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信息技术驱动下的《边坡工程》课程设计与实施分析
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作者 吴军 杨超 +1 位作者 许晓亮 陈兴华 《中文科技期刊数据库(文摘版)教育》 2024年第11期107-110,共4页
在当今科技日新月异的时代,信息技术不仅深刻改变了人们的日常生活,也对教育领域产生了深远影响。特别是在土木工程这一实践性极强的学科中,信息技术正逐渐成为推动教学创新与发展的核心动力。其中,《边坡工程》作为土木工程领域的一门... 在当今科技日新月异的时代,信息技术不仅深刻改变了人们的日常生活,也对教育领域产生了深远影响。特别是在土木工程这一实践性极强的学科中,信息技术正逐渐成为推动教学创新与发展的核心动力。其中,《边坡工程》作为土木工程领域的一门重要课程,其课程设计与实施在信息技术的驱动下,正逐步迈向一个全新的高度。通过利用先进的信息技术手段,课程的设计与实施分析变得更加高效和精准,从而为学生提供了更加丰富和深入的学习体验。文章旨在探索信息技术与线下课程整合的教学模式,以三峡大学土木与建筑学院开设的《边坡工程》课程为研究对象。通过文献综述、问卷调查、课堂观察和访谈等方法,构建了一套基于信息技术的教学设计与评价体系。研究发现,信息技术的融入能够显著提升学生的参与度和学习动机,同时也为教师提供了更加高效的教学工具和方法。最后提出了基于信息技术整合的教学模式在推广和应用过程中可能遇到的挑战和对策。实践证明,信息技术的应用能够提高学生的学习兴趣和参与度,增强教学效果,为培养高素质的边坡工程专业人才提供了有力支持。 展开更多
关键词 信息技术 教学整合 《边坡工程》 教学设计 教学评价
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3D deformation effect and optimal excavated design of surface mine 被引量:2
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作者 WANG Shu-ren FENG Ji-li 《Journal of Coal Science & Engineering(China)》 2009年第4期361-366,共6页
The three-dimensional (3D) deformation effect of the slope engineering under the step-by-step excavation for the Antaibao surface mine was analyzed using the FLAC^3D technique. An optimal excavated scheme with a rel... The three-dimensional (3D) deformation effect of the slope engineering under the step-by-step excavation for the Antaibao surface mine was analyzed using the FLAC^3D technique. An optimal excavated scheme with a relatively steeper slope angle of 47° instead of 30° was successfully implemented at the west wall in the geological section 73200 of the mine area, where the 3D effect of the nonlinear large deformation of the slope was taken into account. Based on the above research conclusion, put forward the countermeasures of shortening mining length, excavating by different regions, timely foot backfilling to protect the excavated slope, and monitoring and feedback adjustment by studying the nonlinear effect. The results show that these countermeasures are effective in controlling maximum deformation and increasing the stability of the slope. 展开更多
关键词 surface mine slope engineering 3D deformation effect mining design FLAC^3D
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Application of dynamic analysis of strength reduction in the slope engineering under earthquake 被引量:2
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作者 Ye Hailin Zheng yingren +2 位作者 Huang Runqiu Li Anhong Du Xiuli 《Engineering Sciences》 EI 2010年第3期41-48,80,共9页
At present,the methods of analyzing the stability of slope under earthquake are not accurate and reasonable because of some limitations. Based on the real dynamic tensile-shear failure mechanism of slope,the paper pro... At present,the methods of analyzing the stability of slope under earthquake are not accurate and reasonable because of some limitations. Based on the real dynamic tensile-shear failure mechanism of slope,the paper proposes dynamic analysis of strength reduction FEM (finite element method) and takes the reduction of shear strength parameters and tensile strength parameters into consideration. And it comprehensively takes the transfixion of the failure surface,the non-convergence of calculation and mutation of displacement as the criterion of dynamic instability and failure of the slope. The strength reduction factor under limit state is regarded as the dynamic safety factor of the slope under earthquake effect and its advantages are introduced. Finally,the method is applied in the seismic design of anchors supporting and anti-slide pile supporting of the slope. Calculation examples show that the application of dynamic analysis of strength reduction is feasible in the seismic design of slope engineering,which can consider dynamic interaction of supporting structure and rock-soil mass. Owing to its preciseness and great advantages,it is a new method in the seismic design of slope supporting. 展开更多
关键词 slope engineering EARTHQUAKE safety factor ANCHOR anti-slide pile dynamic analysis method of strength reduction
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New algorithm of mine slope reliability based on limiting state hyper-plane and its engineering application 被引量:1
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作者 刘志祥 唐志祥 +2 位作者 王卫华 孙晶晶 彭康 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第1期317-322,共6页
Due to the influence of joint fissure, mining intensity, designed slope angle, underground water and rainfall, the failure process of mine slope project is extremely complicated. The current safety factor calculation ... Due to the influence of joint fissure, mining intensity, designed slope angle, underground water and rainfall, the failure process of mine slope project is extremely complicated. The current safety factor calculation method has certain limitations, and it would be difficult to obtain the reliability index when the performance function of reliability analysis is implicit or has high order terms. Therefore, with the help of the logistic equation of chaos theory, a new algorithm of mine slope reliability based on limiting state hyper-plane is proposed. It is shown that by using this new reliability algorithm the calculation of partial derivative of performance function is avoided, and it has the advantages of being simple and easy to program. The new algorithm is suitable for calculating the reliability index of complex performance function containing high order terms. Furthermore, the limiting state hyper-plane models of both simplified Bishop's and Janbu's method adaptive to slope project are obtained, and have achieved satisfactory effect in the study of mine slope stability in Dexing copper open pit. 展开更多
