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Shear damage constitutive model of rock-like joint surface considering the coupling effect of cyclic water intrusion and loading
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作者 Zhe Qin Runchang Zhang +2 位作者 Ke Wang Lixue Cao Yushui Yan 《International Journal of Mining Science and Technology》 2025年第6期881-895,共15页
Prolonged cyclic water intrusion has progressively developed joints in the hydro-fluctuation belt,elevating the instability risk of reservoir bank slopes.To investigate its impact on joint shear damage evolution,joint... Prolonged cyclic water intrusion has progressively developed joints in the hydro-fluctuation belt,elevating the instability risk of reservoir bank slopes.To investigate its impact on joint shear damage evolution,joint samples were prepared using three representative roughness curves and subjected to direct shear testing following cyclic water intrusion.A shear damage constitutive model considering the coupling effect of cyclic water intrusion and load was developed based on macroscopic phenomenological damage mechanics and micro-statistical theory.Results indicate:(1)All critical shear mechanical parameters(including peak shear strength,shear stiffness,basic friction angle,and joint compressive strength)exhibit progressive deterioration with increasing water intrusion cycles;(2)Model validation through experimental curve comparisons confirms its reliability.The model demonstrates that intensified water intrusion cycles reduce key mechanical indices,inducing a brittle-to-ductile transition in joint surface deformation—a behavior consistent with experimental observations;(3)Damage under cyclic water intrusion and load coupling follows an S-shaped trend,divided into stabilization(water-dominated stage),development(load-dominated stage),and completion stages.The research provides valuable insights for stability studies,such as similar model experiments for reservoir bank slopes and other water-related projects. 展开更多
关键词 Rock joint Cyclic water intrusion Direct shear test Constitutive model Damage evolution rock-like material
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Cracks coalescence mechanism and cracks propagation paths in rock-like specimens containing pre-existing random cracks under compression 被引量:19
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作者 Hadi Haeri Kourosh Shahriar +1 位作者 Mohammad Fatehi Marji Parviz Moarefvand 《Journal of Central South University》 SCIE EI CAS 2014年第6期2404-2414,共11页
The mechanism of cracks propagation and cracks coalescence due to compressive loading of the brittle substances containing pre-existing cracks (flaws) was modeled experimentally using specially made rock-like specim... The mechanism of cracks propagation and cracks coalescence due to compressive loading of the brittle substances containing pre-existing cracks (flaws) was modeled experimentally using specially made rock-like specimens from Portland Pozzolana Cement (PPC). The breakage process of the specimens was studied by inserting single and double flaws with different inclination angles at the center and applying uniaxial compressive stress at both ends of the specimen. The first crack was oriented at 50&#176; from the horizontal direction and kept constant throughout the analysis while the orientation of the second crack was changed. It is experimentally observed that the wing cracks are produced at the first stage of loading and start their propagation toward the direction of uniaxial compressive loading. The secondary cracks may also be produced in form of quasi-coplanar and/or oblique cracks in a stable manner. The secondary cracks may eventually continue their propagation in the direction of maximum principle stress. These experimental works were also simulated numerically by a modified higher order displacement discontinuity method and the cracks propagation and cracks coalescence were studied based on Mode I and Mode II stress intensity factors (SIFs). It is concluded that the wing cracks initiation stresses for the specimens change from 11.3 to 14.1 MPain the case of numerical simulations and from 7.3 to 13.8 MPa in the case of experimental works. It is observed that cracks coalescence stresses change from 21.8 to 25.3 MPa and from 19.5 to 21.8 MPa in the numerical and experimental analyses, respectively. Comparing some of the numerical and experimental results with those recently cited in the literature validates the results obtained by the proposed study. Finally, a numerical simulation was accomplished to study the effect of confining pressure on the crack propagation process, showing that the SIFs increase and the crack initiation angles change in this case. 展开更多
关键词 crack propagation crack coalescence rock-like specimen numerical simulation experiment
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A damage constitutive model of rock-like materials containing a single crack under the action of chemical corrosion and uniaxial compression 被引量:14
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作者 PAN Ji-liang CAI Mei-feng +1 位作者 LI Peng GUO Qi-feng 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第2期486-498,共13页
