerical modeling and instrumentation reading such as tells tale,sonic extensometer and strain gauge rock bolt.According to the finding of this study,the proposed pattern of rock bolts,on 7 + 6 patterns per meter with 2 flexi bolt(4 m) for support gate road. 展开更多
关键词 Fully grouted rock bolts Numerical modeling load transfer Bolt profile
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Vertical bearing capacity of pile based on load transfer model 被引量:7
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作者 赵明华 杨明辉 邹新军 《Journal of Central South University of Technology》 EI 2005年第4期488-493,共6页
The load transfer analytical method is applied to study the bearing mechanism of piles with vertical load in this paper. According to the different hardening rules of soil or rock around the pile shaft, such as work-s... The load transfer analytical method is applied to study the bearing mechanism of piles with vertical load in this paper. According to the different hardening rules of soil or rock around the pile shaft, such as work-softening, ideal elasto-plastic and work-hardening, a universal tri-linear load transfer model is suggested for the development of side and tip resistance by various types of soil (rock) with the consideration of sediment at the bottom of the pile. Based on the model, a formula is derived for the relationship between the settlement and load on the pile top to determine the vertical bearing capacity, taking into account such factors as the characteristics of the stratum, the side resistance along the shaft, and tip resistance under the pile tip. A close agreement of the calculated results with the measured data from a field test pile lends confidence to the future application of the present approach in engineering practice. 展开更多
关键词 pile foundation load transfer model top settlement vertical bearing capacity
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A hardening load transfer function for rock bolts and its calibration using distributed fiber optic sensing 被引量:5
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作者 Assaf Klar Ori Nissim Itai Elkayam 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2023年第11期2816-2830,共15页
Confinement of rock bolts by the surrounding rock formation has long been recognized as a positive contributor to the pull-out behavior,yet only a few experimental works and analytical models have been reported,most o... Confinement of rock bolts by the surrounding rock formation has long been recognized as a positive contributor to the pull-out behavior,yet only a few experimental works and analytical models have been reported,most of which are based on the global rock bolt response evaluated in pull-out tests.This paper presents a laboratory experimental setup aiming to capture the rock formation effect,while using distributed fiber optic sensing to quantify the effect of the confinement and the reinforcement pull-out behavior on a more local level.It is shown that the behavior along the sample itself varies,with certain points exhibiting stress drops with crack formation.Some edge effects related to the kinematic freedom of the grout to dilate are also observed.Regardless,it was found that the mid-level response is quite similar to the average response along the sample.The ability to characterize the variation of the response along the sample is one of the many advantages high-resolution fiber optic sensing allows in such investigations.The paper also offers a plasticity-based hardening load transfer function,representing a"slice"of the anchor.The paper describes in detail the development of the model and the calibration/determination of its parameters.The suggested model captures well the coupled behavior in which the pull-out process leads to an increase in the confining stress due to dilative behavior. 展开更多
