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Incorporated Strength Capacity Technique for Limit Load Evaluation of Trusses and Framed Structures under Constant Loading

机译:结合强度能力技术进行恒载下桁架和框架结构极限载荷评估

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摘要

To overcome the difficulties encountered by the elastic modulus adjustment procedures applied to the ultimate bearing capacity analysis of framed structures under combined action of both constant and varying live loads, an efficient incorporated strength capacity technique is proposed in this work. A new structural analysis model is developed with totally different distributions of loads and resistance from the original model by incorporating the constant load effects into the sectional strength capacity of components in framed structures. The element bearing ratio (EBR) is defined according to the modified structural model on the basis of the generalized yield function of spatial beam element. The uniformity of the EBR is presented in terms of the EBR distribution characteristics, on the basis of which the reference EBR (REBR) is defined as a dynamic threshold to identify the highly stressed elements with the EBR greater than the REBR. Subsequently, an adaptive strategy of elastic modulus adjustment is presented for the ultimate bearing capacity analysis of framed structures under combined action of constant and live loading by means of the principle of deformation energy conservation. Three numerical examples including both trusses and framed structures are presented to demonstrate the applicability and accuracy of the proposed methodology. (C) 2015 American Society of Civil Engineers.
机译:为克服弹性模量调整程序在恒定和变化活荷载共同作用下应用于框架结构极限承载力分析所遇到的困难,提出了一种有效的结合强度承载力技术。通过将恒定载荷效应纳入框架结构中构件的截面强度能力中,开发了一种具有与原始模型完全不同的载荷和阻力分布的新结构分析模型。在空间梁单元广义屈服函数的基础上,根据改进的结构模型定义了单元承载比(EBR)。 EBR的均匀性以EBR分布特性表示,在此基础上,参考EBR(REBR)被定义为动态阈值,以识别EBR大于REBR的高应力元素。随后,根据变形能量守恒原理,提出了一种自适应的弹性模量调节策略,用于框架结构在恒定荷载和活荷载共同作用下的极限承载力分析。给出了三个数值示例,包括桁架和框架结构,以证明所提出方法的适用性和准确性。 (C)2015年美国土木工程师学会。

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