To describe the deformation and strength characteristics of the corroded rock-like specimens containing a single crack under uniaxial compression,a damage constitutive model combining hydro-chemical damage with coupli... To describe the deformation and strength characteristics of the corroded rock-like specimens containing a single crack under uniaxial compression,a damage constitutive model combining hydro-chemical damage with coupling damage of micro-flaws and macro-cracks is proposed.Firstly,based on phenomenological theory,the damage variable of the rock-like specimens subjected to water environment erosion and chemical corrosion is obtained.Secondly,a coupled damage variable for cracked rock-like specimens is derived based on the Lemaitre strain equivalence hypothesis,which combines the Weibull statistical damage model for micro-flaws and the fracture mechanics model for a macro single crack.Then,considering the residual strength characteristics of the rock-like materials,the damage variable is modified by introducing the correction coefficient,and the damage constitutive model of the corroded rock-like specimens with a single crack under uniaxial compression is established.The model is verified by comparing the experimental stress−strain curves,and the results are in good agreement with those provided in the literature.Finally,the correction coefficient of the damage variable proposed in this paper is discussed.The damage constitutive model developed in this paper provides an effective method to describe the stress−strain relationship and residual strength characteristics of the corroded rock-like specimens with a single crack under uniaxial compression. 展开更多
关键词 rock-like material single-cracked rock damage constitutive model hydro-chemical erosion residual strength damage variable
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Failure characteristics and its influencing factors of rock-like material with multi-fissures under uniaxial compression 被引量:11
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作者 PU Cheng-zhi CAO Ping 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第1期185-191,共7页
The compression test on rock-like specimens with prefabricated closed multi-fissures made by pulling out the embedded metal inserts in the precured period was done on the servo control uniaxial loading instrument. The... The compression test on rock-like specimens with prefabricated closed multi-fissures made by pulling out the embedded metal inserts in the precured period was done on the servo control uniaxial loading instrument. The influence of fissure inclination angle and distribution density on the failure characteristics of fissure bodies was researched. It was found that, the fissure inclination angle was the major influencing factor on the failure modes of fissure bodies. The different developmental states of micro-cracks would appear on specimens under different fissure inclination angles. However, the influence of fissure distribution density on the failure mode of fissure bodies was achieved by influencing the transfixion pattern of fissures. It was shown by the sliding crack model that, the effective shear, which drove the relative sliding of the fissure, was a function of fissure inclination angle and friction coefficient of the fissure surface. The strain-softening model of fissure bodies was established based on the mechanical parameters that were obtained by the test of rock-like materials under the same experimental condition. And the reliability of experimental results was identified by using this model. 展开更多
关键词 rock-like material prefabricated fissure uniaxial compression sliding crack model strain-softening model
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Non-parallel double-crack propagation in rock-like materials under uniaxial compression 被引量:6
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作者 Weidong Pan Xin Wang +2 位作者 Qiming Liu Yongkang Yuan Baodong Zuo 《International Journal of Coal Science & Technology》 EI 2019年第3期372-387,共16页
Coalescence among fractures would have influence on the stability of rock masses. Deep understanding of mechanical behavior of fractured rock masses is an important mean to identify failure mechanism of geological dis... Coalescence among fractures would have influence on the stability of rock masses. Deep understanding of mechanical behavior of fractured rock masses is an important mean to identify failure mechanism of geological disaster. In this study, crack propagation processing was studied through loading pre-fractured specimens of concrete block, termed as rock-like material, in uniaxial compression tests. New non-parallel double-crack geometry was introduced to observe crack coalescence. The flaw combinations are different from the normally used flaw configurations. In addition, ultrasonic detection tests were performed on the test blocks. The stress and strain data of these tests and characteristic parameters of sound wave were recorded. The stress-strain curves of each test block under the uniaxial compression test were drawn, relations among deformation characteristics and crack angle of the crack specimens, and their overall strength were analyzed. It is found that strength of the specimen decreases as crack inclination increases under two crack inclinations. The highest uniaxial compressive strength is found in the specimen with the cracks at the same angle in different directions. Based on description of the crack initiation location, crack surface and the ultimate failure patterns, failure modes of eight subtype for test blocks are divided into three categories. It is expected that the study results could be beneficial for engineering application of jointed rock masses. 展开更多