关键词 Rock bolts Distributed fiber optic sensing Pull-out tests load transfer function Hardening model
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Uplift behavior and load transfer mechanism of prestressed high-strength concrete piles 被引量:2
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作者 赖颖 金国芳 《Journal of Central South University》 SCIE EI CAS 2010年第1期136-141,共6页
Prestressed high-strength-concrete (PHC) tube-shaped pile is one of the recently used foundations for soft soil. The research on uplift resistance of PHC pile is helpful to the design of pile foundations. A field-scal... Prestressed high-strength-concrete (PHC) tube-shaped pile is one of the recently used foundations for soft soil. The research on uplift resistance of PHC pile is helpful to the design of pile foundations. A field-scale test program was conducted to study the uplift behavior and load transfer mechanism of PHC piles in soft soil. The pullout load tests were divided into two groups with different diameters, and there were three piles in each group. A detailed discussion of the axial load transfer and pile skin resistance distribution was also included. It is found from the tests that the uplift capacity increases with increasing the diameter of pile. When the diameter of piles increases from 500 to 600 mm, the uplift load is increased by 51.2%. According to the load-displacement (Q-S) curves, all the piles do not reach the ultimate state at the maximum load. The experimental results show that the piles still have uplift bearing capacity. 展开更多
关键词 prestresed high-strength concrete piles full-scale test uplift capacity load transfer mechanism
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Numerical and theoretical study of load transfer behavior during cascading pillar failure 被引量:1
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作者 Hangyu Dong Wancheng Zhu +2 位作者 Leilei Niu Chen Hou Xige Liu 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2024年第8期3014-3033,共20页
To further study the load transfer mechanism of roofemulti-pillarefloor system during cascading pillar failure(CPF),numerical simulation and theoretical analysis were carried out to study the three CPF modes according... To further study the load transfer mechanism of roofemulti-pillarefloor system during cascading pillar failure(CPF),numerical simulation and theoretical analysis were carried out to study the three CPF modes according to the previous experimental study on treble-pillar specimens,e.g.successive failure mode(SFM),domino failure mode(DFM)and compound failure mode(CFM).Based on the finite element code rock failure process analysis(RFPA^(2D)),numerical models of treble-pillar specimen with different mechanical properties were established to reproduce and verify the experimental results of the three CPF modes.Numerical results show that the elastic rebound of roofefloor system induced by pillar instability causes dynamic disturbance to adjacent pillars,resulting in sudden load increases and sudden jump displacement of adjacent pillars.The phenomena of load transfer in the roofemulti-pillarefloor system,as well as the induced accelerated damage behavior in adjacent pillars,were discovered and studied.In addition,based on the catastrophe theory and the proposed mechanical model of treble-pillar specimen edisc spring group system,a potential function that characterizes the evolution characteristics of roof emulti-pillarefloor system was established.The analytical expressions of sudden jump and energy release of treble-pillar specimenedisc spring group system of the three CPF modes were derived according to the potential function.The numerical and theoretical results show good agreement with the experimental results.This study further reveals the physical essence of load transfer during CPF of roof emulti-pillarefloor system,which provides references for mine design,construction and disaster prevention. 展开更多
