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电力综合大楼结构转换层支模质量控制
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作者 任建华 《贵州电力技术》 2013年第7期48-51,共4页
通过对转换层粱支撑系统荷载分析,采用设计图断面和配筋反算竖向承栽力,挖掘转换层下各层梁竖向荷载作用下的潜力,减少支撑。在计算支撑层数和各层支撑数量时,进行多方案分析比选后,采用经验系数进行单个梁计算,计算足够精确,只要构造合... 通过对转换层粱支撑系统荷载分析,采用设计图断面和配筋反算竖向承栽力,挖掘转换层下各层梁竖向荷载作用下的潜力,减少支撑。在计算支撑层数和各层支撑数量时,进行多方案分析比选后,采用经验系数进行单个梁计算,计算足够精确,只要构造合理,安全是可靠的。而且通过对都匀供电局综合楼结构转换层的具体实施证明,用本文简化计算方法计算是完全可行的,比按设计荷栽核算可节约支撑1至2层。既节约了施工费用,又缩短施工周期。 展开更多
关键词 综合楼 结构转换层 支模质量 计算方法 控制
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Application of a transversely isotropic brittle rock mass model in roof support design 被引量:1
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作者 David Oliveira 《International Journal of Mining Science and Technology》 SCIE EI 2012年第5期639-643,共5页
Accurate modelling of the potential failure modes in the rock mass is an essential task towards a robust design of roof support systems in coal mines.The use of generalised rock mass properties based on averaged prope... Accurate modelling of the potential failure modes in the rock mass is an essential task towards a robust design of roof support systems in coal mines.The use of generalised rock mass properties based on averaged properties(e.g.Hoek-Brown model) has been found to limit the capability to reproduce the actual rock mass behaviour which may include a wide range of interacting and complex failure mechanisms such as shear and tension fracturing of the intact rock and shear and separation of pre-existing discontinuities,including re-activation.Recent studies have also shown that traditional models,such as the Mohr-Coulomb,may not accurately describe the behaviour of the intact rock,particularly for stress induced failures where spalling and slabbing are observed.This is mainly due to the cohesion and friction components of the shear strength of the intact rock not being mobilised at the same rate with strain-softening of the former component playing an essential role in the post peak behaviour.In addition,coal measure rocks are often transversely isotropic,both by way of the preferred orientation of clay particles within the finer grained lithology and by bedding textures and bedding partings,and this is often ignored in computer simulations.A newly developed transversely isotropic brittle rock mass model is applied in the simulation of a hypothetical and simple roadway development.A Cohesion Weakening-Friction Strengthening(CWFS) approach is adopted to describe the intact rock where the mobilisation and strain-softening of the two shear strength components are linked to plastic deformation.The impacts of anisotropy and brittle rock on the development of the excavation disturbed zone or height of softening,as often referred to,are investigated and their implication in the roof support design discussed. 展开更多
关键词 Transverse isotropy Brittle behaviour Cohesion weakening-friction strengthening Ubiquitous joints
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