关键词 rock-like material Non-parallel DOUBLE cracks CRACK-PROPAGATION path UNIAXIAL compression test
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An experimental study on fracture mechanical behavior of rock-like materials containing two unparallel fissures under uniaxial compression 被引量:10
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作者 Yan-Hua Huang Sheng-Qi Yang +2 位作者 Wen-Ling Tian Wei Zeng Li-Yuan Yu 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2016年第3期442-455,共14页
Strength and deformability characteristics of rock with pre-existing fissures are governed by cracking behavior. To further research the effects of pre-existing fissures on the mechanical properties and crack coalesce... Strength and deformability characteristics of rock with pre-existing fissures are governed by cracking behavior. To further research the effects of pre-existing fissures on the mechanical properties and crack coalescence process, a series of uniaxial compression tests were carried out for rock-like material with two unparallel fissures.In the present study, cement, quartz sand, and water were used to fabricate a kind of brittle rock-like material cylindrical model specimen. The mechanical properties of rock-like material specimen used in this research were all in good agreement with the brittle rock materials. Two unparallel fissures(a horizontal fissure and an inclined fissure) were created by inserting steel during molding the model specimen.Then all the pre-fissured rock-like specimens were tested under uniaxial compression by a rock mechanics servocontrolled testing system. The peak strength and Young's modulus of pre-fissured specimen all first decreased and then increased when the fissure angle increased from 0?to 75?.In order to investigate the crack initiation, propagation and coalescence process, photographic monitoring was adopted to capture images during the entire deformation process.Moreover, acoustic emission(AE) monitoring technique was also used to obtain the AE evolution characteristic of prefissured specimen. The relationship between axial stress, AE events, and the crack coalescence process was set up: when a new crack was initiated or a crack coalescence occurred, thecorresponding axial stress dropped in the axial stress–time curve and a big AE event could be observed simultaneously.Finally, the mechanism of crack propagation under microscopic observation was discussed. These experimental results are expected to increase the understanding of the strength failure behavior and the cracking mechanism of rock containing unparallel fissures. 展开更多
关键词 rock-like material Two unparallel fissures Mechanical parameters Crack evolution Acoustic emission(AE)
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Experimental study of polyurethane foam reinforced soil used as a rock-like material 被引量:1
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作者 Eren Komurlu Ayhan Kesimal 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2015年第5期566-572,共7页
In this study, p o ly u reth an e foam ty p e th e rm o se t polym erizing, d u e to chem ical reaction b e tw e e n itsliquid ingredients, w as teste d as b in d e r afte r solidifying and th e n a rock-like m ateria... In this study, p o ly u reth an e foam ty p e th e rm o se t polym erizing, d u e to chem ical reaction b e tw e e n itsliquid ingredients, w as teste d as b in d e r afte r solidifying and th e n a rock-like m aterial m ixing w ith asandy silt ty p e soil w as prep ared . The uniaxial com pressive stren g th s (UCSs) o f p o ly u reth an e foamreinforced soil specim ens w ere d e term in ed for different p o ly u reth an e ratios in th e m ixture. A dditionally,a series o f te sts o n slake durability, im pact value, freezing-th aw in g resistance, and ab rasio n resistance ofp o ly u reth an e reinforced soil (PRS) m ix tu re w as co n d u cted . The UCS values over 3 M Pa w ere m easuredfrom th e PRS specim ens. The testin g results show ed th a t tre a te d soil can econom ically b ecom e adesirable rock-like m aterial in term s o f slake d u ra b ility a n d resistances ag ain st freezing-thaw ing, im pacteffect an d abrasion. As a n o th e r ch aracteristic o f th e rock-like m aterial m ade w ith p o ly u reth an e foam,u n it volum e w eig h t w as found to be q uite low er th a n th o se o f n atu ral rock m aterials. 展开更多
关键词 Polyurethane reinforced soil(PRS) rock-like material POLYURETHANE Environmental resistance of rocks Rock testing
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Mechanism of stress distribution and failure around two different shapes of openings within fractured rock-like materials 被引量:1
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作者 FAN Xiang YANG Zhi-jun +2 位作者 HONG Ming YU Hao XIE Yong-li 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第6期1916-1932,共17页
