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On faults induced stress shielding to account for the formation of deep-buried reservoirs
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作者 Xiaguang Zeng Guangyou Zhu +1 位作者 Bin Zhao Jici Wen 《Acta Mechanica Sinica》 2025年第4期107-120,共14页
It is commonly accepted that the formation of oil and gas reservoirs in deep-buried strata is almost impossible due to the huge compaction of in-situ crustal stresses.Nevertheless,recent hydrocarbon explorations in th... It is commonly accepted that the formation of oil and gas reservoirs in deep-buried strata is almost impossible due to the huge compaction of in-situ crustal stresses.Nevertheless,recent hydrocarbon explorations in the Tarim Basin have discovered reservoirs at depths exceeding 8 km.The reservoirs exhibit a strong correlation to the strata’s faults and large fractures,yet the precise underlying mechanical mechanism remains obscure.To illuminate how the faults may facilitate the existence of such deep-buried reservoirs,we consider three ideal scenarios involving unconventional hole-crack interactions under remote biaxial compression.Our focus is on the stress concentration of the hole,influenced by the long main cracks.Closed-form compressive stress solutions are obtained based on our simple theoretical models,showing that long cracks significantly reduce the stress concentration of nearby holes.We quantify the reducing effect of the cracks’angle,surface friction,and pressure on the maximum shear and von Mises stresses around a hole,combining with finite element analysis results.The stress shielding effect is qualitatively consistent with the available experimental observations that the deep-buried caves are often located near the faults and large fractures in carbonate strata.Our results will be beneficial for future exploration of superdeep petroleum reservoirs. 展开更多
关键词 Fault reservoir deep-buried cave Hole-crack interaction Stress shielding
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深埋隧洞施工期渗控措施对衬砌外水压力的影响
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作者 李鸣威 李玉峰 +2 位作者 崔皓东 李少龙 孙云 《长江科学院院报》 北大核心 2026年第1期202-209,共8页
香炉山隧洞是滇中引水工程的难点和控制性工程,位于大理州鹤庆县松桂镇境内,高外水压力是威胁其安全的一大因素。以香炉山隧洞典型洞段为研究对象,基于现场埋设监测仪器和数值分析发现:由于隧洞的排水作用,洞壁渗压较低可能仅有几米水头... 香炉山隧洞是滇中引水工程的难点和控制性工程,位于大理州鹤庆县松桂镇境内,高外水压力是威胁其安全的一大因素。以香炉山隧洞典型洞段为研究对象,基于现场埋设监测仪器和数值分析发现:由于隧洞的排水作用,洞壁渗压较低可能仅有几米水头;隧洞外水压力和渗流量同时受地质条件和工程渗控措施的影响,岩体渗透性、隧洞与导水构造的距离、隔水衬砌和排水孔的设置都会影响隧洞外水压力和渗流量。在一定的地质结构和渗控措施条件下隧洞开挖排水可能仅仅引起隧洞局部的地下水疏干,而不影响地下水潜水位。研究结果可以为深埋高外水压力隧洞安全施工和运行提供参考。 展开更多
关键词 深埋隧洞 隧洞渗控措施 隔水衬砌 外水压力 数值模拟 滇中引水工程
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Experimental study on real-time monitoring of surrounding rock 3D wave velocity structure and failure zone in deep tunnels
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作者 Hongyun Yang Chuandong Jiang +4 位作者 Yong Li Zhi Lin Xiang Wang Yifei Wu Wanlin Feng 《International Journal of Mining Science and Technology》 2026年第2期423-437,共15页
An innovative real-time monitoring method for surrounding rock damage based on microseismic time-lapse double-difference tomography is proposed for delayed dynamic damage identification and insufficient detection of a... An innovative real-time monitoring method for surrounding rock damage based on microseismic time-lapse double-difference tomography is proposed for delayed dynamic damage identification and insufficient detection of adverse geological conditions in deep-buried tunnel construction.The installation techniques for microseismic sensors were optimized by mounting sensors at bolt ends which significantly improves signal-to-noise ratio(SNR)and anti-interference capability compared to conventional borehole placement.Subsequently,a 3D wave velocity evolution model that incorporates construction-induced disturbances was established,enabling the first visualization of spatiotemporal variations in surrounding rock wave velocity.It finds significant wave velocity reduction near the tunnel face,with roof and floor damage zones extending 40–50 m;wave velocities approaching undisturbed levels at 15 m ahead of the working face and on the laterally undisturbed side;pronounced spatial asymmetry in wave velocity distribution—values on the left side exceed those on the right,with a clear stress concentration or transition zone located 10–15 m;and systematically lower velocities behind the face than in front,indicating asymmetric rock damage development.These results provide essential theoretical support and practical guidance for optimizing dynamic construction strategies,enabling real-time adjustment of support parameters,and establishing safety early warning systems in deep-buried tunnel engineering. 展开更多
