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首页> 外文期刊>International journal of impact engineering >Drift-controlled design of reinforced concrete frame structures under distant blast conditions—Part Ⅰ: Theoretical basis
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Drift-controlled design of reinforced concrete frame structures under distant blast conditions—Part Ⅰ: Theoretical basis

机译:远距离爆炸条件下钢筋混凝土框架结构的漂移控制设计-第一部分:理论基础

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摘要

Proper control levels of lateral drifts anticipated for reinforced concrete (RC) frame structures within the predefined performance level become crucial when the frame structure is subjected to distant intense surface explosions. For this purpose, a new design method is presented in a two-part paper based on the transformation of a blast loading into an equivalent static force (ESF). The ESF is calculated in such a manner that the same maximum inter-storey drift ratio (MIDR) under the blast loading will be reproduced. The first part of the two-part paper focuses on the computational model of ESF for a single-degree-of-freedom (SDOF) system and the design method based on ESF with the requirement for controlling its maximum displacement response to achieve the specified target displacement. Numerical examples have been included to illustrate the method while the verifications of the dynamic responses of the designed SDOF system are performed with nonlinear dynamic analyzes. The numerical results indicate that the target displacement is well met for the designed SDOF system in resisting a given blast loading. Extension of the computational model of ESF and the corresponding design method with ESF for a SDOF system into a RC frame structure will be further discussed in the companion paper.
机译:当框架结构遭受远距离强烈的表面爆炸时,在预定义的性能水平内对钢筋混凝土(RC)框架结构进行适当的横向漂移控制水平至关重要。为此,在将爆炸载荷转换成等效静力(ESF)的基础上,在两部分的论文中提出了一种新的设计方法。以这样一种方式计算ESF,即在爆炸荷载下将再现相同的最大层间漂移比(MIDR)。分为两部分的第一部分着重于单自由度(SDOF)系统的ESF计算模型和基于ESF的设计方法,该方法需要控制其最大位移响应以实现指定目标移位。包括数值例子来说明该方法,同时利用非线性动力学分析对设计的SDOF系统的动力学响应进行验证。数值结果表明,设计的SDOF系统在抵抗给定的爆炸载荷时,可以很好地满足目标位移。随附文件中将进一步讨论将ESF的计算模型以及针对SDOF系统的ESF的相应设计方法扩展为RC框架结构的问题。

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