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A grouting simulation method for quick-setting slurry in karst conduit:The sequential flow and solidification method 被引量:6
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作者 Zhenhao Xu Dongdong Pan +3 位作者 Shucai Li Yichi Zhang Zehua Bu Jie Liu 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2022年第2期423-435,共13页
It is difficult to temporally and spatially track and characterize the slurry viscosity in flowing water during grouting simulation.In this study,a sequential flow and solidification(SFS)method considering the spatial... It is difficult to temporally and spatially track and characterize the slurry viscosity in flowing water during grouting simulation.In this study,a sequential flow and solidification(SFS)method considering the spatial-temporal evolution of slurry viscosity in flowing water in karst conduit is proposed.First,a time-dependent model for the threshold function of slurry viscosity is established.During the grouting process,the spatial-temporal evolution of slurry viscosity is revealed by tracking the diffusion behavior of the slurry injected at different times.This method is capable of describing the gradual solidification process of the slurry during grouting.Furthermore,a physical model of grouting in a karst conduit is developed.Second,the effectiveness of the SFS method in grouting simulation is verified by the experiment of grouting conduit in flowing water.The SFS method enables real-time monitoring of fluid velocity and pressure during grouting in flowing water and provides a feasible calculation method for revealing the grouting plugging mechanism in complex karst conduits at different engineering scales.In addition,it can be used to guide the design of grouting tests in flowing water,improve cost efficiency,and provide theoretical basis for optimizing grouting design and slurry selection. 展开更多
关键词 Karst conduit Sequential flow and solidification(SFS) Quick-setting slurry grouting simulation method grouting in flowing water
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Probabilistic limit state design methodof the axial resistance of post grouting pile 被引量:3
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作者 Zhang Zhitong Gong Weiming +3 位作者 Xie Jiang Dai Guoliang Su Wei Qiao Jinfei 《Journal of Southeast University(English Edition)》 EI CAS 2022年第2期166-170,共5页
The reliability of post grouting pile axial resistance was studied by proposing a design method for its probabilistic limit state,which is represented by the partial coefficients of load,end,and side resistance.The hy... The reliability of post grouting pile axial resistance was studied by proposing a design method for its probabilistic limit state,which is represented by the partial coefficients of load,end,and side resistance.The hyperbolic,modified hyperbolic,and polynomial models were employed to predict the ultimate bearing capacity of test piles that were not loaded to damage in field tests.The results were used for the calculation and calibration of the reliability index.The reliability of the probabilistic limit state design method was verified by an engineering case.The results show that the prediction results obtained from the modified hyperbolic model are closest to those obtained through the static load test.The proposed corresponding values of total,side,and end resistance partial coefficients are 1.84,1.66,and 2.73 when the dead and live load partial coefficients are taken as 1.1 and 1.4,respectively.Meanwhile,the corresponding partial coefficients of total,side,and end resistance are 1.70,1.56,and 2.34 when the dead and live load partial coefficients are taken as 1.2 and 1.4,respectively. 展开更多
关键词 probabilistic limit state design method reliability theory post grouting pile total resistance partial coefficient
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Research on Sleeve Grouting Density Detection Based on the Impact Echo Method 被引量:2