关键词 deep-buried tunnel Microseismic monitoring Wave velocity tomography Surrounding rock damage zone Real-time monitoring
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榆横北区深埋大采高矿井地表沉陷规律研究
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作者 杜星 《陕西煤炭》 2026年第1期38-44,共7页
【目的】为解决煤矿开采过程中地表沉陷造成的环境破坏及安全隐患问题。【方法】以大海则煤矿20101深埋大采高工作面为研究对象,分别通过现场实测及数值模拟的方法研究其开采过程中地表沉陷规律。【结果】地表下沉曲线在走向方向上呈“... 【目的】为解决煤矿开采过程中地表沉陷造成的环境破坏及安全隐患问题。【方法】以大海则煤矿20101深埋大采高工作面为研究对象,分别通过现场实测及数值模拟的方法研究其开采过程中地表沉陷规律。【结果】地表下沉曲线在走向方向上呈“碗底”形状,在倾向方向上沿工作面中轴线呈对称关系。地表最大下沉范围初期呈“圆形”,随着工作面继续推进,最大下沉区域逐渐发展为“椭圆形”。实测地表最大下沉量为944 mm,下沉系数为0.157,模拟地表最大下沉值为1 021 mm,地表下沉系数为0.17,均异常偏小。【结论】进一步分析其异常偏小的原因是上覆存在大量软弱胶结岩层,从而造成巨厚弱胶结覆岩整体刚度较大、抗能量积聚能力强,进而使得当采动程度较小时,地表沉陷严重偏小。 展开更多
关键词 深埋大采高 地表沉陷 现场实测 FLAC3D
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Comparison of vibrations induced by excavation of deep-buried cavern and open pit with method of bench blasting 被引量:5
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作者 卢文波 李鹏 +2 位作者 陈明 周创兵 舒大强 《Journal of Central South University》 SCIE EI CAS 2011年第5期1709-1718,共10页
The measured data of vibrations induced by excavation of deep-buried cavern and open pit with method of bench blasting were analyzed by Fourier Transform and Wavelet Transform,and the characteristics of vibrations ind... The measured data of vibrations induced by excavation of deep-buried cavern and open pit with method of bench blasting were analyzed by Fourier Transform and Wavelet Transform,and the characteristics of vibrations induced under these two circumstances were studied.It is concluded that with the similar rock condition and drilling-blasting parameters,vibration induced by bench blasting in deep-buried cavern has a higher main frequency and more scattered energy distribution than that in open pit.The vibration induced by bench blasting in open pit is mainly originated from the blast load,while the vibration induced by bench blasting in deep-buried cavern is the superposition of vibrations induced by blast load and transient release of in-situ stress.The vibration induced by transient release of in-situ stress increases with the stress level. 展开更多
关键词 deep-buried cavem open pit blasting vibration power spectra time-energy density in-situ stress
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Fisher discriminant analysis model and its application for prediction of classification of rockburst in deep-buried long tunnel 被引量:11
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作者 ZHOU Jian SHI Xiu-zhi +2 位作者 DONG Lei HU Hai-yan WANG Huai-yong 《Journal of Coal Science & Engineering(China)》 2010年第2期144-149,共6页
A Fisher discriminant analysis (FDA) model for the prediction of classification of rockburst in deep-buried long tunnel was established based on the Fisher discriminant theory and the actual characteristics of the p... A Fisher discriminant analysis (FDA) model for the prediction of classification of rockburst in deep-buried long tunnel was established based on the Fisher discriminant theory and the actual characteristics of the project. First, the major factors of rockburst, such as the maximum tangential stress of the cavern wall σθ, uniaxial compressive strength σc, uniaxial tensile strength or, and the elastic energy index of rock Wet, were taken into account in the analysis. Three factors, Stress coefficient σθ/σc, rock brittleness coefficient σc/σt, and elastic energy index Wet, were defined as the criterion indices for rockburst prediction in the proposed model. After training and testing of 12 sets of measured data, the discriminant functions of FDA were solved, and the ratio of misdiscrimina- tion is zero. Moreover, the proposed model was used to predict rockbursts of Qinling tunnel along Xi'an-Ankang railway. The results show that three forecast results are identical with the actual situation. Therefore, the prediction accuracy of the FDA model is acceptable. 展开更多
