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差异沉降影响下柱荷载重分布试验研究与计算 被引量:1
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作者 刘朋辉 于东健 +1 位作者 张新武 杜风雷 《土木工程学报》 EI CSCD 北大核心 2019年第A02期102-109,共8页
差异沉降是影响上部结构内力重分布和造成结构安全事故的主要原因。结合已有的研究成果,对单柱模型、3×3跨模型和主裙一体模型进行试验研究,得出考虑共同作用的上部结构在差异沉降下柱荷载重分布基本规律:3×3跨模型随着基础... 差异沉降是影响上部结构内力重分布和造成结构安全事故的主要原因。结合已有的研究成果,对单柱模型、3×3跨模型和主裙一体模型进行试验研究,得出考虑共同作用的上部结构在差异沉降下柱荷载重分布基本规律:3×3跨模型随着基础挠度的增大,角柱与平均柱轴力的比值由0.57增加至0.68,边柱与平均柱轴力的比值由0.85增加至1.0;高低层复杂结构,当外挑裙房3跨时,主楼边轴位置柱和3跨裙房边轴位置柱有较大的增长。通过有限元软件计算对比,指出其应具体的考虑方法和应注意的问题,可供设计人员在实际工程中参考。 展开更多
关键词 共同作用 差异沉降 柱荷载 重分布 试验研究
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十字交叉地基梁柱荷载分配工程实用统一算法 被引量:9
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作者 陈沙 王贻荪 《勘察科学技术》 1999年第4期42-46,54,共6页
该文基于无限长文克尔梁的解答,推导出具有悬挑的十字交叉基础梁柱荷载分配系数的公式,这种公式适用于各种结点和悬挑情况,且只引入一个统一的悬挑系数。
关键词 十字交叉基础梁 柱荷载分配系数 统一公式
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基于双参数地基模型的十字交叉梁柱荷载分配系数工程实用算法 被引量:5
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作者 邱畅 王贻荪 《勘察科学技术》 2000年第5期22-27,共6页
该文提出了一种计算位于双参数地基模型上具有悬挑的十字交叉基础梁柱荷载分配系数的方法。它适用于各种节点和悬挑情况 ,并且计算量与采用文克尔地基模型的方法相当。
关键词 十字交叉基础梁 柱荷载分配系数 地基模型
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玻璃熔窑的窑底柱顶荷载计算 被引量:1
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作者 唐福恒 《玻璃》 2017年第2期26-30,共5页
玻璃熔窑的窑底柱顶荷载计算是超静定问题。既有均布荷载,又有集中荷载;既有柱距等跨分布,又有不等跨分布;既有一次超静定情况,又有二次(或多次)超静定的情况。柱顶荷载计算过程是:从上至下依次逐层计算出池底次梁、池底主纵梁、池底主... 玻璃熔窑的窑底柱顶荷载计算是超静定问题。既有均布荷载,又有集中荷载;既有柱距等跨分布,又有不等跨分布;既有一次超静定情况,又有二次(或多次)超静定的情况。柱顶荷载计算过程是:从上至下依次逐层计算出池底次梁、池底主纵梁、池底主横梁的荷载,最后计算出池底立柱顶的荷载。 展开更多
关键词 玻璃熔窑 钢结构 窑底 荷载
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梁柱活荷载折减在YJK和PKPM软件中的差异和实现 被引量:1
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作者 苏志松 赵杰 《产业与科技论坛》 2016年第12期53-54,共2页
本文对《建筑结构荷载规范》第5.1.2条荷载折减在YJK以及PKPM软件中的实现方法进行对比,通过对比计算结果得出两个软件在实现方法上的差异。YJK软件可以对梁、柱、墙某一构件的折减系数单独进行干预修改,能够更加准确地实现规范中活荷... 本文对《建筑结构荷载规范》第5.1.2条荷载折减在YJK以及PKPM软件中的实现方法进行对比,通过对比计算结果得出两个软件在实现方法上的差异。YJK软件可以对梁、柱、墙某一构件的折减系数单独进行干预修改,能够更加准确地实现规范中活荷载折减要求。 展开更多
关键词 梁活荷载折减 墙活荷载折减 重力荷载代表值 荷载折减
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利用PKPM三维建模导算抽柱吊车荷载
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作者 张领军 《山西建筑》 2012年第20期54-55,共2页
以天津市联通钢管生产车间为工程背景,详细介绍了利用PKPM三维建模简便准确导算抽柱吊车荷载的应用及导算过程中注意的事项,得到相关经验,为设计人员提供指导。
关键词 门式刚架结构 吊车荷载 设计要点
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柱下筏板基础冲切承载力的试验研究 被引量:5
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作者 石金龙 滕延京 《岩土工程学报》 EI CAS CSCD 北大核心 2009年第5期743-749,共7页
通过大比例室内模型试验,对天然地基土上两块完全相同的筏板分别进行了单独加荷和同步加荷破坏试验,对表现出来的冲切性状进行了研究,得出了集中柱荷载作用下角柱、边柱下筏板冲切破坏实测承载力值,并与规范计算值做了对比。试验表明,... 通过大比例室内模型试验,对天然地基土上两块完全相同的筏板分别进行了单独加荷和同步加荷破坏试验,对表现出来的冲切性状进行了研究,得出了集中柱荷载作用下角柱、边柱下筏板冲切破坏实测承载力值,并与规范计算值做了对比。试验表明,类似试验条件下的筏板破坏,验算时的控制截面是冲切破坏截面。增加上部结构刚度和基础刚度及减少筏板差异沉降可使筏板冲切破坏荷载大大提高,从而提高筏板冲切设计安全度。 展开更多
关键词 筏板基础 集中柱荷载 冲切破坏 差异沉降
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云岗石窟立柱岩体安全性定量评价 被引量:5
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作者 晏鄂川 方云 《岩石力学与工程学报》 EI CAS CSCD 北大核心 2004年第z2期5046-5049,共4页
千余年来,云岗石窟遭受了严重的渗水病害,同时,因构造节理和卸荷裂隙的切割,降低了石窟的立柱岩体稳定性,其中的第9#,10#,12#窟的窟前立柱岩休风化严重,已威胁到石窟安全,需及时采取措施进行加固。通过现场勘察和病害调查,采取岩样和水... 千余年来,云岗石窟遭受了严重的渗水病害,同时,因构造节理和卸荷裂隙的切割,降低了石窟的立柱岩体稳定性,其中的第9#,10#,12#窟的窟前立柱岩休风化严重,已威胁到石窟安全,需及时采取措施进行加固。通过现场勘察和病害调查,采取岩样和水样进行测试分析,并对石窟岩体进行了三维数值模拟分析,其目的是查明石柱承受荷载的大小及应力分布情况、立柱岩体的强度及安全系数、评价立柱岩体的稳定性,从而为杠窟防治和加固设计提供科学依据。研究表明:在第9#,10#和12#窟立柱岩体顶部的压应力分别由成窟前的0.45,0.44MPa增加至成窟后的1.29-1.31MPa和0.94-0.96MPa,分别增大了3倍和2倍以上;荷载最大值在第10#窟的4#柱上部,达3741kN;立柱岩体的极限单轴抗压强度为1.95MPa;按现行规范的要求,6根立柱岩体都处于不安全状态,必须对9#,10#,12#窟立柱进行加固整治。 展开更多