关键词 Cascading pillar failure(CPF) load transfer Multi-pillar Numerical simulation
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Performance of composite foundations with different load transfer platforms and substratum stiffness over silty clay
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作者 ZHANG Shuming LIU Yan +3 位作者 YUAN Shengyang LIU Xianfeng JIANG Guanlu LIU Junyan 《Journal of Mountain Science》 SCIE CSCD 2024年第5期1761-1774,共14页
The semi-rigid pile-supported composite foundation is widely used in highway projects due to its effectiveness in increasing the bearing capacity and stability of foundations.It is crucial to understand the stress dis... The semi-rigid pile-supported composite foundation is widely used in highway projects due to its effectiveness in increasing the bearing capacity and stability of foundations.It is crucial to understand the stress distribution across the embankment width and the behaviour of unreinforced foundations.Thus,five centrifuge tests were conducted to examine the bearing and deformation behaviours of NPRS(Non-Connected Piled Raft Systems)and GRPS(GeosyntheticReinforced Pile-Supported systems)with varying substratum stiffness,then a comparative analysis was conducted on embankment settlement,pressures underneath the embankments,and axial forces along the piles.The results indicated that greater substratum stiffness correlates with reduced settlement and deformation at various depths.Deformation occurring 5 meters from the embankment toe includes settlement in NPRS and upward movement in GRPS.The potential sliding surface is primarily located within the embankment in NPRS,whereas it may extend through both the embankment and foundation in GRPS.The pile-soil stress ratio and efficiency in NPRS are higher than in GRPS across the embankment.The axial force borne by end-bearing piles is significantly greater than that by floating piles.As the buried depth increases,the axial force in GRPS initially rises then declines,whereas in NPRS,it remains relatively constant within a certain range before decreasing.This study aids in assessing the applicability of composite foundations in complex railway environments and provides a reference for procedural measures under similar conditions. 展开更多
关键词 Centrifuge modelling Composite foundation Failure mode load transfer platform SUBSTRATUM STIFFNESS Silty clay
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Intelligent Power Grid Load Transferring Based on Safe Action-Correction Reinforcement Learning
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作者 Fuju Zhou Li Li +3 位作者 Tengfei Jia Yongchang Yin Aixiang Shi Shengrong Xu 《Energy Engineering》 EI 2024年第6期1697-1711,共15页
When a line failure occurs in a power grid, a load transfer is implemented to reconfigure the network by changingthe states of tie-switches and load demands. Computation speed is one of the major performance indicator... When a line failure occurs in a power grid, a load transfer is implemented to reconfigure the network by changingthe states of tie-switches and load demands. Computation speed is one of the major performance indicators inpower grid load transfer, as a fast load transfer model can greatly reduce the economic loss of post-fault powergrids. In this study, a reinforcement learning method is developed based on a deep deterministic policy gradient.The tedious training process of the reinforcement learning model can be conducted