关键词 limiting state hyper-plane mine slope reliability engineering application
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Rock engineering property of the high-steep open-pit slope and its stability
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作者 PENG Wen-bin YU Wei-jian 《Journal of Coal Science & Engineering(China)》 2010年第1期35-40,共6页
According to the rock engineering property and stability of high-steep open-pitslopes, various factors were collected on the basis of rock engineering system (RSE) theory,and the interaction matrix of stability evalua... According to the rock engineering property and stability of high-steep open-pitslopes, various factors were collected on the basis of rock engineering system (RSE) theory,and the interaction matrix of stability evaluation was established.Then, the stabilityevaluation index (S_p) of the slope was put forward.Ranges of the S_p value and the correspondingstable state were given on the basis of thirty-six samples.It is found that the followingrelationships exist: unstable (easy landslide): S_p<-0.20; mid-stable (may be landslide):-0.20<S_p<0.63; stable (no landslide): S_p>0.63.Finally, the stability evaluation indexwas applied on the high-steep open-pit slope of one mine.Analysis results and monitoringdata indicate that the index meets the necessity of the property of slope engineering, and ithas an important engineering purpose for landslide forecasting of high-steep slopes. 展开更多
关键词 high-steep slope rock engineering system property stability evaluation open-pit mine
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Application of artificial slope stability evaluation of improved response surface method in Donggang Power Plant
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作者 LI Xiangli 《Global Geology》 2014年第1期38-43,共6页
The study of artificial slope stability has been a key item of geological engineering projects. Though more evaluation methods are available,result of stability evaluation simulation does not explain the actual proble... The study of artificial slope stability has been a key item of geological engineering projects. Though more evaluation methods are available,result of stability evaluation simulation does not explain the actual problem owing to the diversified geological engineering factors and complexity. The author made a detailed study based on surveys of large amount of geological engineering research on Donggang Power Plant slope project,discussed the comprehensive factors influencing the project,and gave analytical calculation and evaluation to the improved response surface of the slope project. The study result shows that the slope is stable,which can provide scientific basis for designing the slope. 展开更多
关键词 SLOPE improved response surface method RELIABILITY plastic deformation STABILITY
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New developments of technology in rock engineering in China 被引量:2
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作者 Qian Qihu 《Engineering Sciences》 EI 2012年第2期2-15,共14页
In terms of rock engineering and technology in hydropower construction,the slope stability and monitoring techniques for high slopes of Three Gorges Project,the stability and support technology for high slopes of hydr... In terms of rock engineering and technology in hydropower construction,the slope stability and monitoring techniques for high slopes of Three Gorges Project,the stability and support technology for high slopes of hydropower projects in deep river valley,the stabilization techniques for underground cavern group with large span and high side walls are introduced in this paper.As for rock engineering and technology in highway and railway construction,the Qinghai-Tibet Railway — new construction techniques in permafrost,the support techniques for large squeezing deformation in Wuqiaoling Tunnel,the construction techniques for tunnels in alpine and high-altitude region,the geological prediction techniques for tunnels in karst region,the microseismic monitoring and early warning techniques for rockbursts in deep and long tunnels are presented.For rock engineering and technology inmining engineering,the innovative techniques for roadway support inmines,the simultaneous extraction technique of pillarless coal and gas in coal seams with low permeability,the safe and efficient deep openmining technology,advances in monitoring,early warning and treatment ofmine dynamic disasters are discussed.In addition,the new anchorage techniques and precision blasting technique in rock engineering are introduced. 展开更多
关键词 rock engineering hydropower engineering tunnel engineering mining engineering anchorage technique blasting technique
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Stability evaluation and protection of slope for Laosongling-Yanji Highway