关键词 岩石力学 石窟 岩体 安全性 抗压强度 荷载
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火灾下钢管混凝土叠合柱-RC梁平面框架内力重分布 被引量:2
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作者 包延红 徐蕾 孙建刚 《兰州理工大学学报》 CAS 北大核心 2019年第3期139-146,共8页
火灾下钢管混凝土叠合柱-RC梁平面框架结构会产生膨胀变形.由于框架梁、柱的相互约束作用,框架结构不能自由膨胀变形,结构中发生内力重分布,影响框架结构的耐火性能.建立钢管混凝土叠合柱-RC梁平面框架有限元模型,用现有相关试验数据对... 火灾下钢管混凝土叠合柱-RC梁平面框架结构会产生膨胀变形.由于框架梁、柱的相互约束作用,框架结构不能自由膨胀变形,结构中发生内力重分布,影响框架结构的耐火性能.建立钢管混凝土叠合柱-RC梁平面框架有限元模型,用现有相关试验数据对有限元模型进行对比验证.利用该有限元模型在荷载和ISO-834标准升温作用下对钢管混凝土叠合柱-RC梁平面框架结构的内力重分布进行分析,并进行柱火灾荷载比和梁火灾荷载比不同作用下框架结构内力重分布的参数分析.研究表明:框架结构特征截面处内力变化剧烈;柱火灾荷载比和梁火灾荷载比对框架结构内力重分布产生显著影响,火灾作用下框架节点处梁端弯矩最大值约为常温值的3.8倍,应加强结构节点设计. 展开更多
关键词 钢管混凝土叠合 框架结构 内力重分布 火灾荷载 梁火灾荷载
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高层框架结构梁柱节点施工注意事项 被引量:5
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作者 徐日辉 《中国新技术新产品》 2009年第18期161-161,共1页
在高层框架结构中,节点作为联系整个结构体系的枢纽,既是承受梁、柱、板等各种荷载的受力点,也是模板、钢筋、混凝土工程等多种交汇施工的重要部位,在实际施工中存在着各种隐患。本文剖析了高层框架结构梁柱节点施工中的问题,并提出相... 在高层框架结构中,节点作为联系整个结构体系的枢纽,既是承受梁、柱、板等各种荷载的受力点,也是模板、钢筋、混凝土工程等多种交汇施工的重要部位,在实际施工中存在着各种隐患。本文剖析了高层框架结构梁柱节点施工中的问题,并提出相应的处理方法。 展开更多
关键词 框架结构节点梁、、板荷载受力点施工隐患处理方法
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云岗石窟立柱岩体安全性定量评价
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作者 晏鄂川 方云 《工程地质学报》 CSCD 2004年第z1期262-265,共4页
千余年来,云岗石窟遭受了严重的渗水病害,同时,因构造节理和卸荷裂隙的切割,降低了石窟的立柱岩体稳定性,其中的第9#、10#、12#窟的窟前立柱岩体风化严重,已威胁到石窟安全,需及时采取措施进行加固.作者通过现场勘察和病害调查,采取岩... 千余年来,云岗石窟遭受了严重的渗水病害,同时,因构造节理和卸荷裂隙的切割,降低了石窟的立柱岩体稳定性,其中的第9#、10#、12#窟的窟前立柱岩体风化严重,已威胁到石窟安全,需及时采取措施进行加固.作者通过现场勘察和病害调查,采取岩样和水样进行测试分析,并对石窟岩体进行了三维计算机数值模拟分析,其目的是查明石柱承受荷载的大小及应力分布情况、石柱岩体的强度及安全系数、评价立柱岩体的稳定性,为石窟防治和加固设计提供科学依据.研究表明,在9~10#和12#窟立柱岩体顶部的压应力分别由成窟前的0.45MPa、0.44MPa增加至成窟后的1.29~1.31MPa和0.94~0.96MPa,分别增大了近3倍和2倍以上;荷载最大值在第10#窟的④号柱的上部,达3741kN;立柱岩体的极限单轴抗压强度为1.95MPa;按现行规范的要求,六根岩体立柱都处于不安全状态,必须对9#、10#、12#窟进行立柱加固整治. 展开更多
关键词 石窟 岩体 安全性 抗压强度 荷载
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双参数地基上十字交叉梁工程实用算法 被引量:2
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作者 邱畅 王贻荪 《建筑结构》 CSCD 北大核心 2001年第10期9-11,65,共4页
基于无限长梁在双参数地基模型上的解答 ,推导出具有悬挑的十字交叉基础梁的柱荷载分配系数公式。
关键词 十字交叉基础梁 柱荷载 空间框架
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Evaluation of coal pillar loads during longwall extraction using the numerical method and its application 被引量:2
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作者 Jin-He JIA Hong-Pu KANG Xin-Rong ZHANG 《Journal of Coal Science & Engineering(China)》 2013年第3期269-275,共7页
It is very difficult to reasonably evaluate the loads acting on coal pillars in longwall panels during the planning of a new pillar system. The application of empirical equations is a common practice in calculating co... It is very difficult to reasonably evaluate the loads acting on coal pillars in longwall panels during the planning of a new pillar system. The application of empirical equations is a common practice in calculating coal pillar loads while designing a new pillar. This paper proposes numerical models for evaluating coal pillar loads. The key of building a successful numerical model for calculating coal pillar loads lies in the fact that the model should