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作者 Pu Zhang Yingjun Li +5 位作者 Xinyu Zhu Shizhan Xu Pinwu Guan Wei Liu Yanwei Guo Haibo Wang 《Structural Durability & Health Monitoring》 EI 2024年第2期143-159,共17页
Grouting defects are an inherent challenge in construction practices,exerting a considerable impact on the operational structural integrity of connections.This investigation employed the impact-echo technique for the ... Grouting defects are an inherent challenge in construction practices,exerting a considerable impact on the operational structural integrity of connections.This investigation employed the impact-echo technique for the detection of grouting anomalies within connections,enhancing its precision through the integration of wavelet packet energy principles for damage identification purposes.A series of grouting completeness assessments were meticulously conducted,taking into account variables such as the divergent material properties of the sleeves and the configuration of adjacent reinforcement.The findings revealed that:(i)the energy distribution for the highstrength concrete cohort predominantly occupied the frequency bands 42,44,45,and 47,whereas for other groups,it was concentrated within the 37 to 40 frequency band;(ii)the delineation of empty sleeves was effectively discernible by examining the wavelet packet energy ratios across the spectrum of frequencies,albeit distinguishing between sleeves with 50%and full grouting density proved challenging;and(iii)the wavelet packet energy analysis yielded variable detection outcomes contingent on the material attributes of the sleeves,demonstrating heightened sensitivity when applied to ultrahigh-performance concrete matrices and GFRP-reinforced steel bars. 展开更多
关键词 Prefabricated building steel grouting sleeve impact echo method wavelet packet energy grouted defect
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Numerical Simulation of Surrounding Rock Deformation and Grouting Reinforcement of Cross-Fault Tunnel under Different Excavation Methods 被引量:1
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作者 Duan Zhu Zhende Zhu +2 位作者 Cong Zhang LunDai Baotian Wang 《Computer Modeling in Engineering & Sciences》 SCIE EI 2024年第3期2445-2470,共26页
Tunnel construction is susceptible to accidents such as loosening, deformation, collapse, and water inrush, especiallyunder complex geological conditions like dense fault areas. These accidents can cause instability a... Tunnel construction is susceptible to accidents such as loosening, deformation, collapse, and water inrush, especiallyunder complex geological conditions like dense fault areas. These accidents can cause instability and damageto the tunnel. As a result, it is essential to conduct research on tunnel construction and grouting reinforcementtechnology in fault fracture zones to address these issues and ensure the safety of tunnel excavation projects. Thisstudy utilized the Xianglushan cross-fault tunnel to conduct a comprehensive analysis on the construction, support,and reinforcement of a tunnel crossing a fault fracture zone using the three-dimensional finite element numericalmethod. The study yielded the following research conclusions: The excavation conditions of the cross-fault tunnelarray were analyzed to determine the optimal construction method for excavation while controlling deformationand stress in the surrounding rock. The middle partition method (CD method) was found to be the most suitable.Additionally, the effects of advanced reinforcement grouting on the cross-fault fracture zone tunnel were studied,and the optimal combination of grouting reinforcement range (140°) and grouting thickness (1m) was determined.The stress and deformation data obtained fromon-site monitoring of the surrounding rock was slightly lower thanthe numerical simulation results. However, the change trend of both sets of data was found to be consistent. Theseresearch findings provide technical analysis and data support for the construction and design of cross-fault tunnels. 展开更多