关键词 deep-buried tunnel ROCKBURST CLASSIFICATION Fisher discriminant analysis model
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Mechanical Properties of Deep-buried Marble Material Under Loading and Unloading Tests 被引量:2
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作者 李新平 ZHAO Hang +1 位作者 WANG Bin XIAO Taoli 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2013年第3期514-520,共7页
The mechanical properties are essentially different when rock material is subjected to loading or unloading conditions. In this study, loading and unloading tests with various confining pressures are conducted to inve... The mechanical properties are essentially different when rock material is subjected to loading or unloading conditions. In this study, loading and unloading tests with various confining pressures are conducted to investigate the mechanical properties of marble material samples taken from the deep diversion tunnels of Jinping II Hydropower Station. The stress-strain relationship, failure characteristics and strength criterion are compared and analyzed based on the experiment results. The results show: in the loading and unloading test, peak strength, lateral strain, axial strain and plastic deformation increase significantly as the confining pressure increases. Lateral strain increased significantly and obvious lateral dilatancy can be observed to the change of confining pressure; The fracture mode is mainly the single shear fracture for the triaxial compression test and post-peak test, angle between the failure surface and the ends of the rock material becomes smaller as the confining pressure increases. Hock-Brown strength criterion reflects the strength characteristics of marble material under two different unloading conditions, and has some supplementary effects to the rock material of mechanical field. 展开更多
关键词 deep-buried material loading and unloading tests mechanical properties strength criterion shear fracture
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Roof collapse mechanism of weak surrounding rock for deep-buried tunnels under high geostress conditions 被引量:1
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作者 ZHANG Qi GUO Xiaokang +2 位作者 YAN Zhiguo LEI Zhongdai SHEN Yixin 《Journal of Mountain Science》 SCIE CSCD 2024年第7期2408-2426,共19页
High geostress,a typical attribute of tunnels located at significant depths,is crucial in causing stress-induced failure and influencing the stability of the tunnel crown.This study developed an analytical method for ... High geostress,a typical attribute of tunnels located at significant depths,is crucial in causing stress-induced failure and influencing the stability of the tunnel crown.This study developed an analytical method for the failure mechanism that occurs in deep-buried tunnel roofs,taking into account the influence of geostress.The limit analysis theory was utilized for deriving analytical solutions about the geometry of the collapsing surface and the limit supporting pressure.The collapsing surface obtained by the analytical solution was validated by the findings of the physical model test,which shows a high level of agreement with the actual one.An extensive investigation was done to explore the effects of the lateral pressure coefficients,the tunnel buried depth,the geological conditions of the surrounding rock,the long-short axis ratio,and the size of the tunnel profile.The findings indicate that an increase in the lateral pressure coefficient from 0.5 to 1.5 results in a reduction in the height of the collapsing zone by 2.08 m and the width of the collapsing zone by 1.15 m,while simultaneously increases the limit supporting pressure by 18.9%.The proposed upper bound method accurately determines the limit supporting pressure and the geometry of the collapsing surface,which aligns well with the results acquired through numerical modelling and on-site monitoring in actual engineering applications.The proposed analytical method can serve as a reference for similar crown failure issues of deep-buried tunnels. 展开更多
