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深基坑岩石裂隙水降排止水施工关键技术研究 被引量:1
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作者 管子良 任昌国 刘书蔚 《建筑机械化》 2022年第10期61-63,共3页
针对沿海地区以煌斑岩岩脉等复杂地质条件深基坑岩石裂隙水降排止水关键技术进行了系统介绍,采用人工配合机械设置的降排水措施良好地解决了岩石裂隙水大量涌出导致基坑开挖及施工困难的问题,使降排水后的场地条件满足了施工要求,提高... 针对沿海地区以煌斑岩岩脉等复杂地质条件深基坑岩石裂隙水降排止水关键技术进行了系统介绍,采用人工配合机械设置的降排水措施良好地解决了岩石裂隙水大量涌出导致基坑开挖及施工困难的问题,使降排水后的场地条件满足了施工要求,提高了施工质量、缩短了施工周期、节省了施工成本,为其他类似工程施工提供参考。 展开更多
关键词 深基坑 帷幕 岩石裂隙水 降排
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商业综合体地下室底板疏水施工
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作者 王晓伟 《科技与创新》 2014年第19期78-78,85,共2页
阐述了商业综合体地下室的疏水工程,包括各个工艺环节的要点、要求和安全性。
关键词 混凝土 底板裂缝 岩石裂隙水 工程
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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:11
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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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Effect of fissure water on mechanical characteristics of rock mass
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作者 ZHANG Haibo ZHANG Wei +1 位作者 LV Lei FENG Yan 《Mining Science and Technology》 EI CAS 2010年第6期846-849,共4页
In view of the effect of fissure water in fractured rock mass on the strength of rock mass in engineering projects, we pre-pared specimens of cement mortar to simulate saturated rock mass with continuous fractures of ... In view of the effect of fissure water in fractured rock mass on the strength of rock mass in engineering projects, we pre-pared specimens of cement mortar to simulate saturated rock mass with continuous fractures of different slope angles. By exerting static and dynamic loads on the specimens, the mechanical characteristics of rock mass with fissure water under these loads can be analyzed. Our experimental results indicate that the static compressive strength of saturated fractured rock mass is related to the slope angle. The lowest compressive strength of fractured rock mass occurs when the slope angle is 45°, while the highest strength occurs when the specimen has no fractures. Fissure water can weaken the strength of rock mass. The softening coefficient does not vary with the slope angle and type of load. The hydrodynamic pressure of fractured rock mass gradually increases with an increase in dynamic load. For a 0° slope angle, the hydrodynamic pressure reaches its highest level. When the slope angle is 90°, the hydro-dynamic pressure is the lowest. 展开更多
关键词 fractured rock mass SIMULATION fissure water SHPB hydrodynamic pressure
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