关键词 Cross-fault tunnel finite element analysis excavation methods surrounding rock deformation grouting reinforcement
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Grouting Flow in Deep Fractured Rock:A State-of-the-Art Review of Theory and Practice
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作者 Xuewei Liu Jinze Sun +4 位作者 Bin Liu Yongshui Kang Yongchao Tian Yuan Zhou Quansheng Liu 《Fluid Dynamics & Materials Processing》 2025年第8期2047-2073,共27页
Grouting is a widely applied technique for reinforcing fractured zones in deep soft rock tunnels.By infiltrating rock fissures,slurry materials enhance structural integrity and improve the overall stability of the sur... Grouting is a widely applied technique for reinforcing fractured zones in deep soft rock tunnels.By infiltrating rock fissures,slurry materials enhance structural integrity and improve the overall stability of the surrounding rock.The performance of grouting is primarily governed by the flow behavior and diffusion extent of the slurry.This review considers recent advances in the theory and methodology of slurry flow and diffusion in fractured rock.It examines commonly used grout materials,including cement-based,chemical,and composite formulations,each offering distinct advantages for specific geological conditions.Themechanisms of reinforcement vary significantly across materials,requiring tailored application strategies.The rheological properties of grouting slurries,particularly cement-based types,have been widely modeled using classical constitutive approaches.However,the influence of time-and space-dependent viscosity evolution on slurry behavior remains underexplored.Experimental studies have provided valuable insights into slurry diffusion,yet further research is needed to capture real-time behavior under multi-scale and multi-physics coupling conditions.Similarly,current numerical simulations are largely limited to twoand three-dimensional models of single-fracture flow.These models often neglect the complexity of fracture networks and geological heterogeneity,highlighting a need for more realistic and integrated simulation frameworks.Future research should focus on:(1)fine-scale modeling of slurry hydration and mechanical reinforcement processes;(2)cross-scale analysis of slurry flow under coupled thermal,hydraulic,andmechanical fields;and(3)development of realtime,three-dimensional dynamic simulation tools to capture the full grouting process.These efforts will strengthen the theoretical foundation and practical effectiveness of grouting in complex underground environments. 展开更多
关键词 grouting material rheological characterization diffusion behavior numerical simulation method
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Pressured Grouting Method (PGM) in Pile Engineering
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作者 吴兴序 于志强 王旭 《Journal of Southwest Jiaotong University(English Edition)》 2002年第2期194-201,共8页
Application of pressured grouting method (PGM) in pile engineering can tackle problems encountered during construction of bored piles. Bearing capacity of piles can be increased through compaction of subsoils around p... Application of pressured grouting method (PGM) in pile engineering can tackle problems encountered during construction of bored piles. Bearing capacity of piles can be increased through compaction of subsoils around piles. This paper reports research efforts of this technique by the pile research team in Southwest Jiaotong University in last decade with respect to the construction process, test findings, and primary research conclusions. The social-economical benefits of this method and application market in pile engineering are also analyzed. 展开更多
关键词 pressured grouting method pile foundation RESEARCH
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Grouting Method of Special Stratum in Foundation Grouting of Water Conservancy Project
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作者 LIUChuan 《外文科技期刊数据库(文摘版)工程技术》 2022年第3期147-150,共4页