关键词 Geostress deep-buried tunnels Collapse mechanism Pressure arch Limit analysis HoekBrown criterion
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Dissolution mechanism of a deep-buried sandstone reservoir in a deep water area:A case study from Baiyun Sag,Zhujiang River(Pearl River)Mouth Basin 被引量:1
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作者 Jihua Liao Keqiang Wu +3 位作者 Lianqiao Xiong Jingzhou Zhao Xin Li Chunyu Zhang 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2023年第3期151-166,共16页
Dissolution mechanism and favorable reservoir distribution prediction are the key problems restricting oil and gas exploration in deep-buried layers.In this paper,the Enping Formation and Zhuhai Formation in Baiyun Sa... Dissolution mechanism and favorable reservoir distribution prediction are the key problems restricting oil and gas exploration in deep-buried layers.In this paper,the Enping Formation and Zhuhai Formation in Baiyun Sag of South China Sea was taken as a target.Based on the thin section,scanning electron microscopy,X-ray diffraction,porosity/permeability measurement,and mercury injection,influencing factors of dissolution were examined,and a dissolution model was established.Further,high-quality reservoirs were predicted temporally and spatially.The results show that dissolved pores constituted the main space of the Paleogene sandstone reservoir.Dissolution primarily occurred in the coarse-and medium-grained sandstones in the subaerial and subaqueous distributary channels,while dissolution was limited in fine-grained sandstones and inequigranular sandstones.The main dissolved minerals were feldspar,tuffaceous matrix,and diagenetic cement.Kaolinization of feldspar and illitization of kaolinite are the main dissolution pathways,but they occur at various depths and temperatures with different geothermal gradients.Dissolution is controlled by four factors,in terms of depositional facies,source rock evolution,overpressure,and fault activities,which co-acted at the period of 23.8–13.8 Ma,and resulted into strong dissolution.Additionally,based on these factors,high-quality reservoirs of the Enping and Zhuhai formations are predicted in the northern slope,southwestern step zone,and Liuhua uplift in the Baiyun Sag. 展开更多
关键词 dissolution mechanism deep-buried reservoir diagenesis evolution reservoir prediction deep water region Baiyun Sag
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Forecasting of water yield of deep-buried iron mine in Yanzhou, Shandong 被引量:1
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作者 WANG Ye ZHANG Qiu-lan +1 位作者 WANG Shi-chang SHAO Jing-li 《Journal of Groundwater Science and Engineering》 2015年第4期342-351,共10页
This paper compares analytical and numerical methods by taking the forecasting of water yield of deep-buried iron mine in Yanzhou, Shandong as an example. Regarding the analytical method, the equation of infinite and ... This paper compares analytical and numerical methods by taking the forecasting of water yield of deep-buried iron mine in Yanzhou, Shandong as an example. Regarding the analytical method, the equation of infinite and bilateral water inflow boundary is used to forecast the water yield, and in the case of numerical simulation, we employed the GMS software to establish a model and further to forecast the water yield. On the one hand, through applying the analytical method, the maximum water yield of mine 1 500 m deep below the surface was calculated to be 13 645.17 m3/d; on the other hand, through adopting the numerical method, we obtained the predicted result of 3 816.16 m3/d. Meanwhile, by using the boundary generalization in the above-mentioned two methods, and through a comparative analysis of the actual hydro-geological conditions in this deep-buried mine, which also concerns the advantages and disadvantages of the two methods respectively, this paper draws the conclusion that the analytical method is only applicable in ideal conditions, but numerical method is eligible to be used in complex hydro-geological conditions. Therefore, it is more applicable to employ the numerical method to forecast water yield of deep-buried iron mine in Yanzhou, Shandong. 展开更多