offline, so the model showssatisfactory performance in real-time operation, indicating that it is suitable for fast load transfer. Consideringthat the reinforcement learning model performs poorly in satisfying safety constraints, a safe action-correctionframework is proposed to modify the learning model. In the framework, the action of load shedding is correctedaccording to sensitivity analysis results under a small discrete increment so as to match the constraints of line flowlimits. The results of case studies indicate that the proposed method is practical for fast and safe power grid loadtransfer. 展开更多
关键词 load transfer reinforcement learning electrical power grid safety constraints
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Optimal allocation method of electric/air braking force of high-speed train considering axle load transfer
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作者 Feng Guo Jing He 《High-Speed Railway》 2024年第2期77-84,共8页
Reasonable distribution of braking force is a factor for a smooth,safe,and comfortable braking of trains.A dynamic optimal allocation strategy of electric-air braking force is proposed in this paper to solve the probl... Reasonable distribution of braking force is a factor for a smooth,safe,and comfortable braking of trains.A dynamic optimal allocation strategy of electric-air braking force is proposed in this paper to solve the problem of the lack of consideration of adhesion difference of train wheelsets in the existing high-speed train electric-air braking force optimal allocation strategies.In this method,the braking strategy gives priority to the use of electric braking force.The force model of a single train in the braking process is analyzed to calculate the change of adhesion between the wheel and rail of each wheelset after axle load transfer,and then the adhesion of the train is estimated in real time.Next,with the goal of maximizing the total adhesion utilization ratio of trailer/motor vehicles,a linear programming distribution function is constructed.The proportional coefficient of adhesion utilization ratio of each train and the application upper limit of braking force in the function is updated according to the change time point of wheelset adhesion.Finally,the braking force is dynamically allocated.The simulation results of Matlab/Simulink show that the proposed algorithm not only uses the different adhesion limits of each trailer to reduce the total amount of braking force undertaken by the motor vehicle,but also considers the adhesion difference of each wheelset.The strategy can effectively reduce the risk and time of motor vehicles during the braking process and improve the stability of the train braking. 展开更多
关键词 Braking force allocation WHEELSET Dynamicity Axle load transfer total Adhesion utilization ratio
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Load Transfer Test of Post-Tensioned Anchorage Zone in Ultra High Performance Concrete 被引量:2
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作者 Jee-Sang Kim Changbin Joh Yoon-Seok Choi 《Engineering(科研)》 2015年第3期115-128,共14页
Researches on ultra-high performance concrete (UHPC) have been conducted worldwide owing to its outstanding durability and strength performances. The exploitation of the mechanical properties of UHPC will render it po... Researches on ultra-high performance concrete (UHPC) have been conducted worldwide owing to its outstanding durability and strength performances. The exploitation of the mechanical properties of UHPC will render it possible to achieve economic design through substantial reduction in the cross sectional dimensions and simplification in the reinforcement arrangement. This paper investigates experimentally the load transfer