represent the redistribution of stress all over the longwall panels and the surrounding areas, and it is especially important to include the characteristics of the stress rebuilding process in the gob areas, which are crucial for the building process of coal pillar loads. Based on the geo-mechanical background of the Baoshan Coal Mine, this paper details the procedures of applying numerical models to the evaluation of coal pillar loads and their local practices. The study results show it is feasible and reasonable to use numerical models to evaluate coal pillar loads. 展开更多
关键词 numerical simulation longwall panel longwall face coal pillar load gob area STRAIN-HARDENING
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Bearing characteristics and fatigue damage mechanism of multi-pillar system subjected to different cyclic loads 被引量:5
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作者 ZHOU Zi-long WANG Hai-quan +3 位作者 CAI Xin ZANG Hai-zhi CHEN Lu LIU Fu 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第2期542-553,共12页
Aiming to investigate the fatigue damage mechanism and bearing characteristics of multi-pillar system under cyclic loading,a series of axial cyclic loading tests with different cyclic amplitudes were carried out on tr... Aiming to investigate the fatigue damage mechanism and bearing characteristics of multi-pillar system under cyclic loading,a series of axial cyclic loading tests with different cyclic amplitudes were carried out on triple-pillar marble specimens.The acoustic emission(AE)and digital image correlation(DIC)were jointly applied to monitoring and recording damage evolution and failure behavior of each pillar,which reproduced the cataclysmic instability process of underground pillar groups.Experimental results indicated that the cyclic amplitude exceeding the threshold of damage initiation weakened the resistance to deformation,resulting in obvious release of dissipated energy and the reduction of bearing capacity.Conversely,after low-amplitude cyclic loading,both the pre-peak bearing capacity and the post-peak ductility of the pillar system increased due to the compaction of initial defects,indicating that the peak bearing capacity was closely related to the extent of pre-peak fatigue damage.The axial strain of each pillar was measured by DIC virtual extensometer to present the damage extent during cyclic loading phase.Meanwhile,fracture evolution of typical load drop points was also characterized by transverse strain fields(εxx),and observations showed that the damage extent of key pillar undergoing high-amplitude cyclic loads was more serious and violent,accompanied by the ejection of rock debris and loud noises. 展开更多
关键词 multi-pillar system cyclic loading fatigue damage bearing characteristics acoustic emission(AE) digital image correlation(DIC)
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Dynamic Analysis of Structural Columns Subjected to Impulsive Loading 被引量:1
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作者 GONG Shunfeng LU Yong +1 位作者 GAO Feng JIN Weiliang 《Transactions of Tianjin University》 EI CAS 2006年第B09期248-253,共6页