With the gradual acceleration of China's social and economic development, the situation of water conservancy and hydropower projects in China has also got better and faster development. Especially, grouting techno... With the gradual acceleration of China's social and economic development, the situation of water conservancy and hydropower projects in China has also got better and faster development. Especially, grouting technology in water conservancy and hydropower projects has become a technical measure often used in foundation construction in water conservancy and hydropower projects. For some special strata, such as extra-large leakage channels, large grout-sucking strata, karst areas, water plugging due to water inrush, etc., the grouting methods and techniques used are different. At present, in the development process of water conservancy and hydropower projects, most of them need to use relevant grouting methods. This paper will explore the grouting method of special strata in foundation grouting in water conservancy and hydropower projects. 展开更多
关键词 water conservancy and hydropower engineering grouting of foundation special strata grouting method
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Study on the Application of Grouting Method in Bridge Tunnel Construction Technology
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作者 KOUNaijie XIAOQian 《外文科技期刊数据库(文摘版)工程技术》 2022年第9期191-194,共4页
As a part of the highway, the bridge tunnel can not only adapt the highway to various natural environments, but also give full play to its value. It not only strengthens the economic and cultural exchanges in many pla... As a part of the highway, the bridge tunnel can not only adapt the highway to various natural environments, but also give full play to its value. It not only strengthens the economic and cultural exchanges in many places, but also realizes the national economic and trade exchanges. It is an important livelihood project related to Chinas national strength. With the increase of the service life of the project, pavement cracks will appear on the highway, and cracks will appear between the abutment and the bridge deck, and cracks will also appear on the tunnel body when the tunnel is eroded by the mountain rock load and water flow. For these diseases, grouting method can be used to repair the cracks which not only have simple construction and good repair effect, but also can reduce the cost of engineering maintenance. 展开更多
关键词 grouting method BRIDGES construction technique
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Strength of copolymer grouting material based on orthogonal experiment 被引量:13
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作者 陈永贵 叶为民 张可能 《Journal of Central South University》 SCIE EI CAS 2009年第1期143-148,共6页
Using the orthogonal experimental design method involving three factors and three levels, the flexural strength and the compressive strength of copolymer grouting material were studied with different compositions of w... Using the orthogonal experimental design method involving three factors and three levels, the flexural strength and the compressive strength of copolymer grouting material were studied with different compositions of water-cement ratio (mass fraction of water to cement), epoxy resin content, and waterborne epoxy curing agent content. By orthogonal range and variance analysis, the orders of three factors to influence the strength, the significance levels of different factors, and the optimized compound ratio scheme of copolymer grouting material mixture at different curing ages were determined. An empirical relationship among the strength of copolymer grouting material, the water-cement ratio, the epoxy resin content, and the waterborne epoxy curing agent content was established by multivariate regression analysis. The results indicate that water-cement ratio is the most principal and significant influencing factor on the strength. Epoxy