The complexity of a rock masses structure can lead to high uncertainties and risk during underground engineering construction.Laboratory tests on fractured rock-like materials containing a tunnel were conducted,and tw... The complexity of a rock masses structure can lead to high uncertainties and risk during underground engineering construction.Laboratory tests on fractured rock-like materials containing a tunnel were conducted,and twodimensional particle flow models were established.The principal stress and principal strain distributions surrounding the four-arc-shaped and inverted U-shaped tunnels were investigated,respectively.Numerical results indicated that the dip angle combination of preexisting fractures directly affects the principal stress,principal strain distribution and the failure characteristics around the tunnel.The larger the absolute value of the preexisting fracture inclination angle,the higher the crushing degree of compression splitting near the hance and the larger the V-shaped failure zone.With a decrease in the absolute value of the preexisting fracture inclination angle,the compressive stress concentration of the sidewall with preexisting fractures gradually increases.The types of cracks initiated around the four-arc-shaped tunnel and the inverted U-shape tunnel are different.When the fractures are almost vertical,they have a significant influence on the stress of the sidewall force of the four-arc-shaped tunnel.When the fractures are almost horizontal,they have a significant influence on the stress of the sidewall of the inverted U-shaped tunnel.The findings provide a theoretical support for the local strengthening design of the tunnel supporting structure. 展开更多
关键词 TUNNEL fractured rock-like material 2D particle flow code crack initiation stress distribution
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STUDY ON DAMAGE BIFURCATION AND INSTABILITY OF ROCK-LIKE MATERIALS 被引量:1
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作者 Luan Maotian Wang Zhongchang Yang Qing 《Acta Mechanica Solida Sinica》 SCIE EI 2006年第3期275-282,共8页
The critical bifurcation orientation and its corresponding hardening modulus for rock-like geomaterials are derived by considering the effect of stiffness degradation and volumetric dilatancy under the assumption of i... The critical bifurcation orientation and its corresponding hardening modulus for rock-like geomaterials are derived by considering the effect of stiffness degradation and volumetric dilatancy under the assumption of isotropic damage.The dependency of the localized orientation on the degree of damage and initial Poisson's ratio of rock is examined and the bifurcation behavior of the uniaxial compression sample under the plane-stress condition is compared with that under plane-strain condition.It is shown that the localization orientation angle intimately depends on both the initial Poisson's ratio and degree of damage for the rock sample under the uniaxial compression condition.As the initial Poisson's ratio or degree of damage increases,the orientation angle of the plane on which localization tends to be initiated gets to decrease.At the same time,the localization orientation angle of a rock sample under the plane-stress condition is larger than that under the plane-strain condition. 展开更多
关键词 damage degradation maximum hardening modulus BIFURCATION orientation of localization rock-like materials
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Identification of the Discrete Element Model Parameters for Rock-Like Brittle Materials
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作者 Rui Chen Yong Wang +3 位作者 Ruitao Peng Shengqiang Jiang Congfang Hu Ziheng Zhao 《Computer Modeling in Engineering & Sciences》 SCIE EI 2020年第5期717-737,共21页
An inverse method for parameters identification of discrete element model combined with experiment is proposed.The inverse problem of parameter identification is transmitted to solve an optimization problem by minimiz... An inverse method for parameters identification of discrete element model combined with experiment is proposed.The inverse problem of parameter identification is transmitted to solve an optimization problem by minimizing the distance between the numerical calculations and experiment responses.In this method,the discrete element method is employed as numerical calculator for the forward problem.Then,the orthogonal experiment design with range analysis was used to carry out parameters sensitivity analysis.In addition,to improve the computational efficiency,the approximate model technique is used to replace the actual computational model.The intergeneration projection genetic algorithm(IP-GA)is employed as the optimization algorithm.Consequently,the parameters of the discrete element model are determined.To verify the effectiveness and accuracy of the inverse results,the comparisons of shape deviation experiments with discrete element simulations are provided.It indicates that the effective and reliable discrete element model parameters can be quickly obtained through several sets of experimental data.Hence,this inverse method can be applied more widely to determine the parameters of discrete element model for other materials. 展开更多
关键词 Discrete element model parameter determination rock-like materials IP-GA inverse method.