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作者 Aref M. O. AL-JABALI NIE Lei +2 位作者 ZHOU Nengjuan SHEN Shiwei XU Yan 《Global Geology》 2009年第4期215-220,共6页
The authors analyzed the engineering geological characteristics of the slope of the study area (K75+840-K76+340). Two typical cross-sections have been chosen to analyze the failure modes after the excavation of the hi... The authors analyzed the engineering geological characteristics of the slope of the study area (K75+840-K76+340). Two typical cross-sections have been chosen to analyze the failure modes after the excavation of the highway. Different types of the failure modes have been calculated and analyzed. The results show that some dealing methods have been advised to ensure the stability of the slopes. 展开更多
关键词 highway slope stability blind drain ditch slope protection
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Experimental Research on Large Diameter Cast-in-Place Piles Embedded in Rock
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作者 衡朝阳 何满潮 姚爱军 《Journal of China University of Mining and Technology》 2001年第2期173-177,187,共6页
This paper expatiated the field test of large diameter cast in place piles embedded in soft rock, including static loading test, high or low strain dynamic test, measurement of stresses and strains of pile body, and p... This paper expatiated the field test of large diameter cast in place piles embedded in soft rock, including static loading test, high or low strain dynamic test, measurement of stresses and strains of pile body, and pressure measurements between pile tip and soft rock. The relative in situ test problems are discussed. Based on the limit equilibrium theory and the load transfer equation, a synthesis method of analyzing the ultimate carrying capacity of single large diameter pile is put forward. The research results show that the key to determining the ultimate carrying capacity of single pile with a large diameter is the analysis of the intensity of soft rock. 展开更多
关键词 cast in place pile static load test ultimate carrying capacity intensity of soft rock
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Increasing effect of metamorphism on rock properties
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作者 Akinbinu Victor Abioye 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2015年第2期205-211,共7页
This work studied the effect of increasing degree of metamorphism on the properties of rocks.The properties investigated are the physical,mechanical and dynamic parameters.They are important inputs in the design of ma... This work studied the effect of increasing degree of metamorphism on the properties of rocks.The properties investigated are the physical,mechanical and dynamic parameters.They are important inputs in the design of many mining and civil engineering techniques such as in tunnelling,slope stability and dynamic activities associated with seismicity and fragmentation.This work compared the degree of metamorphism examined through petrographic studies of the Transvaal Sequence in South Africa with the properties of the rocks.The study shows that as the effect metamorphism increases,the state of stress,compaction of grains,cementation and the brittleness of the rocks increases.In addition,increase in the metamorphic effect increases the value of the rock property.The degree of metamorphism of an outcrop is the key factor influencing its property value.Therefore the metamorphism effect of an outcrop may act as a guide to its engineering properties. 展开更多
关键词 Geology of rock Rock property Brittleness Fragmentation and metamorphism
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Geotechnical investigations and remediation design for failure of tunnel portal section: a case study in northern Turkey 被引量:7
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作者 Ayberk KAYA Kadir KARAMAN Fikri BULUT 《Journal of Mountain Science》 SCIE CSCD 2017年第6期1140-1160,共21页
Mass movements are very common problems in the eastern Black Sea region of Turkey due to its climate conditions, geological, and geomorphological characteristics. High slope angle, weathering, dense rainfalls, and ant... Mass movements are very common problems in the eastern Black Sea region of Turkey due to its climate conditions, geological, and geomorphological characteristics. High slope angle, weathering, dense rainfalls, and anthropogenic impacts are generally reported as the most important triggering factors in the region. Following the portal slope excavations in the entrance section of Cankurtaran tunnel, located in the region, where the highly weathered andesitic tuff crops out, a circular toe failure occurred. The main target of the present study is to investigate the causes and occurrence mechanism of this failure and to determine the feasible remedial measures against it using finite element method(FEM) in four stages. These stages are slope stability analyses for pre-and postexcavation cases, and remediation design assessments for slope and tunnel. The results of the FEM-SSR analyses indicated that the insufficient initial support design and weathering of the andesitic tuffs are the main factors that caused the portal failure. After installing a rock retaining wall with jet grout columns and reinforced slope benching applications, the factor of safety increased from 0.83 to 2.80. In addition toslope stability evaluation, the Rock Mass Rating(RMR), Rock Mass Quality(Q) and New Austrian Tunneling Method(NATM) systems were also utilized as empirical methods to characterize the tunnel ground and to determine the tunnel support design. The performance of the suggested empirical support design, induced stress distributions and deformations were analyzed by means of numerical modelling. Finally, it was concluded that the recommended stabilization technique was essential for the dynamic long-term stability and prevents the effects of failure. Additionally, the FEM method gives useful and reasonably reliable results in evaluating the stability of cut slopes and tunnels excavated both in continuous and discontinuous rock masses. 展开更多
