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节理倾角对砂岩强度及物理特征的影响 被引量:6
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作者 王瑞红 李万文 +2 位作者 刘杰 蒋昱州 黄飞 《长江科学院院报》 CSCD 北大核心 2018年第6期70-74,80,共6页
节理岩体广泛存在于实际工程中,深入研究节理倾角对岩体强度和物理特征的影响,对节理岩体工程稳定性研究具有重要的意义。通过完整及含不同节理倾角岩样在不同围压下的三轴加载破坏试验及声波测试试验,探讨了节理倾角对砂岩强度及物理... 节理岩体广泛存在于实际工程中,深入研究节理倾角对岩体强度和物理特征的影响,对节理岩体工程稳定性研究具有重要的意义。通过完整及含不同节理倾角岩样在不同围压下的三轴加载破坏试验及声波测试试验,探讨了节理倾角对砂岩强度及物理特性的影响规律。试验结果表明:(1)随着节理倾角的变化,岩样纵波波速衰减率有所不同,节理倾角为60°时岩样波速衰减率最大。(2)节理岩样的弹性模量随倾角大小的变化规律是:E完整>E90°>E30°>E60°。(3)在同一节理倾角下,岩样峰值强度随着围压的增加而增大;在同一围压下,岩样峰值强度随着节理倾角的变化表现出明显的各向异性。(4)节理岩样的黏聚力随着节理倾角的变化呈现出U型的变化趋势,且在节理倾角为60°时黏聚力最小;同时内摩擦角随着节理倾角的增大而逐渐增大。由上述成果可知,节理倾角对砂岩强度和物理特性影响较大,节理倾角为60°时,影响程度最大。 展开更多
关键词 节理岩体 节理倾角 三轴加载破坏试验 声波测试试验 砂岩强度 物理特征
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砂岩强度的估算研究及应用——以南水北调中线安阳段为例 被引量:1
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作者 王杰 林达明 +1 位作者 马凤山 李克蓬 《吉林大学学报(地球科学版)》 EI CAS CSCD 北大核心 2013年第5期1549-1555,共7页
为了获得合理的施工设计岩石强度参考值,以南水北调安阳段砂岩为例开展了3种岩石强度估算方法的研究:1)引进标准条件下风钎钻进时间作为指标来估算岩石的单轴抗压强度;2)收集已有成果给出利用波速估算岩石单轴抗压强度的公式;3)... 为了获得合理的施工设计岩石强度参考值,以南水北调安阳段砂岩为例开展了3种岩石强度估算方法的研究:1)引进标准条件下风钎钻进时间作为指标来估算岩石的单轴抗压强度;2)收集已有成果给出利用波速估算岩石单轴抗压强度的公式;3)根据试验数据拟合出安阳地区点荷载强度与岩石单轴抗压强度间的经验关系式。通过上述方法得到了3种不同的岩石强度估算公式,并以AY33+600为例,综合利用所得公式进行了砂岩强度估算,发现这3种方法吻合度很高,且与砂岩室内试验强度值间的误差为2%~9%。上述公式在安阳段的应用解决了原设计方案中围岩分级不准的问题。 展开更多
关键词 砂岩强度估算 声波 点荷载强度 风钎钻进时间
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砂岩强度MTS试验及阶段特征的混沌动力学研究 被引量:5
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作者 刘传孝 《岩土力学》 EI CAS CSCD 北大核心 2004年第12期1910-1914,共5页
采用 MTS815.03 电液伺服岩石试验系统对三种强度的砂岩进行全应力-应变试验研究,得出试验曲线呈明显的分段特征,曲线的离散性发生于应变软化阶段。通过对试验数据序列的混沌动力学分析得出:随着单向抗压强度的增加,砂岩全应力-应变过... 采用 MTS815.03 电液伺服岩石试验系统对三种强度的砂岩进行全应力-应变试验研究,得出试验曲线呈明显的分段特征,曲线的离散性发生于应变软化阶段。通过对试验数据序列的混沌动力学分析得出:随着单向抗压强度的增加,砂岩全应力-应变过程的系统状态由强混沌态逐渐演化到低混沌态,进而质变为较有序的定常态;砂岩峰后应力-应变阶段曲线的线性性质增强,裂隙系统状态由强混沌态向强有序的定常态演化;砂岩峰前阶段的裂隙系统基本呈现弱混沌状态。该试验方法可靠,对砂岩强度阶段特征的混沌分析具有一定的理论意义。 展开更多
关键词 MTS 砂岩强度 阶段特征 混沌 动力学 裂隙系统
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中等强度砂岩饱水力学参数变化试验及动态出砂规律 被引量:9
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作者 董长银 周崇 +4 位作者 钟奕昕 王鹏 崔明月 曾思睿 尚校森 《中国石油大学学报(自然科学版)》 EI CAS CSCD 北大核心 2017年第6期108-116,共9页
为了研究含水条件变化对砂岩储层出砂的定量影响规律,对国外某油田N储层中等强度砂岩27块岩心进行不同饱水时间和饱水度条件下的三轴强度破坏试验,测试不同围压三轴破坏强度、弹性模量、泊松比以及内聚力、内摩擦角随饱水时间和饱水度... 为了研究含水条件变化对砂岩储层出砂的定量影响规律,对国外某油田N储层中等强度砂岩27块岩心进行不同饱水时间和饱水度条件下的三轴强度破坏试验,测试不同围压三轴破坏强度、弹性模量、泊松比以及内聚力、内摩擦角随饱水时间和饱水度的变化。试验揭示中等强度砂岩力学参数随饱水度的变化规律。根据试验数据,利用极限稳定强度指数模型拟合岩心力学强度参数随饱水时间和饱水度的变化经验关系式,用于该储层的动态出砂临界条件预测。结果表明:在饱水时间为0~50 d内,不同围压下的三轴破坏强度、弹性模量随着饱水时间明显下降,饱水50 d时围压40 MPa下的破坏强度和弹性模量均下降约30%;随着饱水度从0增加到100%,岩心三轴破坏强度、内聚力和弹性模量先降低较快,然后趋于稳定,最终无量纲强度比约为72%;该储层含水饱和度上升至0.85时,储层出砂临界压差下降25%~30%,而地层压力下降30%情况下,出砂临界压差降低10%~11%;未来含水上升和地层压力下降是导致该储层出砂的主要诱发条件。 展开更多
关键词 中等强度砂岩 饱水度 饱水时间 力学强度参数 三轴破坏试验 动态出砂预测
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酸损伤降低砂岩储层破裂压力实验研究 被引量:5
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作者 曾凡辉 郭建春 赵金洲 《西南石油大学学报(自然科学版)》 CAS CSCD 北大核心 2009年第6期93-96,共4页
针对压裂改造提高低渗透油气藏开采效果的关键问题,以砂岩储层为研究对象,从砂岩强度的本质分析出发,研究了砂岩典型单矿物与酸液体系的反应过程和机理;利用矿物结构分析、离子浓度测定、衍射、能谱分析等实验研究手段,研究了砂岩酸损... 针对压裂改造提高低渗透油气藏开采效果的关键问题,以砂岩储层为研究对象,从砂岩强度的本质分析出发,研究了砂岩典型单矿物与酸液体系的反应过程和机理;利用矿物结构分析、离子浓度测定、衍射、能谱分析等实验研究手段,研究了砂岩酸损伤通过改变砂岩矿物成分、晶体结构,降低岩石强度的机理。为酸损伤降低砂岩储层破裂压力技术的应用提供了依据。 展开更多
关键词 低渗透 异常破裂压力 酸损伤 砂岩强度 实验研究
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Exploration of weakening mechanism of uniaxial compressive strength of deep sandstone under microwave irradiation 被引量:14
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作者 YANG Ben-gao GAO Ming-zhong +6 位作者 XIE Jing LIU Jun-jun WANG Fei WANG Ming-yao WANG Xuan WEN Xiang-yue YANG Zhao-ying 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第2期611-623,共13页