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Application of the expanded distinct element method for the study of crack growth in rock-like materials under uniaxial compression 被引量:6
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作者 Lei YANG Yujing JIANG +2 位作者 Bo LI Shucai LI Yang GAO 《Frontiers of Structural and Civil Engineering》 SCIE EI 2012年第2期121-131,共11页
The expanded distinct element method(EDEM)was used to investigate the crack growth in rock-like materials under uniaxial compression.The tensile-shear failure criterion and the Griffith failure criterion were implante... The expanded distinct element method(EDEM)was used to investigate the crack growth in rock-like materials under uniaxial compression.The tensile-shear failure criterion and the Griffith failure criterion were implanted into the EDEM to determine the initiation and propagation of pre-existing cracks,respectively.Uniaxial compression experiments were also performed with the artificial rock-like samples to verify the validity of the EDEM.Simulation results indicated that the EDEM model with the tensile-shear failure criterion has strong capabilities for modeling the growth of pre-existing cracks,and model results have strong agreement with the failure and mechanical properties of experimental samples.The EDEM model with the Griffith failure criterion can only simulate the splitting failure of samples due to tensile stresses and is incapable of providing a comprehensive interpretation for the overall failure of rock masses.Research results demonstrated that sample failure primarily resulted from the growth of single cracks(in the form of tensile wing cracks and shear secondary cracks)and the coalescence of two cracks due to the growth of wing cracks in the rock bridge zone.Additionally,the inclination angle of the pre-existing crack clearly influences the final failure pattern of the samples. 展开更多
关键词 expanded distinct element method(EDEM) crack growth rock-like material tensile-shear failure criterion Griffith failure criterion mechanical and failure behavior
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冻融作用下不同粒径类砂岩材料声发射特性试验研究
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作者 吴贤振 丁辉 +4 位作者 曾鹏 赵奎 杨贤达 李从明 杨砚 《金属矿山》 北大核心 2026年第1期81-90,共10页