For a building structure subjected to impulsive loading, particularly shock and impact loading , the response of the critical columns is crucial to the behaviour of the entire system during and after the blast loading... For a building structure subjected to impulsive loading, particularly shock and impact loading , the response of the critical columns is crucial to the behaviour of the entire system during and after the blast loading phase. Therefore, an appropriate evaluation of the column response and damage under short-duration impulsive loading is important in a comprehensive assessment of the performance of a building system. This paper reports a dynamic analysis approach for the response of RC columns subjected to impulsive loading. Considering that the dynamic response of a column in a frame structure can also be affected by the floor movement which relates to the global vibration of the frame system, a generic column-mass model is used, in which a concentrated mass is attached to the column top to simulate the effect of a global vibration. To take into account the high shear effect under impulsive load, the model is formulated using Timoshenko beam theory, and three main nonlinear mechanisms are considered. Two typical scenarios, one under a direct air blast loading, and another under a blast-induced ground excitation, are analyzed and the primary response features are highlighted. 展开更多
关键词 impulsive load RC column dynamic response Timoshenko beam nonlinear analysis
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Critical Buckling of Drill Strings in Cylindrical Cavities of Inclined Bore-Holes 被引量:1
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作者 Nabil Musa Valery Gulyayev +1 位作者 Nataliya Shlyun Hasan Aldabas 《Journal of Mechanics Engineering and Automation》 2016年第1期25-38,共14页
Notwithstanding the fact that the problem of drill string buckling (Eulerian instability) inside the cylindrical cavity of an inclined bore-hole attracts attention of many specialists, it is far from completion. Thi... Notwithstanding the fact that the problem of drill string buckling (Eulerian instability) inside the cylindrical cavity of an inclined bore-hole attracts attention of many specialists, it is far from completion. This peculiarity can be explained by the complexity of its mathematic model which is described by singularly perturbed equations. Their solutions (eigen modes) have the shapes of boundary effects or buckles (harmonic wavelets) localized in zones of the bore-hole that are not specified in advance. Therefore, the problem should be stated in the domain of entire length of the drill string or in some separated part including an expected zone of its buckling. In the paper, a mathematic model for computer analysis of incipient buckling of a drill string in cylindrical channel of an inclined bore-hole is elaborated. The constitutive equation is deduced with allowance made for action of gravity, contact, and friction forces. Computer simulation of the drill string buckling is performed for different values of the bore-hole inclination angle, its length, friction coefficient, and clearance. The eigen values (critical loads) are found and modes of stability loss are constructed. The numerical results for the case when the inclination angle equals friction angle coincide with ones obtained analytically. 展开更多
关键词 Deep drilling inclined bore-holes drill strings stability singularly perturbed problem.