in the prestressed concrete anchorage zone. To provide distinctive features of UHPC compared to ordinary concrete, the cross sectional dimensions of the member were reduced and the stress distribution, deformation and cracking pattern of the PS anchorage zone were examined experimentally according to the degree of reinforcement of the members chosen. The distributions of the bursting stress, spalling stress and longitudinal edge stress in the specimens were observed according to the various types of reinforcement. All the specimens satisfied the load-bearing capacity criterion specified by the European ETAG-013 guidelines and their stress distributions were similar to those in the PS anchorages of post-tensioned members applying ordinary concrete. The cracks propagated longitudinally with lengths up to twice the cross sectional dimensions and their width was smaller than when applying ordinary concrete owing to the bridging effect of the steel fibers in UHPC. Accordingly, the exploitation of the high strength of UHPC enabled us to secure the resistance of the anchorage with no need for particular reinforcing devices. 展开更多
关键词 UHPC PS ANCHORAGE Zone load transfer TEST BURSTING FORCE SPLITTING FORCE
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Analytical method of load-transfer of single pile under expansive soil swelling 被引量:11
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作者 范臻辉 王永和 +1 位作者 肖宏彬 张春顺 《Journal of Central South University of Technology》 EI 2007年第4期575-579,共5页
The elastic differential equations of load-transfer of single pile either with applied loads on pile-top or only under the soil swelling were established,respectively,based on the theory of pile-soil interaction and t... The elastic differential equations of load-transfer of single pile either with applied loads on pile-top or only under the soil swelling were established,respectively,based on the theory of pile-soil interaction and the shear-deformation method.The derivation of analytic solution to load-transfer for single pile in expansive soil could hereby be obtained by means of superposition principle under expansive soils swelling.The comparison of two engineering examples was made to prove the credibility of the suggested method.The analyzed results show that this analytic solution can achieve high precision with few parameters required,indicating its' simplicity and practicability in engineering application.The employed method can contribute to determining the greatest tension along pile shaft resulting from expansive soils swelling and provide reliable bases for engineering design.The method can be employed to obtain various distributive curves of axial force,settlements and skin friction along the pile shaft with the changes of active depth,vertical movements of the surface and loads of pile-top. 展开更多
关键词 expansive soil PILE shear-deformation method load transfer
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Simplified approaches for predicting the nonlinear load-displacement response of single pile and pile groups in unsaturated soils
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作者 Xinting Cheng Sai K.Vanapalli 《Journal of Rock Mechanics and Geotechnical Engineering》 2025年第5期3107-3124,共18页