resin content and waterbome epoxy curing agent content also have a significant influence on the strength. But epoxy resin content has a greater influence on the 7-day and 28-day flexural strength, and waterborne epoxy curing agent content has a greater influence on the 3-day flexural strength and the compressive strength. The copolymer grouting material with water-cement ratio of 0.4, epoxy resin content of 8% (mass fraction) and waterbome epoxy curing agent content of 2% (mass fraction) is the best one for repairing of cement concrete pavement. The flexural strength and the compressive strength have good correlation, and the ratio of compressive strength to flexural strength is between 1.0 and 3.3. 展开更多
关键词 STRENGTH COPOLYMER chemical grouting orthogonal method regression model
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HIGH ACCURACY FINITE VOLUME ELEMENT METHOD FOR TWO-POINT BOUNDARY VALUE PROBLEM OF SECOND ORDER ORDINARY DIFFERENTIAL EQUATIONS 被引量:4
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作者 Wang Tongke(王同科) 《Numerical Mathematics A Journal of Chinese Universities(English Series)》 SCIE 2002年第2期213-225,共13页
In this paper, a high accuracy finite volume element method is presented for two-point boundary value problem of second order ordinary differential equation, which differs from the high order generalized difference me... In this paper, a high accuracy finite volume element method is presented for two-point boundary value problem of second order ordinary differential equation, which differs from the high order generalized difference methods. It is proved that the method has optimal order error estimate O(h3) in H1 norm. Finally, two examples show that the method is effective. 展开更多
关键词 SECOND order ordinary differential equation two-point boundary value problem high accuracy finite volume element method error estimate.
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Penetration grouting reinforcement of sandy gravel 被引量:3
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作者 杨坪 彭振斌 +2 位作者 唐益群 彭文祥 何忠明 《Journal of Central South University of Technology》 SCIE EI CAS 2008年第2期280-284,共5页
To study the relationship between grouting effect and grouting factors, three factors (seven parameters) directionless pressure and small cycle grouting model experiment on sandy gravel was done, which was designed ... To study the relationship between grouting effect and grouting factors, three factors (seven parameters) directionless pressure and small cycle grouting model experiment on sandy gravel was done, which was designed according to uniform design method. And regressing was applied to analysis of the test data. The two models test results indicate that when the diffusing radius of grout changes from 26 to 51 cm, the grouted sandy gravel compressing strength changes from 2.13 to 12.30 MPa; the relationship between diffusing radius(R) and water cement ratio(m), permeability coefficient(k), grouting pressure(p), grouting time(t) is R=19.953m^0.121k^0.429p^0.412t^0.437; the relationship between compressing strength(P) and porosity(n), water cement ratio, grouting pressure, grouting time is P =0.984n^0.517m6-1.488p^0.118t^0.031. So the porosity of sandy gravel, the permeability coefficient of sandy gravel, grouting pressure, grouting time, water cement ratio are main factors to influence the grouting effect. The grouting pressure is the main factor to influence grouting diffusing radius, and the water cement ratio is the main factor to influence grouted sandy gravel compressing strength. 展开更多
关键词 penetration grouting uniform design method sandy gravel
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Grouting theories and technologies for the reinforcement of fractured rocks surrounding deep roadways 被引量:6
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作者 Hongpu Kang Wenzhou Li +1 位作者 Fuqiang Gao Jianwei Yang 《Deep Underground Science and Engineering》 2023年第1期2-19,共18页