关键词 Analytical method Numerical simulation Forecasting of water yield Yanzhou deep-buried iron mine
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Numerical simulation of zonal disintegration of surrounding rock in the deep-buried chamber 被引量:2
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作者 Yukai Wang Xiaoli Liu Yanlin Xiong 《Deep Underground Science and Engineering》 2022年第2期174-182,共9页
Zonal disintegration is the phenomenon of cyclical rupture zone and nonrupture zone in the surrounding rock of a deep-buried chamber,which is different from that of a shallow chamber.Based on the finite difference sof... Zonal disintegration is the phenomenon of cyclical rupture zone and nonrupture zone in the surrounding rock of a deep-buried chamber,which is different from that of a shallow chamber.Based on the finite difference software FLAC3D,the numerical simulation of surrounding rock with different mechanical parameters was conducted by using the SU model(Bilinear Strain-Softening Ubiquitous-Joint).The influences of buried depth,cohesion,and internal friction angle of surrounding rock on zonal disintegration were analyzed to reveal the influence law.The results show that:(1)after the chamber excavation,multiple rupture zones gradually extend from the chamber surface or adjacent periphery to the deep surrounding rock.In the extension process,a single rupture zone may be forked into two or even multiple rupture zones,which cross each other and form the zonal disintegration zone.(2)Zonal disintegration is affected by bothσ(in situ stress)and U_(cs)(uniaxial compression strength).Smaller U_(cs)and largerσwill lead to zonal disintegration.(3)The zoning fracture is not obvious in the case ofσ≤U_(cs).In the reverse case,zoning fracture appears remarkably in the surrounding rock around the chamber.These results reveal the influence law of zonal disintegration and provide theoretical support for the design of deep-buried chambers. 展开更多
关键词 deep-buried chamber numerical simulation SU model uniaxial compression strength zonal disintegration
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Stress wave propagation and incompatible deformation mechanisms in rock discontinuity interfaces in deep-buried tunnels 被引量:1
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作者 Cong Zhang Zhende Zhu +2 位作者 Shanyong Wang Xuhua Ren Chong Shi 《Deep Underground Science and Engineering》 2022年第1期25-39,共15页
Complex weak structural planes and fault zones induce significant heterogeneity,discontinuity,and nonlinear characteristics of a rock mass.When an earthquake occurs,these characteristics lead to extremely complex seis... Complex weak structural planes and fault zones induce significant heterogeneity,discontinuity,and nonlinear characteristics of a rock mass.When an earthquake occurs,these characteristics lead to extremely complex seismic wave propagation and vibrational behaviors and thus pose a huge threat to the safety and stability of deep buried tunnels.To investigate the wave propagation in a rock mass with different structural planes and fault zones,this study first introduced the theory of elastic wave propagation and elastodynamic principles and used the Zoeppritz equation to describe wave field decomposition and develop a seismic wave response model accordingly.Then,a physical wave propagation model was constructed to investigate seismic waves passing through a fault,and dynamic damage was analyzed by using shaking table tests.Finally,stress wave attenuation and dynamic incompatible deformation mechanisms in a rock mass with fault zones were explored.The results indicate that under the action of weak structural planes,stress waves appear as a complex wave field decomposition phenomenon.When a stress wave spreads to a weak structural plane,its scattering may transform into a tensile wave,generating tensile stress and destabilizing the rock mass;wave dynamic energy is absorbed by a low-strength rock through wave scattering,which significantly weakens the seismic load.Wave propagation accelerates the initiation and expansion of internal defects in the rock mass and leads to a dynamic incompatible deformation.This is one of the main causes for large deformation and even instability within rock masses.These findings provide an important reference and guide with respect to stability analysis of rock mass with weak structural planes and fault zones. 展开更多
