共查询到19条相似文献,搜索用时 80 毫秒
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工程中预裂爆破参数确定方法通常为经验类比法。该方法以经验公式为基础,存在理论依据较为缺乏等缺点。为此,引入岩石爆破损伤、应力波和爆生气体共同作用等理论,在考虑岩石初始损伤等影响因素的基础上,提出预裂爆破参数计算式。基于提出的理论方法,在现场开展了预裂爆破试验。针对爆破试验,比较了采用经验类公式和提出的理论计算式得到的线装药密度,并对爆破效果进行了分析。试验结果表明,预裂爆破效果良好。考虑爆破损伤效应的爆破参数确定方法比经验类比法合理。最后,在提出的理论计算方法基础上,给出了实际工程中确定预裂爆破参数的建议。 相似文献
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基于试验资料,考虑了由裂纹扩展导致的岩石扩容,给出了损伤变量及其演化方程,建立了岩石流变损本构关系和有限元迭代格式。用Fortran语言编制了程序,并进行了算例分析。 相似文献
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考虑到天然岩石存在不同程度初始损伤以及蠕变过程中岩石受载后裂隙扩展而导致的新损伤,对具有初始损伤的岩石蠕变特性进行全面描述。根据不闭合结构面应力与法向变形之间的关系,提出裂隙岩石塑性变形体元件,描述岩石蠕变过程中的瞬时塑性变形。引入初始损伤影响因子,建立具有初始损伤的岩石损伤变量演化方程,构建模拟岩石加速蠕变的蠕变损伤体元件。将裂隙岩石塑性变形体和蠕变损伤体与描述瞬时弹性变形和黏弹性变形的广义开尔文模型进行串联组合,形成能够反映具有初始损伤的岩石瞬时弹-塑性变形、稳定蠕变和加速蠕变的蠕变全过程本构模型,提出了进行少量蠕变试验既能解析模型参数的方法,在不同应力水平下模型理论曲线与蠕变试验曲线吻合。 相似文献
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基于正态分布的岩石损伤统计本构模型及其参数确定方法研究 总被引:1,自引:0,他引:1
根据岩石微元强度服从正态分布的特点,引进能合理描述岩石微元强度的参量,基于岩石三轴应力应变试验曲线建立了反映岩石破裂全过程的统计损伤本构模型.在此基础上,重点探讨了正态分布参数对岩石损伤本构模型的影响,据此对岩石统计损伤模型进行了合理修正,从而建立了反映岩石破裂全过程的三维统计损伤本构模型,与试验结果及现有研究结果进行比较显示了该模型的合理性,具有广泛的应用前景. 相似文献
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岩石低周疲劳损伤模型与损伤变量表达方法 总被引:2,自引:3,他引:2
在岩石(体)工程领域,周期荷载作用下岩石的疲劳破坏特性与岩体的长期稳定性密切相关。针对目前对混凝土疲劳损伤研究较多,但对岩石疲劳损伤研究相对较少这一现状,运用损伤力学方法对以累积塑性应变表达的损伤变量进行了分析,指出了目前常用的以累积塑性应变表达的损伤变量表达式存在的理论上的缺点,建立了一种新的岩石疲劳损伤变量表达方法。为研究岩石在疲劳荷载作用下力学性能不断劣化的过程,从连续介质损伤力学的基本理论出发,分析岩石在疲劳荷载下的损伤发展和变形规律,并考虑岩石材料的硬化特性,推导了低周疲劳损伤演化方程,经低周疲劳试验数据分析,所建模型可以较好地反映岩石的疲劳损伤演化规律,可用于岩石在低周疲劳荷载作用下的有限元分析。 相似文献
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本文定义岩石构元中破裂面的分维值为各向同性损伤变量,而各个方向上裂纹面的累加量定义为各向异性损伤变量,并根据裂纹发育特征提出了损伤变量演化方程,从而建立起岩石脆性变形破坏过程的分维损伤本构模型。最后,利用该模型对大理岩单轴压缩应力应变曲线进行了模拟,结果说明本文提出的模型是较为合理的。 相似文献
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岩石损伤软化统计本构模型及参数确定方法的新探讨 总被引:3,自引:2,他引:3
基于现有岩石损伤软化统计本构模型研究,通过探讨岩石损伤软化统计本构模型参数与岩石应力-应变全程曲线特征参数即峰值应力与应变的关系,建立起特定围压下模型参数与围压的解析表达式。引进岩石Mohr-Coulomb强度准则,建立不同围压下岩石应力-应变全程曲线峰值应力与围压之间的关系,再通过探讨不同岩石应力-应变全程曲线峰值应变与围压的关系,导出了具有普遍意义的不同围压下岩石峰值应变计算公式,从而建立岩石损伤软化统计本构模型参数确定的新方法,由此得到能够模拟不同围压下岩石应变软化全过程的统一损伤软化统计本构模型。该模型较同类模型具有参数少和易于确定等特点,理论计算和实测结果比较分析表明了该方法与模型的合理性。 相似文献
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This paper presents a micromechanics-based elastoplastic damage model for quasi-brittle rocks under a compressive stress state. The plastic strain is considered to be related to frictional sliding along micro-cracks, and it is coupled inherently with damage evolution. By following a homogenization procedure, we determine the free energy of the matrix-cracks system. The thermodynamic force associated with the inelastic strain contains a back stress, which controls material hardening. Next, in order to determine plastic flow and crack propagation, we propose a Coulomb-type friction criterion, which is used as the plastic yielding function, and a damage criterion based on strain energy release rate. These thermodynamic formulations with a micro–macro scale change allow reducing significantly the number of model parameters, as compared to phenomenological models. Our model is applied to simulate triaxial compression tests on two sets of diabase samples. The first sample set is cored from a fresh diabase rock mass, and the second from a slightly weathered one. Comparisons between numerical predictions and test data are presented. 相似文献