Traditional mechanical rock breaking method is labor-intensive and low-efficient,which restrictes the development of deep resources and deep space.As a new rock-breakage technology,microwave irradiation is expected to... Traditional mechanical rock breaking method is labor-intensive and low-efficient,which restrictes the development of deep resources and deep space.As a new rock-breakage technology,microwave irradiation is expected to overcome these problems.This study examines the failure characteristics,weakening law,and breakdown mechanism of deep sandstone(depth=1050 m)samples in a microwave field.The macroscopic and microscopic properties were determined via mechanical tests,mesoscopic tests,and numerical simulations.Microwave application at 1000 W for 60 s reduced the uniaxial compressive strength of the sandstone by 50%.Thermal stress of the sandstone was enhanced by uneven expansion of minerals at the microscale.Moreover,the melting of some minerals in the high-temperature environment changed the pore structure,sharply reducing the macroscopic strength.The temperature remained high in the lower midsection of the sample,and the stress was concentrated at the bottom of the sample and along its axis.These results are expected to improve the efficiency of deep rock breaking,provide theoretical and technical support for similar rock-breakage projects,and accelerate advances in deep-Earth science. 展开更多
关键词 MICROWAVE SANDSTONE uniaxial compressive strength weakening mechanism
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Stabilization of saline silty sand using lime and micro silica 被引量:17
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作者 R.Z.Moayed E.Izadi S.Heidari 《Journal of Central South University》 SCIE EI CAS 2012年第10期3006-3011,共6页
Many construction and post-construction problems have been reported in the literature when saline soils have been used without understanding of their abnormal behavior,especially their inferior bearing capacity in the... Many construction and post-construction problems have been reported in the literature when saline soils have been used without understanding of their abnormal behavior,especially their inferior bearing capacity in the natural condition.The strength of these soils further decreases on soaking.Saline soil deposits cover extensive areas in central Iran and are associated with geotechnical problems such as excessive differential settlement,susceptibility to strength loss and collapse upon wetting.Because of these characteristics,some of the roads constructed on saline soils in Taleghan area have exhibited deterioration in the form of raveling,cracking and landslides.The main objective of this work is to improve the load-bearing capacity of pavements constructed on Taleghan saline soils using lime and micro silica.Soil samples from Hashtgerd-Taleghan road were collected and tested for improving their properties using lime and micro silica at different dosages ranging from 0 to 6%.The load-bearing capacity of stabilized soil mixtures was evaluated using California Bearing Ratio(CBR) and unconfined compressive strength tests.The test results indicate that the lime improves the performance of soil significantly.The addition of 2% lime with 3% micro silica has satisfied the strength-deformation requirements.Therefore,improved soil can be used as a good subbase in flexible pavements. 展开更多
关键词 lime stabilization saline soil micro silica bearing capacity compressive strength flexible pavements
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Field tests on mechanical characteristics and strength parameters of red-sandstone 被引量:3
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作者 蒋建清 杨果林 《Journal of Central South University》 SCIE EI CAS 2010年第2期381-387,共7页