关键词 deep-buried tunnels fractured rock mass incompatible deformation mechanism rock interfaces stress wave propagation model
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Analytical solution for steady seepage into a circular deep-buried mountain tunnel with grouted zone in anisotropic strata
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作者 YAN Qi-xiang ZHANG Tian +2 位作者 ZHANG Chuan GUO De-ping QING Song-yong 《Journal of Mountain Science》 SCIE CSCD 2022年第10期2987-2998,共12页
Due to the existence of a large number of discontinuous fractures and interfaces in tunnel surrounding rocks,the groundwater inflow into tunnel generally presents significant anisotropy.Therefore,it is of great signif... Due to the existence of a large number of discontinuous fractures and interfaces in tunnel surrounding rocks,the groundwater inflow into tunnel generally presents significant anisotropy.Therefore,it is of great significance to consider the anisotropic permeability when dealing with water gushing-induced engineering accidents in water-rich mountain tunnels with large burial depth.In this study,based on the complex variable method and the seepage flow theory,a theoretical model of water inflow into a deep-buried circular tunnel in a fully saturated,anisotropic and semi-infinite aquifer is developed.The influence of grouted zone,initial support and secondary lining is fully considered.By comparison to the existing analytical methods and numerical results,the reliability of this proposed analytical solution is well validated.It is indicated from the parametric study that the groundwater inflow into tunnel presents an upward trend with an increasing value of the strata permeability in the vertical direction.Moreover,the water inflow rate and the total water head decrease with the growth of the thickness of grouting circle.It is suggested that reasonable grouting thickness and permeability should be controlled to enhance the grouting effect.This study provides a practical method for estimating the water inflow into a deep-buried,grouted and lined mountain tunnel considering the anisotropic strata permeability. 展开更多
关键词 deep-buried tunnel Analytical solution Groundwater inflow Anisotropic strata Conformal mapping Grouted zone
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Experimental study on similarity materials for soft rock of deep-buried tunnels
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作者 ZHAO Yu PENG Hai-you 《Journal of Coal Science & Engineering(China)》 2011年第2期124-127,共4页
When every parameter is properly scaled down in accordance with some similarity coefficients, it is possible to study the physical-mechanical properties of rock mass with a scale model. To identify the key mechanisms ... When every parameter is properly scaled down in accordance with some similarity coefficients, it is possible to study the physical-mechanical properties of rock mass with a scale model. To identify the key mechanisms of soft rock in deep buried tunnels, the proper sand, binder and ratio were selected. During the process, the model manufacture technology was introduced and typical tests were done and the results were presented. The physical and meehanieal properties effects caused by each composition were discussed. It is shown that the physical and mechanical properties of chosen ratio material such as uniaxial compressive strength tests, elasticity modulus, tensile strength, internal frictional angle, and Poisson's ratio meet with similarity relationship well. The physical and mechanical properties of deep soft rock are simulated successfully. 展开更多
关键词 similarity materials deep-buried tunnel soft rock
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苏打盐碱土秸秆深埋机设计与试验 被引量:1