为研究冻融作用对不同粒径岩石力学特性的影响,选用0.125~0.25 mm、0.3~0.5 mm、0.6~1 mm 3种粒径的石英砂为骨料制作类砂岩试样。通过冻融循环和单轴压缩声发射(AE)试验,分析了冻融作用下不同粒径类砂岩力学特性及其破坏过程中的声发... 为研究冻融作用对不同粒径岩石力学特性的影响,选用0.125~0.25 mm、0.3~0.5 mm、0.6~1 mm 3种粒径的石英砂为骨料制作类砂岩试样。通过冻融循环和单轴压缩声发射(AE)试验,分析了冻融作用下不同粒径类砂岩力学特性及其破坏过程中的声发射特征。研究结果表明:①随着冻融循环次数增加,试样孔隙率逐渐增加,小孔隙占比减少,大、中孔隙占比增加,弹性模量与单轴抗压强度呈下降趋势,变化幅度与粒径尺寸呈正相关关系;②声发射振铃计数总体可划分为平静阶段、缓增阶段、骤增阶段,随着冻融循环次数增加,声发射累计振铃计数呈先增后减的变化趋势,粗粒试样率先达到极大值;③声发射b值演化呈现出波动上升、剧烈下降、平稳3个明显阶段,粗、中、细粒试样的声发射b值在平稳阶段分别降至0.8、1.25和1.65,这一现象可以作为相应粒径冻融类砂岩失稳破坏的前兆预警。 展开更多
关键词 类岩石 冻融循环 不同粒径 声发射 力学特性
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高力学相似性3D打印类煤岩材料研发与成型技术研究进展
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作者 蒋力帅 彭晓涵 +3 位作者 GOLSANAMI Naser 赵烨 张哲 徐清 《煤炭学报》 北大核心 2026年第2期1135-1149,共15页
精确、高效、可重复地制备与真实岩体力学特性和结构特征相符的试样是突破传统岩体力学试验瓶颈的关键。砂型3D打印所制备的试样力学特性与煤、砂岩等软岩相近,是煤岩体物理重构的重要技术和方法。为了解决砂型3D打印类煤岩试样强度偏... 精确、高效、可重复地制备与真实岩体力学特性和结构特征相符的试样是突破传统岩体力学试验瓶颈的关键。砂型3D打印所制备的试样力学特性与煤、砂岩等软岩相近,是煤岩体物理重构的重要技术和方法。为了解决砂型3D打印类煤岩试样强度偏低、应用范围受限的问题,开展了类煤岩试样打印成型全流程探究,研究了打印流程中基质材料、成型参数、后处理工艺等对试样宏观力学特性和微观结构特征的影响规律,提出了基于紧密堆积理论与材料复合增强理论的2种增强改性方法,研发了高力学相似性3D打印类煤岩复合材料。结果表明:在基质材料中,表面粗糙且形貌复杂的机制砂能够增强颗粒间的机械嵌合作用;在成型参数中,适宜的层厚、黏结剂饱和度和固化剂质量分数可改善颗粒间界面黏结强度;在后处理中,延长固化时间以及采用适宜温度的干燥方式均有助于提高试样的致密度与强度;在增强改性方面,优化颗粒级配可构建由大颗粒支撑、小颗粒填充的致密骨架结构,从而显著提升试样的密度与整体力学特性,而引入纤维增强材料则能够通过阻裂与桥接作用抑制裂纹扩展、改善应力分布并提高试样的峰值强度。研究结果揭示了3D打印类煤岩试样宏观力学特性与材料组成、微观结构之间的构效关系,研发得到了适于模拟煤系地层的高力学相似性复合3D打印类煤岩材料以及组分和配比参数,阐明了颗粒级配与纤维增强方法的增强改性机理。 展开更多
关键词 3D打印 类煤岩材料 力学特性 微观结构 颗粒级配 纤维增强
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岩体构造差异风化分带机理及其工程影响研究
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作者 许新滨 庄昕昕 《福建建筑》 2026年第1期20-26,共7页
岩体的“差异风化”,导致土状风化岩体的物理和力学性质在不同区域表现出明显的差异性。通过对土状风化岩体的“带(团)状”分布特征、成因分析及现场勘察验证,并选择若干工程实例,分析土状风化岩“带(团)”特征对天然地基承载力及地基... 岩体的“差异风化”,导致土状风化岩体的物理和力学性质在不同区域表现出明显的差异性。通过对土状风化岩体的“带(团)状”分布特征、成因分析及现场勘察验证,并选择若干工程实例,分析土状风化岩“带(团)”特征对天然地基承载力及地基变形、桩基承载力、风化岩边坡稳定性的影响。相关分析结果,可为岩土工程勘察、设计提供有益的参考。 展开更多
关键词 土状风化岩体 构造差异风化 分带(团)
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流纹岩“类刀砍纹”成因分析及其对储层评价的意义
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作者 李文元 李战奎 +3 位作者 罗鹏 马金鑫 苑仁国 李盼盼 《录井工程》 2026年第1期125-130,共6页