Large-scale field shear tests on ten specimens of the red-sandstone embankment at a highway in Hunan,China,were performed to examine mechanical characteristics and parameters of red-sandstone.The curves of thrust-disp... Large-scale field shear tests on ten specimens of the red-sandstone embankment at a highway in Hunan,China,were performed to examine mechanical characteristics and parameters of red-sandstone.The curves of thrust-displacement,failure mode,and shear strength parameters for red-sandstone with different water contents,different compactions,and different grain size distributions were obtained from the tests.A practical procedure of in-situ test for red-sandstone embankment was proposed to normalize the test equipment and test steps.Based on three-dimensional thrust-sliding limit equilibrium method,the formulas for calculating strength parameters of red-sandstone considering three-dimensional sliding surface were inferred.The results show that red-sandstone has typical complete curves of stress-strain,strain softening,which are caused by the special structure of red-sandstone;water content and compaction are important factors for strength and failure mode of red-sandstone;The average value of cohesion and internal friction angle of the specimens calculated by three-dimensional technique are 21.56 kPa and 29.29°,respectively,and those by traditional two-dimensional method are 25.52 kPa and 33.76°,respectively. 展开更多
关键词 red-sandstone large-scale field test mechanical characteristic strength parameter
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A cohesion loss model for determining residual strength of deep bedded sandstone
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作者 SONG Zhi-xiang ZHANG Jun-wen +12 位作者 ZHANG Yu-jie WU Shao-kang BAI Xu-yang ZHANG Li-chao ZHANG Sui-lin ZHANG Xu-wen FAN Guang-chen LI Wen-jun ZENG Ban-quan WANG Shi-ji SUN Xiao-yan SANG Pei-miao LI Ning 《Journal of Central South University》 2025年第7期2593-2618,共26页
Rock residual strength,as an important input parameter,plays an indispensable role in proposing the reasonable and scientific scheme about stope design,underground tunnel excavation and stability evaluation of deep ch... Rock residual strength,as an important input parameter,plays an indispensable role in proposing the reasonable and scientific scheme about stope design,underground tunnel excavation and stability evaluation of deep chambers.Therefore,previous residual strength models of rocks established were reviewed.And corresponding related problems were stated.Subsequently,starting from the effects of bedding and whole life-cycle evolution process,series of triaxial mechanical tests of deep bedded sandstone with five bedding angles were conducted under different confining pressures.Then,six residual strength models considering the effects of bedding and whole life-cycle evolution process were established and evaluated.Finally,a cohesion loss model for determining residual strength of deep bedded sandstone was verified.The results showed that the effects of bedding and whole life-cycle evolution process had both significant influences on the evolution characteristic of residual strength of deep bedded sandstone.Additionally,residual strength parameters:residual cohesion and residual internal friction angle of deep bedded sandstone were not constant,which both significantly changed with increasing bedding angle.Besides,the cohesion loss model was the most suitable for determining and estimating the residual strength of bedded rocks,which could provide more accurate theoretical guidance for the stability control of deep chambers. 展开更多
关键词 residual strength deep bedded sandstone whole life-cycle evolution process cohesion loss model rock mechanics
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