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Dynamic response of cylindrical cavity to anti-plane impact load by using analytical approach 被引量:4
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作者 翟朝娇 夏唐代 +1 位作者 杜国庆 丁智 《Journal of Central South University》 SCIE EI CAS 2014年第1期405-415,共11页
The transient response of an unlimited cylindrical cavity buried in the infinite elastic soil subjected to an anti-plane impact load along the cavern axis direction was studied.Using Laplace transform combining with c... The transient response of an unlimited cylindrical cavity buried in the infinite elastic soil subjected to an anti-plane impact load along the cavern axis direction was studied.Using Laplace transform combining with contour integral of the Laplace inverse transform specifically,the general analytical expressions of the soil displacement and stress are obtained in the time domain,respectively.And the numerical solutions of the problem computed by analytical expressions are presented.In the time domain,the dynamic responses of the infinite elastic soil are analyzed,and the calculation results are compared with those from numerical inversion proposed by Durbin and the static results.One observes good agreement between analytical and numerical inversion results,lending the further support to the method presented.Finally,some valuable shear wave propagation laws are gained: the displacement of the soil remains zero before the wave arrival,and after the shear wave arrival,the stress and the displacement at this point increase abruptly,then reduce and tend to the static value gradually at last.The wave attenuates along the radial,therefore the farther the wave is from the source,the smaller the stress and the displacement are,and the stress and the displacement are just functions of the radial distance from the axis. 展开更多
关键词 cylindrical cavity ANTI-PLANE Laplace transform contour integral impact load dynamic responses
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Stress analysis of clamped-free grid composite cylindrical shell under various end loadings
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作者 ARASHMEHR JAFAR RAHIMI GHOLAMHOSSEIN RASOULI FAZEL 《Journal of Central South University》 SCIE EI CAS 2014年第7期2667-2672,共6页
Stress analysis of cylindrical grid-stiffened composite shells was conducted under transverse loading,pure bending,torsion and axial compression under clamped-free boundary condition.Electrical strain gauges were empl... Stress analysis of cylindrical grid-stiffened composite shells was conducted under transverse loading,pure bending,torsion and axial compression under clamped-free boundary condition.Electrical strain gauges were employed to measure the strains in transverse loading case to validate the finite element analysis which was conducted using ANSYS software.Good agreement was obtained between the two methods.It was observed that stiffening the composite shell with helical ribs decreased the average equivalent Von Mises stress on the shell.The reduction of the stress seemed to be higher in the intersection of two ribs.It was also seen that the stress reduction ratio was higher when the structure was under bending compared to torsion and axial compression.The reduction ratio was approximately 75% in pure bending in the intersection point of the ribs,while it was approximately 25% in torsion.Therefore,it is concluded that the presence of the ribs is more effective under bending.Failure analysis was done using Tsai-Wu criterion.The ribs were observed to result in maximum and minimum increase in the failure load of the structure under transverse bending and torsional loading,respectively. 展开更多
关键词 stiffened composite shell end loading stress analysis failure load
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柱下筏板基础角柱边柱冲切破坏锥体的试验研究 被引量:2
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作者 石金龙 《建筑科学》 北大核心 2006年第3期52-54,59,共4页
通过大比例室内模型试验,对天然地基土上两块完全相同的筏板分别进行了单独加荷和同步加荷试验,对表现出来的冲切性状进行了初步研究,得出了集中柱荷载作用下角柱、边柱柱下筏板冲切破坏锥体及其不同方向上的冲切破坏角度。
关键词 筏板基础 集中柱荷载 冲切破坏
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Buckling Load Evaluation Method for Single Layer Cylindrical Lattice Shells
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作者 Seishi Yamada 《Journal of Civil Engineering and Architecture》 2012年第3期268-279,共12页
A rational design evaluation procedure is investigated for the elastic overall buckling load carrying capacity of single layer cylindrical lattice shell roof structures. The nature of the imperfection sensitivity of t... A rational design evaluation procedure is investigated for the elastic overall buckling load carrying capacity of single layer cylindrical lattice shell roof structures. The nature of the imperfection sensitivity of these structures is for the first time reviewed in this paper. This allows the development of the reduced stiffness buckling analytical concept for the lattice shells based upon the introduction of a simple lower bound estimation equation through the use of the so-called continuum shell analogy theory. The linear and nonlinear buckling loads found from conventional finite element analyses are compared with the present estimations. Finally, the elastic-plastic load carrying capacity estimation method through the use of the present elastic lower bound criteria is also proposed. 展开更多
关键词 Metal lattice shell BUCKLING design formula cylindrical barrel vault roof structure.
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