Grouting is an effective method to improve the integrity and stability of fractured rocks that surround deep roadways.After years of research and practice,various theories and a complete set of grouting technologies f... Grouting is an effective method to improve the integrity and stability of fractured rocks that surround deep roadways.After years of research and practice,various theories and a complete set of grouting technologies for deep roadways with fractured rocks have been developed and are widely applied in Chinese coal mining production.This paper systematically summarizes and analyzes the research results concerning the theory,design,materials,processes,and equipment for the grouting and reinforcement of fractured rocks surrounding deep roadways.Specifically,in terms of grouting methods,pregrouting,groutingwhile-excavation,and postgrouting methods are explored;in terms of grouting theory,backfill grouting,compaction grouting,infiltration grouting,and fracture grouting theories are studied.In addition,this paper also studies grouting borehole arrangement,water-cement ratio,grouting pressure,grouting volume,grout diffusion radius,and other grouting parameters and their determination methods.On this basis,this paper explores the physical and mechanical properties of organic and organic-inorganic composite grouting materials,and assess grouting reinforcement quality testing methods and instruments.Taken as the field cases,the application of pregrouting in front of heading faces,groutingwhile-excavation,and postgrouting in the Kouzidong coal mine are then introduced,and the effects of the grouting reinforcements are evaluated.This paper proposes a development direction for grouting technology based on problems existing in the grouting reinforcement of fractured rocks surrounding deep roadways. 展开更多
关键词 deep roadways development direction field study fractured rocks grouting materials grouting methods high-pressure grouting
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Numerical investigation of geostress influence on the grouting reinforcement effectiveness of tunnel surrounding rock mass in fault fracture zones 被引量:2
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作者 Xiangyu Xu Zhijun Wu +3 位作者 Lei Weng Zhaofei Chu Quansheng Liu Yuan Zhou 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2024年第1期81-101,共21页
Grouting is a widely used approach to reinforce broken surrounding rock mass during the construction of underground tunnels in fault fracture zones,and its reinforcement effectiveness is highly affected by geostress.I... Grouting is a widely used approach to reinforce broken surrounding rock mass during the construction of underground tunnels in fault fracture zones,and its reinforcement effectiveness is highly affected by geostress.In this study,a numerical manifold method(NMM)based simulator has been developed to examine the impact of geostress conditions on grouting reinforcement during tunnel excavation.To develop this simulator,a detection technique for identifying slurry migration channels and an improved fluid-solid coupling(FeS)framework,which considers the influence of fracture properties and geostress states,is developed and incorporated into a zero-thickness cohesive element(ZE)based NMM(Co-NMM)for simulating tunnel excavation.Additionally,to simulate coagulation of injected slurry,a bonding repair algorithm is further proposed based on the ZE model.To verify the accuracy of the proposed simulator,a series of simulations about slurry migration in single fractures and fracture networks are numerically reproduced,and the results align well with analytical and laboratory test results.Furthermore,these numerical results show that neglecting the influence of geostress condition can lead to a serious over-estimation of slurry migration range and reinforcement effectiveness.After validations,a series of simulations about tunnel grouting reinforcement and tunnel excavation in fault fracture zones with varying fracture densities under different geostress conditions are conducted.Based on these simula-tions,the influence of geostress conditions and the optimization of grouting schemes are discussed. 展开更多