为解释上海佘山流纹岩“类刀砍纹”成因,探讨其对流纹岩储层形成机理与评价方法影响的启示意义,通过野外观察、薄片分析和渤海井下数据分析,划分其发育阶段(裂缝形成期、“I”字形期、“V”字形期、“W”字形期),并深入解析了流纹岩微... 为解释上海佘山流纹岩“类刀砍纹”成因,探讨其对流纹岩储层形成机理与评价方法影响的启示意义,通过野外观察、薄片分析和渤海井下数据分析,划分其发育阶段(裂缝形成期、“I”字形期、“V”字形期、“W”字形期),并深入解析了流纹岩微观孔隙结构与溶蚀特性。结果表明:流纹岩“类刀砍纹”是长期淡水淋滤作用下裂缝优先溶蚀的产物,证实流纹岩具有高基础可溶蚀性,裂缝显著促进次生溶孔形成,二者构成储层形成的核心机理;基于此提出结合元素录井(K元素表征溶蚀因子、Si元素表征脱玻化因子)及标准化机械比能模型(裂缝因子)的储层评价方法,并通过层次分析法(AHP)建立不同分带(风化壳/母岩带)的综合评价模型,最终在渤海X井应用中与测井解释符合率达91%,为火山岩储层溶蚀-裂缝耦合机制提供了关键实证与理论支撑。 展开更多
关键词 流纹岩 类刀砍纹 火山岩储层 裂缝溶蚀 储层评价 层次分析法
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结构面层数与倾角对类岩体力学特性的影响及其损伤演化规律
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作者 冯磊 吝曼卿 +3 位作者 夏元友 张电吉 张岸勤 卢祥龙 《化工矿物与加工》 2025年第9期26-38,共13页
沉积型磷块岩具有典型的层状硬性结构面,在开挖扰动作用下存在不同程度的破坏。为研究含硬性结构面岩体中结构面层数与倾角对其稳定性的影响,预制了含0、1、2、3层和0°、10°、20°倾角结构面类岩体标准试件,对其开展单轴... 沉积型磷块岩具有典型的层状硬性结构面,在开挖扰动作用下存在不同程度的破坏。为研究含硬性结构面岩体中结构面层数与倾角对其稳定性的影响,预制了含0、1、2、3层和0°、10°、20°倾角结构面类岩体标准试件,对其开展单轴压缩力学试验,以模拟地下矿房中矿柱的受力环境;分析类岩体试件的宏观破坏、力学特性及红外特性,并建立了含硬性结构面类岩体损伤演化模型。研究结果表明:①结构面层数和倾角对类岩体的力学特性和破坏模式具有显著影响,层数和倾角的增加使得岩体更容易发生层间错动及形成次生裂隙,导致岩体稳定性下降;含结构面类岩体试件的应力-应变曲线可划分为4个阶段,即压密调整、错动塑性、破裂峰显和峰后残余阶段;随着结构面倾角的增大,峰值应力呈下降趋势;而结构面层数的增加导致峰值应变增大,弹性模量下降。②红外辐射温度曲线可划分为4个阶段,即平静孕育、异常突显、高温陡增和跌落消散阶段;在加载初期,含结构面类岩体试件表现出层间错动引发的红外热像异常现象,异常的热像条带区与最终破坏区高度吻合;红外热像技术能够有效监测含结构面岩体的损伤演化,识别潜在风险区域,可为工程安全评估提供实时数据支持。③结构面层数和倾角的增加使得试件的损伤变量增大,尤其在结构面倾角达到20°时,结构面层数越多,损伤累积量越大;建立的损伤演化模型能够有效反映不同结构面层数和倾角下类岩体的损伤过程。研究成果为含硬性结构面岩体在开挖扰动下的稳定性分析提供了新思路,也可为工程实践中的岩体稳定性评估和灾害预警提供参考。 展开更多
关键词 硬性结构面 类岩体 层理 力学特性 损伤演化 开挖扰动 稳定性 结构面倾角
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煤系坚硬顶板类岩石材料配比试验研究 被引量:1
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作者 兰永青 乔元栋 +3 位作者 李永明 程虹铭 雷利兴 董川龙 《金属矿山》 北大核心 2025年第4期78-86,共9页
针对煤系坚硬顶板类岩石材料配比问题,以水胶比、骨料粒径为影响因素,设计了2因素3水平的不同材料配比正交试验。将单轴抗压强度(σ_(c))、抗拉强度(σ_(t))、材料变形指标(E/σ_(c))和脆性指标(σ_(c)/σ_(t))作为试验响应变量,进行了... 针对煤系坚硬顶板类岩石材料配比问题,以水胶比、骨料粒径为影响因素,设计了2因素3水平的不同材料配比正交试验。将单轴抗压强度(σ_(c))、抗拉强度(σ_(t))、材料变形指标(E/σ_(c))和脆性指标(σ_(c)/σ_(t))作为试验响应变量,进行了基于上述正交试验类岩石材料配比主控因素敏感性和显著性分析,获取了响应变量随类岩石材料配比的变化规律。结果表明:不同材料配比的类岩石试件应力—应变曲线及破裂形态与原岩试件一致;水胶比是控制类岩石试件力学参数响应的主控因素,对σ_(c)、σ_(t)和σ_(c)/σ_(t)具有极强的显著性影响,对E/σ_(c)具有较强显著影响;骨料粒径对σ_(c)、σ_(t)具有较强显著性影响,对E/σ_(c)、σ_(c)/σ_(t)无显著性影响。进一步,建立了类岩石材料4个力学响应量关于材料配比的二元多项式回归模型,获取了材料配比下各力学参数的拟合系数;并组建了4个力学响应量的二元多项式回归模型方程组,以测试值与计算值的最小残差平方和作为判据,采用最小二乘法获取了最佳类岩石材料水胶比和骨料粒径,其值分别为0.43和2 mm。最后,以最佳材料配比制备坚硬顶板类岩石试件,经测试配制的类岩石试件的σ_(c)。σ_(t)、E/σ_(c)和σ_(c)/σ_(t)相对原岩试件,其误差值分别为9.2%、4.2%、8.9%和5.2%,均小于10%。 展开更多