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作者 王宇星 王晓燕 +3 位作者 李洪文 王庆杰 高世杰 刘迪 《农业机械学报》 北大核心 2025年第5期202-212,共11页
针对苏打盐碱土渗透性差及传统改良设备适应性不足等问题,设计了一种盐碱土秸秆深埋机。采用离散元法(Discrete element method,DEM)与中心复合试验设计法(Central composite design,CCD)对开沟装置进行阶梯减阻优化。结果表明:当深松... 针对苏打盐碱土渗透性差及传统改良设备适应性不足等问题,设计了一种盐碱土秸秆深埋机。采用离散元法(Discrete element method,DEM)与中心复合试验设计法(Central composite design,CCD)对开沟装置进行阶梯减阻优化。结果表明:当深松铲入土深度为38.4 cm、入土角为24.7°、刃角为60.1°时,开沟铲阻力为9752.5 N,系统总阻力为12401.9 N,较对照组分别降低27.7%和0.4%。对优化组合参数进行田间验证,可得系统总阻力为14500.5 N,较对照组增加2.6%;开沟铲所受阻力11801.8 N,较对照组降低16.5%。开沟平均深度39.1 cm(变异系数5.06%),平均宽度9.4 cm(变异系数5.16%),说明设备在作业稳定性上具备较高一致性。秸秆填充深埋合格率80%,表明设备能够较好地完成填埋任务。通过结构设计与参数优化有效解决了苏打盐碱土开沟作业中高阻低效问题,为盐碱地改良提供了可靠的技术装备支撑。 展开更多
关键词 苏打盐碱土 秸秆深埋机 离散元法 阶梯减阻 田间试验
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Fracturing mechanism of pre-damaged granite induced by multi-source dynamic disturbances in tunnels
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作者 Biao Wang Benguo He +1 位作者 Xiating Feng Hongpu Li 《International Journal of Mining Science and Technology》 2025年第9期1439-1459,共21页
To elucidate the fracturing mechanism of deep hard rock under complex disturbance environments,this study investigates the dynamic failure behavior of pre-damaged granite subjected to multi-source dynamic disturbances... To elucidate the fracturing mechanism of deep hard rock under complex disturbance environments,this study investigates the dynamic failure behavior of pre-damaged granite subjected to multi-source dynamic disturbances.Blasting vibration monitoring was conducted in a deep-buried drill-and-blast tunnel to characterize in-situ dynamic loading conditions.Subsequently,true triaxial compression tests incorporating multi-source disturbances were performed using a self-developed wide-low-frequency true triaxial system to simulate disturbance accumulation and damage evolution in granite.The results demonstrate that combined dynamic disturbances and unloading damage significantly accelerate strength degradation and trigger shear-slip failure along preferentially oriented blast-induced fractures,with strength reductions up to 16.7%.Layered failure was observed on the free surface of pre-damaged granite under biaxial loading,indicating a disturbance-induced fracture localization mechanism.Time-stress-fracture-energy coupling fields were constructed to reveal the spatiotemporal characteristics of fracture evolution.Critical precursor frequency bands(105-150,185-225,and 300-325 kHz)were identified,which serve as diagnostic signatures of impending failure.A dynamic instability mechanism driven by multi-source disturbance superposition and pre-damage evolution was established.Furthermore,a grouting-based wave-absorption control strategy was proposed to mitigate deep dynamic disasters by attenuating disturbance amplitude and reducing excitation frequency. 展开更多
关键词 Multi-source dynamic disturbances Blasting vibration deep-buried tunnel Acoustic emission Time-delayed rockburst
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综合管廊与深埋箱涵上下重叠施工技术研究
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作者 罗杰 《价值工程》 2025年第34期114-116,共3页
本项目综合管廊与箱涵于K0+164处相交,斜交角度2.8°,综合管廊底部1.45m下方为箱涵顶部,箱涵顶板回填后作为综合管廊基础。结合项目周边环境及复杂地形地貌,在保障施工安全、质量与进度的前提下,通过优化临时施工措施,减少渗水、填... 本项目综合管廊与箱涵于K0+164处相交,斜交角度2.8°,综合管廊底部1.45m下方为箱涵顶部,箱涵顶板回填后作为综合管廊基础。结合项目周边环境及复杂地形地貌,在保障施工安全、质量与进度的前提下,通过优化临时施工措施,减少渗水、填料沉降、构筑物相邻及深埋引发的安全干扰,降低复杂条件下作业的安全与沉降风险,形成经济可行的施工工艺,为同类市政工程提供参考。 展开更多
关键词 综合管廊 箱涵 深埋 上下重叠
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超大埋深大变形隧道缓冲层控制效果研究
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作者 霍二伦 《国防交通工程与技术》 2025年第6期72-76,29,共6页
软岩高地应力隧道在埋深较大时,常出现严重的大变形现象,支护结构破坏严重。采用数值模拟与现场监测等手段,依托哈巴雪山隧道深入研究了缓冲层在高地应力软岩隧道中的应用效果。研究发现:施作缓冲层显著优化了隧道结构的受力情况,初期... 软岩高地应力隧道在埋深较大时,常出现严重的大变形现象,支护结构破坏严重。采用数值模拟与现场监测等手段,依托哈巴雪山隧道深入研究了缓冲层在高地应力软岩隧道中的应用效果。研究发现:施作缓冲层显著优化了隧道结构的受力情况,初期支护的最小主应力有所增加,而二次衬砌的应力明显降低,证明了缓冲层对隧道受力的优化作用。同时,现场监测结果表明:采用缓冲层后,隧道各位置的变形量平均减小了17.24%,有效控制了大变形现象,且未出现支护结构破坏的情况。此外,围岩压力也维持在支护结构承载能力之下,确保了施工的安全性。综上所述,缓冲层的设计与应用在哈巴雪山隧道的施工中展现了显著效果,为类似工程的安全施工和设计提供了参考和借鉴。 展开更多
关键词 铁路隧道 缓冲层 数值模拟 超大埋深 软岩隧道 现场监测
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