关键词 Portal failure Stability analysis Finite element method Tunnel support design Remedial measures Rock Mass Rating(RMR) Rock Mass Quality(Q) New Austrian Tunneling Method(NATM)
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High Slope Stability of Diversion Power System Intake of Jinchuan Hydropower Station 被引量:1
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作者 TANG Liang-qin TANG Kui +2 位作者 NIE De-xin WANG Jun-jie LIU Dong-yan 《Journal of Mountain Science》 SCIE CSCD 2013年第6期1109-1117,共9页
The excavated height of the left bank slope of the diversion power system intake in Jinchuan hydropower station is about 16o m. The stability and safety of the slope during construction and its operation/utilization b... The excavated height of the left bank slope of the diversion power system intake in Jinchuan hydropower station is about 16o m. The stability and safety of the slope during construction and its operation/utilization become one of the most important geological engineering problems. At the same time, it is also crucial to select a safe and economic excavation gradient for the construction. We studied the problem of how to select a safe and economic slope ratio by analyzing the geological condition of the high slope, including the lithology, slope structure, structural surface and their combinations, rock weathering and unloading, hydrology, and the natural gradient. The study results showed that the use of an excavation gradient larger than the gradient observed during site investigation and the gradient recommended in standards and field practice manuals is feasible. Then, we used the finite element method and rigid limit equilibrium method to evaluate the stability of the excavation slope under natural, rainstorm and earthquake conditions. The calculated results showed that the excavated slope only has limited failure, but its stability is greatly satisfactory. The research findings can be useful in excavation and slope stabilization projects. 展开更多
关键词 Jinchuan Hydropower Station Highslope Excavation slope ratio STABILITY
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THE ARTIFICIAL NEURAL NETWORK OF FORECASTING OPEN MINING SLOPE STABILITY
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作者 魏春启 白润才 《Journal of Coal Science & Engineering(China)》 2000年第2期31-34,共4页
The artificial neural network model which forecasts Open Mining Slope stability is established by neural network theory and method. The nonlinear reflection relation between stability target of open mining slope and i... The artificial neural network model which forecasts Open Mining Slope stability is established by neural network theory and method. The nonlinear reflection relation between stability target of open mining slope and its influence factor is described. The method of forecasting Open Mining Slope stability is brought forward. 展开更多
关键词 neural network slope stability open mining
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A Simplified Analysis Method for the Lateral Deformation of Braced Excavations
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作者 许海勇 刘玮 陈龙珠 《Journal of Shanghai Jiaotong university(Science)》 EI 2013年第2期224-228,共5页
Pile-anchor retaining structure is widely used in foundation pit engineering and side slope engineering in many countries. In contrast to strut, pile-anchor retaining structure has its typical features and advantages.... Pile-anchor retaining structure is widely used in foundation pit engineering and side slope engineering in many countries. In contrast to strut, pile-anchor retaining structure has its typical features and advantages. It does not occupy the internal space of the foundation pit, and the project cost is much lower. Accurate prediction of the lateral displacement of the retaining structure is very important in the design stage. A simplified analysis method and several calculation assumptions of the lateral deformation of pile-anchor retaining structures are set up according to the engineering features. The expression function of lateral displacement versus depth is solved by means of a fitted function and the quasi-elastic summation method. The parameters are obtained through the stiffness equation of the anchors and the principle of minimum potential energy. The analytical evaluation of the lateral deformation curve is then completed, whose applicability is proved through practical engineering. 展开更多
关键词 EXCAVATION pile-anchor retaining structure fitted function lateral deformation analytical evaluation
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