关键词 Numerical manifold method(NMM) grouting reinforcement Geostress condition Fault fracture zone Tunnel excavation
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Analysis profile of the fully grouted rock bolt in jointed rock using analytical and numerical methods 被引量:8
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作者 Ghadimi Mostafa Shahriar Kourosh Jalalifar Hossein 《International Journal of Mining Science and Technology》 SCIE EI 2014年第5期609-615,共7页
The purpose of this study was to investigate the effect of bolt profile on load transfer mechanism of fully grouted bolts in jointed rocks using analytical and numerical methods. Based on the analytical method with de... The purpose of this study was to investigate the effect of bolt profile on load transfer mechanism of fully grouted bolts in jointed rocks using analytical and numerical methods. Based on the analytical method with development of methods, a new model is presented. To validate the analytical model, five different profiles modeled by ANSYS software. The profile of rock bolts T3 and T4with load transfer capacity,respectively 180 and 195 kN in the jointed rocks was selected as the optimum profiles. Finally, the selected profiles were examined in Tabas Coal Mine. FLAC analysis indicates that patterns 6+7 with2 NO flexi bolt 4 m better than other patterns within the faulted zone. 展开更多
关键词 Fully grouted bolt Load transfer mechanism Jointed rocks Analytical and numerical methods
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A Two-Point Boundary Value Problem by Using a Mixed Finite Element Method
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作者 Pedro Pablo Cárdenas Alzate José Rodrigo González Granada 《Applied Mathematics》 2015年第12期1996-2003,共8页
This paper describes a numerical solution for a two-point boundary value problem. It includes an algorithm for discretization by mixed finite element method. The discrete scheme allows the utilization a finite element... This paper describes a numerical solution for a two-point boundary value problem. It includes an algorithm for discretization by mixed finite element method. The discrete scheme allows the utilization a finite element method based on piecewise linear approximating functions and we also use the barycentric quadrature rule to compute the stiffness matrix and the L2-norm. 展开更多
关键词 two-point BVP Galerkin’s method Non-Symmetric PROBLEM
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Stochastic Programming for Hub Energy Management Considering Uncertainty Using Two-Point Estimate Method and Optimization Algorithm
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作者 Ali S.Alghamdi Mohana Alanazi +4 位作者 Abdulaziz Alanazi Yazeed Qasaymeh Muhammad Zubair Ahmed Bilal Awan M.G.B.Ashiq 《Computer Modeling in Engineering & Sciences》 SCIE EI 2023年第12期2163-2192,共30页
To maximize energy profit with the participation of electricity,natural gas,and district heating networks in the day-ahead market,stochastic scheduling of energy hubs taking into account the uncertainty of photovoltai... To maximize energy profit with the participation of electricity,natural gas,and district heating networks in the day-ahead market,stochastic scheduling of energy hubs taking into account the uncertainty of photovoltaic and wind resources,has been carried out.This has been done using a new meta-heuristic algorithm,improved artificial rabbits optimization(IARO).In this study,the uncertainty of solar and wind energy sources is modeled using Hang’s two-point estimating method(TPEM).The IARO algorithm is applied to calculate the best capacity of hub energy equipment,such as solar and wind renewable energy sources,combined heat and power(CHP)systems,steamboilers,energy storage,and electric cars in the day-aheadmarket.The standard ARO algorithmis developed to mimic the foraging