关键词 类岩石材料 正交试验 力学参数 极差分析 方差分析
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类岩石材料颗粒流模型的细观参数标定方法研究——半解析查表法(SLT) 被引量:1
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作者 缪露莉 刘新荣 +2 位作者 傅晏 周小涵 郭雪岩 《岩土工程学报》 北大核心 2025年第6期1259-1269,共11页
为了研究类岩石材料颗粒流模型的细观参数标定方法,基于CBM模型,首先进行了理论推导,而后基于大量的数值模拟获得了理论关系式中系数的拟合值,最终形成半解析查表法。研究表明:接触黏结的强度比对数值试件的细观破坏模式有重要影响;代... 为了研究类岩石材料颗粒流模型的细观参数标定方法,基于CBM模型,首先进行了理论推导,而后基于大量的数值模拟获得了理论关系式中系数的拟合值,最终形成半解析查表法。研究表明:接触黏结的强度比对数值试件的细观破坏模式有重要影响;代表性单元体与实际颗粒流模型具有相同的宏、细观参数变化规律,且各系数的理论值与拟合值基本相符;单轴抗压强度、黏聚力与接触黏结强度的较小值min(σ_(cn),τ_(cs))呈较好的线性相关;细观参数的标定是具有明确的先后顺序的。最后通过标定砂岩的细观参数来证实半解析查表法是能够用于快速的完成参数标定的。 展开更多
关键词 颗粒流(PFC) 细观参数 标定方法 类岩石材料 CBM
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类软岩真三轴劈裂注浆裂隙扩展特征研究 被引量:1
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作者 乔龙全 常聚才 +2 位作者 严良欢 齐潮 史文豹 《岩土力学》 北大核心 2025年第3期833-850,共18页
地层软岩在劈裂注浆加固过程中裂隙扩展特征不明,经验化注浆参数设计不能有效加固围岩。为研究原位软岩劈裂注浆裂隙扩展特征,通过类软岩真三轴劈裂注浆试验,结合声发射参数特征,获得了不同主应力差与不同预制裂隙角度对裂隙扩展的影响... 地层软岩在劈裂注浆加固过程中裂隙扩展特征不明,经验化注浆参数设计不能有效加固围岩。为研究原位软岩劈裂注浆裂隙扩展特征,通过类软岩真三轴劈裂注浆试验,结合声发射参数特征,获得了不同主应力差与不同预制裂隙角度对裂隙扩展的影响规律,并采用理论分析与数值模拟方法对在三向应力下软岩试件劈裂压力差异及劈裂裂隙扩展转向机制进行讨论。结果表明:劈裂裂隙面与水平方向的夹角与其起伏程度随主应力差的增大而减小,劈裂过程中试件剪切裂纹占比随垂直压力增大而先减少后稳定;随着预制裂隙与垂直主应力夹角不断增大,初次劈裂压力先增大后减小,预制裂隙角度为0°与90°时,预制裂隙对劈裂裂隙扩展方向影响较小,预制裂隙为60°时,劈裂裂隙与预制裂隙发生贯通,预制裂隙角度为30°时,劈裂裂隙在浆液高压力的作用下转向交错;结合裸孔劈裂理论,对三向应力下劈裂压力差异与转向机制进行分析,软岩试件所受最大主应力与最小主应力的比值越大,其三向应力裸孔内劈裂的抗拉强度与巴西法测得抗拉强度的比值越小,劈裂裂隙初次劈裂扩展方向为裸孔环向压应力最小方向,扩展过程中会向预制裂隙两端应力集中处偏转,岩体应力分布变化是导致劈裂裂隙扩展转向主要原因。 展开更多
关键词 劈裂注浆 类软岩 真三轴 主应力差 预制裂隙
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基于DEM的孔洞数量对多孔类岩石材料拉剪力学特征的影响 被引量:1
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作者 赵铁永 方传峰 +2 位作者 吴根水 刘迅 胡晨晖 《科技和产业》 2025年第6期24-29,共6页
多孔类岩石材料的拉剪力学特性影响工程的安全性与稳定性。构建含不同孔洞数量的数值模型,通过DEM法开展直接拉伸与直剪试验的数值模拟,探究孔洞数量对材料拉剪力学特征的影响。结果表明,随孔洞数量增加,抗拉强度、压拉强度比、凝聚力... 多孔类岩石材料的拉剪力学特性影响工程的安全性与稳定性。构建含不同孔洞数量的数值模型,通过DEM法开展直接拉伸与直剪试验的数值模拟,探究孔洞数量对材料拉剪力学特征的影响。结果表明,随孔洞数量增加,抗拉强度、压拉强度比、凝聚力和内摩擦角以不同形式下降。另外,拉伸作用下裂隙主要沿水平方向生成且不受孔洞数量影响,剪切作用下裂隙主要沿与水平方向一定角度生成,孔洞数量增加主要导致剪切作用下裂隙产状的各向异性下降。 展开更多
关键词 离散元数值模拟 孔洞数量 多孔类岩石材料 拉剪力学特性
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