A simplified analytical approach is proposed for predicting the load-displacement behavior of single piles in unsaturated soils considering the contribution from the nonlinear shear strength and soil stiffness influen... A simplified analytical approach is proposed for predicting the load-displacement behavior of single piles in unsaturated soils considering the contribution from the nonlinear shear strength and soil stiffness influenced by matric suction.This approach includes a Modified Load Transfer Model(MLTM)that can predict the nonlinear relationships between the shear stress and pile-soil relative displacement along the pile shaft,and between the pile base resistance and base settlement.The proposed model is also extended for pile groups to incorporate the interaction effects between individual piles.The analytical approach is validated through a comparative analysis with the measurements from two single pile tests and one pile group test.In addition,a finite element analysis using 3D modeling is carried out to investigate the behavior of pile groups in various unsaturated conditions.This is accomplished with a user-defined subroutine that is written and implemented in ABAQUS to simulate the nonlinear mechanical behavior of unsaturated soils.The predictions derived from the proposed analytical and numerical methods compare well with the measurements of a published experimental study.The proposed methodologies have the potential to be applied in geotechnical engineering practice for the rational design of single piles and pile groups in unsaturated soils. 展开更多
关键词 Unsaturated soils Matric suction PILE Pile group load transfer model
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Interregional coal flow and its environmental loads transfer in Shanxi Province 被引量:2
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作者 XU Zengrang CHENG Shengkui ZHEN Lin 《Journal of Geographical Sciences》 SCIE CSCD 2011年第4期757-767,共11页
For the low price of coal and ineffective environmental management in mining area, China is in the dilemma of the increasing coal demand and the serious environmental issues in mining area. The more coal that is expor... For the low price of coal and ineffective environmental management in mining area, China is in the dilemma of the increasing coal demand and the serious environmental issues in mining area. The more coal that is exported from a region, the more heavily it suffers from the environmental impacts of coal export. In this paper, the temporal and spatial process of exporting coal from Shanxi to other provinces of China is traced between 1975 and 2005. The coal net export of Shanxi increased to 370.69 million tonnes in 2005, representing an average annual growth rate of 7.5% from 1975 to 2005. With the increase of the amount of coal export from Shanxi, the Environmental Loads Transfer (ELT) that import provinces input to mining areas of Shanxi are rising. Effective means of internalizing the environmental externality of ELT lie in: 1) setting up a coal sustainable development fund to restore environment of coal mining area; 2) enforcing environment tax, financial transfer payment and transferring advantage technology of pollution reduction to coal export area; and 3) reducing coal regional flow by reducing coal demand from power generation and heating and other industries. 展开更多
关键词 resource flow environmental impacts Environmental loads transfer (ELT) COAL SHANXI
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贯通裂隙注浆体浆岩双介质力学特性及传力机制
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作者 李振华 刘孟森 +3 位作者 杜锋 王文强 翟明磊 石建行 《煤炭科学技术》 北大核心 2026年第3期70-83,共14页
注浆是提高裂隙岩体稳定性的主要技术之一,而浆岩介质间的传力方式对注浆岩体的破坏具有重要影响。为研究贯通裂隙注浆体浆岩双介质传力承载机制,制备不同角度裂隙类岩石试样,注浆充填后开展单轴压缩试验,并结合离散元数值模拟方法探究... 注浆是提高裂隙岩体稳定性的主要技术之一,而浆岩介质间的传力方式对注浆岩体的破坏具有重要影响。为研究贯通裂隙注浆体浆岩双介质传力承载机制,制备不同角度裂隙类岩石试样,注浆充填后开展单轴压缩试验,并结合离散元数值模拟方法探究了裂隙倾角对试样力学特性、破坏模式、裂纹演化及传力方式的影响规律,从宏细观注浆体结构变化方面揭示了浆岩双介质的传力机制。试验和数值模拟结果表明:贯通裂隙注浆体强度小于完整试样,试样峰值强度随裂隙倾角增加先减小后增大,浆岩接触面处正应力逐渐降低,切应力逐渐增加,45°为试样力学特性转变的临界阈值,此时试样劣化程度最高,且浆岩接触面处正应力与切应力相等,45°~75°时试样峰前应变及峰后应变明显增加。完整试样呈两侧劈裂破坏,裂隙试样破坏模式受角度影响较大,0°~45°时,试样呈弯折型剪切-劈裂破坏,浆岩交界面处出现弯折,且裂纹主要集中在试样中上部;60°~90°时,试样拉剪裂纹逐渐趋于浆液两侧,呈拉剪破坏模式。裂隙倾角与浆岩双介质传力机制存在动态转变规律,以45°裂隙为临界角度,试样以浆液为中心由上下结构转变为左右结构,前者中部浆液强度较高,不利于裂纹向下部扩展,主体承载结构偏上;后者左右结构均可承载,且裂隙倾角越接近90°,试样左右两侧承载传力受浆液影响就越小,裂纹分布越均衡。研究成果可为复杂地质条件下注浆工程设计提供科学依据。 展开更多