behavior of rabbits,and in this work,the algorithm’s effectiveness in avoiding premature convergence is improved by using the dystudynamic inertia weight technique.The proposed IARO-based scheduling framework’s performance is evaluated against that of traditional ARO,particle swarm optimization(PSO),and salp swarm algorithm(SSA).The findings show that,in comparison to previous approaches,the suggested meta-heuristic scheduling framework based on the IARO has increased energy profit in day-ahead electricity,gas,and heating markets by satisfying the operational and energy hub limitations.Additionally,the results show that TPEM approach dependability consideration decreased hub energy’s profit by 8.995%as compared to deterministic planning. 展开更多
关键词 Stochastic energy hub scheduling energy profit UNCERTAINTY Hong’s two-point estimate method improved artificial rabbits optimization
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纳米材料改性硅酸盐水泥基注浆材料试验研究 被引量:2
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作者 王刚 蔡晋 《河南理工大学学报(自然科学版)》 北大核心 2026年第1期197-204,共8页
目的 针对岩体微裂隙注浆加固防渗工程出现的问题,开展纳米材料改性硅酸盐水泥基注浆材料试验研究。方法 通过田口-灰色关联优化分析方法和正交试验研制一种纳米材料改性的硅酸盐水泥基注浆材料,并基于田口方法的信噪比分析研究纳米碳... 目的 针对岩体微裂隙注浆加固防渗工程出现的问题,开展纳米材料改性硅酸盐水泥基注浆材料试验研究。方法 通过田口-灰色关联优化分析方法和正交试验研制一种纳米材料改性的硅酸盐水泥基注浆材料,并基于田口方法的信噪比分析研究纳米碳酸钙掺量、聚羧酸减水剂掺量、超细粉煤灰掺量和水灰比对注浆材料的黏度、析水率、凝结时间和结石体强度等基本性能的影响规律。结果 正交试验结果表明:通过田口-灰色关联优化分析得出的最优配比下的注浆材料具有较好的流动性能和力学性能,保证了注浆材料的可注性和加固效果。信噪比分析表明:纳米碳酸钙对注浆材料流动性能影响较大,随着纳米碳酸钙掺量增加,注浆材料黏度升高,析水率逐渐降低,结石体28 d强度先增加后减小;聚羧酸减水剂有助于降低注浆材料黏度,但会导致凝结时间延长、析水率提高,对结石体28 d强度影响较小;超细粉煤灰有助于降低注浆材料黏度,但对缩短凝结时间和提高结石体28 d强度不利;水灰比对析水率、凝结时间和结石体28 d强度的影响最为显著,随着水灰比增加,注浆材料的流动性能改善,但会导致凝结时间延长、结石体28 d强度降低。结论 纳米材料改性硅酸盐水泥基注浆材料具有较好的流动性、稳定性和力学性能,研究结果可为实际注浆工程的材料选择提供理论和试验依据。 展开更多
关键词 注浆材料 正交试验 田口方法 纳米碳酸钙 微裂隙
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注浆工艺对盾构隧道底部注浆抬升影响对比分析
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作者 黄大维 樊潇宇 +1 位作者 徐长节 耿大新 《华中科技大学学报(自然科学版)》 北大核心 2026年第2期125-131,139,共8页
为优化盾构隧道底部注浆抬升效果,探明不同注浆工艺(直接法注浆、囊袋法注浆)注浆对盾构隧道底部注浆抬升的效果,开展了盾构隧道底部注浆抬升试验,对比分析了两种不同注浆工艺注浆引起的地层附加土压力变化、隧道变形及位移和浆液扩散模... 为优化盾构隧道底部注浆抬升效果,探明不同注浆工艺(直接法注浆、囊袋法注浆)注浆对盾构隧道底部注浆抬升的效果,开展了盾构隧道底部注浆抬升试验,对比分析了两种不同注浆工艺注浆引起的地层附加土压力变化、隧道变形及位移和浆液扩散模式.试验结果表明:相比于直接法注浆,囊袋法注浆能够产生更大的地层附加土压力,从而导致隧道底部的挠曲变形变化更大;直接法注浆浆液扩散模式具有不确定性,难以确保注浆产生的附加应力满足隧道抬升需求;囊袋法注浆具有约束浆液且将其与土体隔离的作用,浆液在囊袋中发生挤密扩散,产生的地层附加土压力更大且均匀集中.注浆导致地层发生“土拱”效应,注浆区域两侧局部附加土压力出现小幅度减小.建议采用囊袋法注浆整治隧道纵向不均匀沉降,且注浆过程中宜在囊袋两侧同步进行少量补偿注浆. 展开更多
关键词 盾构施工 盾构隧道 附加土压力 囊袋法注浆 注浆工艺
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囊袋注浆法抬升盾构隧道试验
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作者 黄大维 施良晨 +3 位作者 罗文俊 闫江 樊潇宇 曾小涛 《隧道建设(中英文)》 北大核心 2026年第1期80-89,共10页
为解决注浆抬升技术整治地铁盾构隧道不均匀沉降效果不佳的问题,采用囊袋注浆方法进行盾构隧道抬升效果试验研究。先将浆液注入至隧道底部正下方的囊袋中,再对所抬升的隧道周围附加土压力与隧道变形进行量测。试验结果表明:1)采用新式... 为解决注浆抬升技术整治地铁盾构隧道不均匀沉降效果不佳的问题,采用囊袋注浆方法进行盾构隧道抬升效果试验研究。先将浆液注入至隧道底部正下方的囊袋中,再对所抬升的隧道周围附加土压力与隧道变形进行量测。试验结果表明:1)采用新式囊袋注浆法进行隧道底部注浆抬升,浆液不发生扩散,且在囊袋的约束下能够均匀分布,形状可控,可有效避免发生跑浆,隧道注浆抬升效果明显,隧道变形更稳定。2)相对单点注浆,多点囊袋注浆法对隧道周围土体产生的附加土压力变化更大,分布更加均匀。3)在囊袋注浆产生的附加土压力作用下,模型盾构隧道的竖向直径减小,水平直径增大,发生明显的横椭圆变形;与单点注浆相比,平均单个囊袋的注浆量变小时,采用多点同时注浆,盾构隧道变形更明显、更缓和。4)相对单点注浆,多点同时注浆对隧道的抬升量更显著,且降低管片错台、局部应力集中风险。因此,实际工程中建议考虑囊袋注浆法并采用多点注浆。 展开更多
关键词 盾构隧道 囊袋注浆法 注浆抬升 模型试验 附加土压力
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高水压强渗透地层超大直径盾构地中对接冻结技术研究及工程实践
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作者 陈湘生 魏代伟 陈汉青 《现代交通与冶金材料》 2026年第2期2-12,36,共12页
在高水压、强渗透地层进行超大直径盾构隧道地中对接时,冻结法加固是决定盾构地中对接成败的关键技术,但同时面临影响因素众多、潜在风险高、施工难度大等难题,迄今为止世界尚无成功案例可供参考。为此,本研究依托江阴-靖江长江隧道超... 在高水压、强渗透地层进行超大直径盾构隧道地中对接时,冻结法加固是决定盾构地中对接成败的关键技术,但同时面临影响因素众多、潜在风险高、施工难度大等难题,迄今为止世界尚无成功案例可供参考。为此,本研究依托江阴-靖江长江隧道超大直径盾构江底对接工程,针对高水压、强渗透地层盾构对接工程难题,开展了冻结设计、施工技术等方面研究。分析了80 mm厚度盾构机钢壳钻孔取芯、注浆和冻结等关键施工环节的技术要点,形成了涵盖盾构孔口管施工、壳体取芯钻孔、共管注浆以及异步冻结的成套施工技术体系,研究成果已成功应用于工程实践。通过对冻结温度场与冻胀位移场的跟踪监测发现,在积极冻结54天后,盾构对接截面上形成了有效厚度为4.62 m、平均温度为-14.47℃的冻结壁,不仅满足盾构结构拆解及后续混凝土结构浇筑施工对周围土体的加固要求,还满足盾构对接段开挖施工对承载力与封水性能要求;与此同时,发现盾构拱顶最大冻胀位移为10.14 mm,远小于设计阈值100 mm,保证了施工过程中结构安全与稳定性。 展开更多
关键词 盾构地中对接 冻结法施工 注浆改良地层 异步冻结 冻胀控制
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