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本文提出岩体结构面适应性平行板模型和该模型的参数确定方法——三段压水试验新解释,新的模型有益于克服将结构面圆盘模型应用于地下水模拟中的局限性;基于结构面起伏度对地下水流动的影响,导出了起伏度修正系数解析表达式。 相似文献
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双标量描述的土的损伤模型及其应用 总被引:4,自引:0,他引:4
根据双标量各向同性弹性损伤理论,提出了一个土体损伤模型,给出了相应的损伤演化方程。将其运用到地基土的静载荷试验中,采用修正分层总和法得到了地基土的理论荷载-沉降曲线,与实测曲线进行比较,验证了本模型的正确性。 相似文献
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In this paper, a coupled constitutive model is proposed for anisotropic damage and permeability variation in brittle rocks under deviatoric compressive stresses. The formulation of the model is based on experimental evidences and main physical mechanisms involved in the scale of microcracks are taken into account. The proposed model is expressed in the macroscopic framework and can be easily implemented for engineering application. The macroscopic free enthalpy of cracked solid is first determined by approximating crack distribution by a second‐order damage tensor. The effective elastic properties of damaged material are then derived from the free enthalpy function. The damage evolution is related to the crack growth in multiple orientations. A pragmatic approach inspired from fracture mechanics is used for the formulation of the crack propagation criterion. Compressive stress induced crack opening is taken into account and leads to macroscopic volumetric dilatancy and permeability variation. The overall permeability tensor of cracked material is determined using a micro–macro averaging procedure. Darcy's law is used for fluid flow at the macroscopic scale whereas laminar flow is assumed at the microcrack scale. Hydraulic connectivity of cracks increases with crack growth. The proposed model is applied to the Lac du Bonnet granite. Generally, good agreement is observed between numerical simulations and experimental data. Copyright © 2005 John Wiley & Sons, Ltd. 相似文献
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A new model for describing induced anisotropic damage in brittle rocks is proposed. Although phenomenological, the model is based on physical grounds of micromechanical analysis. Induced damage is represented by a second rank tensor, which is related to the density and orientation of microcracks. Damage evolution is related to the propagation condition of microcracks. The onset of microcrack coalescence leading to softening behaviour is also considered. The effective elastic compliance of the damaged material is obtained from a specific form of Gibbs potential. Irreversible damage‐related strains due to residual opening of microcracks after unloading are also captured. All the model's parameters could be determined from conventional triaxial compression tests. The proposed model is applied to a typical brittle rock. Comparison between test data and numerical simulations shows an overall good agreement. The proposed model is able to describe the main features related to induced microcracks in brittle geomaterials. Copyright © 2002 John Wiley & Sons, Ltd. 相似文献