关键词 贯通裂隙 浆岩双介质 传力机制 裂纹分布 破坏特征
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矿区深厚排土场沉降可调式风电基础动力响应数值分析
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作者 魏焕卫 宋明诚 +1 位作者 刘聪 陶凌霄 《山东建筑大学学报》 2026年第1期11-18,34,共9页
沉降可调式风电基础是针对软弱地基等特殊场地设计的一种新型基础形式。依托内蒙古某风电机组项目,建立深厚软弱土层沉降可调式风电基础的三维有限元模型,探究风机基础在动荷载作用下的响应及荷载传递模式。结果表明:沉降可调式风电基... 沉降可调式风电基础是针对软弱地基等特殊场地设计的一种新型基础形式。依托内蒙古某风电机组项目,建立深厚软弱土层沉降可调式风电基础的三维有限元模型,探究风机基础在动荷载作用下的响应及荷载传递模式。结果表明:沉降可调式风电基础与土体形成的类似复合地基,可提升区域内土体的整体刚度,在风荷载作用下形成“碗状”沉降,灌注桩的荷载传递对物理力学性质较差土层的固结沉降作用明显;基础最大沉降区域位于基础中心偏背风侧,基底土边缘压力大于中心压力,土压力最小值位于桩身顶部内侧土体区域;基础底部荷载主要由桩土共同承担,在循环往复中保持动态平衡,桩土分担比随荷载作用时间增加,加载结束时达到0.438。 展开更多
关键词 沉降可调式风电基础 深厚软弱土层 随机风荷载 动力响应 荷载传递
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智能CFRP筋应变传递试验及有限元分析 被引量:1
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作者 邓朗妮 牛家宝 +3 位作者 杨洲 邹易清 石伟 钟卿瑜 《铁道科学与工程学报》 北大核心 2026年第1期236-248,共13页
作为大跨度桥梁的主要承重构件,拉索会随着时间的推移出现老化损伤。因此,对在役桥梁拉索进行健康监测对保障桥梁安全至关重要。本研究针对传统CFRP(carbon fiber reinforced polymer)拉索索力监测技术量程不足的问题,提出基于长标距FB... 作为大跨度桥梁的主要承重构件,拉索会随着时间的推移出现老化损伤。因此,对在役桥梁拉索进行健康监测对保障桥梁安全至关重要。本研究针对传统CFRP(carbon fiber reinforced polymer)拉索索力监测技术量程不足的问题,提出基于长标距FBG传感技术的螺旋缠绕式智能CFRP筋结构优化方法。基于复合材料减滞模型理论,构建应变传递解析方程,验证智能CFRP筋通过降低应变传递率实现监测量程提升的理论可行性。采用参数化有限元模拟结合试验验证的方法,定量分析螺旋角度、标距比、胶粘层长度及胶粘剂类型等设计参数对应变传递率的影响规律。在对智能CFRP筋进行有限元拉伸模拟的同时,截取不同角度下智能CFRP筋的表面应变图,根据不同角度下的表面应变图,引入修正系数对试验实测智能CFRP筋表面应变进行修正。研究结果表明:应变传递率与螺旋角度、标距比成反比,其中螺旋角度影响最为显著,当螺旋角度从15°增加到35°时,平均应变传递率从81.42%降低到44.14%;标距比次之,当标距比从1增加到3时,平均应变传递率从57.61%降低到44.89%;胶粘层参数对智能CFRP筋的应变传递率影响较小。引入修正系数对试验实测智能CFRP筋表面应变进行修正,修正后的智能CFRP筋应变传递率试验值和模拟值最小误差为0.29%。研究结果为智能CFRP筋的结构设计提供了理论依据。 展开更多
关键词 应变传递率 静载拉伸试验 有限元分析 设计参数 智能CFRP筋
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基于迁移学习的轴承负荷与变位关系建模研究
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作者 邓义斌 包鹏 朱汉华 《中国舰船研究》 北大核心 2026年第1期314-320,共7页
[目的]为深入研究基于迁移学习的轴承负荷与变位关系的建模动态过程,[方法]以某多支撑轴系作为研究对象,分析建模关键要素,并针对迁移知识准确性、迁移策略适配性及目标数据样本准确性等3个因素来设计正交试验方案,开展基于迁移学习的... [目的]为深入研究基于迁移学习的轴承负荷与变位关系的建模动态过程,[方法]以某多支撑轴系作为研究对象,分析建模关键要素,并针对迁移知识准确性、迁移策略适配性及目标数据样本准确性等3个因素来设计正交试验方案,开展基于迁移学习的建模分析。[结果]结果表明,因素重要性排序为:迁移知识准确性>迁移策略适配性>目标数据样本准确性,在针对迁移学习的建模过程中,应优先考虑迁移知识准确性和迁移策略适配性以快速适配目标域;当目标数据样本准确性在4%以内时,对建模的影响不显著。[结论]研究成果为工程实践中轴承负荷与变位关系的模型构建提供了理论支撑,有助于降低试验成本并提高建模效率。 展开更多
关键词 轴系 轴系校中 迁移学习 轴承负荷 轴承变位 正交试验 建模精度
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双LCC双负载无线电能传输特性研究及参数优化
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作者 王允建 曹晨伟 +2 位作者 李世浩 孙星 张昌杰 《电子器件》 2026年第1期56-62,共7页
为了提高双负载WPT系统的传输性能,提出了双恒流工作模式下的LCC-LCC型双负载WPT系统,分析了该系统的传输功率和传输效率及其接收回路间互感耦合对传输性能的影响。同时针对该系统参数较多、匹配难度大难以兼顾高输出功率和高传输效率... 为了提高双负载WPT系统的传输性能,提出了双恒流工作模式下的LCC-LCC型双负载WPT系统,分析了该系统的传输功率和传输效率及其接收回路间互感耦合对传输性能的影响。同时针对该系统参数较多、匹配难度大难以兼顾高输出功率和高传输效率的问题,提出了系统参数的粒子群(PSO)优化并进行了仿真验证;仿真结果表明优化系统参数可以兼顾98.42%的传输效率,使其总输出功率较优化前提高3倍多。最后,对该系统两输出端双恒流特性和两接收回路相互干扰特性进行研究,结果验证了所提系统的有效性。 展开更多
关键词 双负载无线电能传输 LCC-LCC补偿拓扑 参数优化 双恒流工作模式
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基于富氧转化的天然气蒸汽重整工艺开发与能效评价
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作者 王东亮 严富耀 +3 位作者 沈文朋 齐波 范学英 宋伟 《石油学报(石油加工)》 北大核心 2026年第2期480-488,共9页
传统天然气蒸汽重整制合成氨过程中,一段炉中强吸热反应造成燃料消耗大,二段炉中通入过量空气导致系统氮气过剩。针对上述问题,提出一种基于富氧转化的天然气蒸汽重整新工艺,通过优化两段炉之间的甲烷转化负荷分配,在二段炉引入富氧空... 传统天然气蒸汽重整制合成氨过程中,一段炉中强吸热反应造成燃料消耗大,二段炉中通入过量空气导致系统氮气过剩。针对上述问题,提出一种基于富氧转化的天然气蒸汽重整新工艺,通过优化两段炉之间的甲烷转化负荷分配,在二段炉引入富氧空气转化剩余甲烷。结果表明:与传统天然气蒸汽重整工艺相比,基于富氧转化新工艺使一段炉出口甲烷体积分数由10%提升至30%,相应二段炉氧气体积分数提高至28%转化剩余甲烷,一段炉热负荷从62.99 MW降至35.02 MW,燃料天然气消耗量由186.54 Nm^(3)/t NH_(3)降至51.49 Nm^(3)/t NH_(3),直接CO_(2)排放量从425.56 kg/t NH_(3)降至162.13 kg/t NH_(3),能量效率由74.3%提升至82.6%。基于富氧转化的天然气蒸汽重整新工艺在显著提高能效的同时可实现碳减排,为合成氨行业绿色转型提供可行的技术路径。 展开更多
关键词 合成氨 天然气重整 富氧转化 负荷转移 节能降碳
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