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Assessment of the inelastic structural response of building models that consider the combination of orthogonal seismic effects

机译:考虑建筑模型的非弹性结构响应,以考虑正交地震效应的组合

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For design purposes, the orthogonal seismic effects are combined using a percentage combination rule. The most common rules estimate the total structural response as the sum of 100% of the effects caused by one earthquake component acting along one direction of the structure plus a percentage alpha of the response caused by the orthogonal earthquake component acting along the perpendicular direction of the structure. Usually, values of alpha = 30% or 40% are specified. There is no clear consensus regarding the use of a specific value of alpha. In this paper, a comprehensive parametric study is presented to analyze the effects of using a particular value of alpha on both the ductility demands and the total cost of buildings. The aim of the study is to obtain optimal values of alpha to minimize the total cost of buildings considering the following variables: structure dynamic properties, earthquake angle of incidence (0-360 degrees), reduction factor of design elastic forces (design ductility demand) (Q = 2 or 4) and type of soil (firm or soft). Values of alpha = 10%, 30%, 50%, 70% and 100% are analyzed. The studied models are idealized building structural models with several combinations of vibration periods along both model orthogonal directions. Combining all values of the studied variables, a total of 66,600 different cases were designed and analyzed. Based on both the designs and the analysis nonlinear results, the total costs of the studied cases were computed. The total cost for each case was evaluated considering the following building costs: initial cost, repair cost, content loss, income loss, and losses due to both injured and deceased people. The main results of the investigation indicate that the optimal average values of alpha that minimize the building total cost are: For firm soil: (alpha) over bar (OPT) = 0.85 for Q = 2 and (alpha) over bar (OPT) = 0.94 for Q = 4. For soft soil: (alpha) over bar (OPT) = 0.22 for both values of Q.
机译:对于设计目的,使用百分比组合规则组合正交地震效果。最常见的规则估计总结构响应作为由沿着结构的一个方向作用的一个地震成分引起的效应的总和加上由正交地震成分沿着垂直方向作用的正交地震成分引起的响应百分比α结构体。通常,指定Alpha = 30%或40%的值。关于使用α的特定价值没有明确的共识。本文提出了综合的参数研究,以分析使用特定价值在延展性需求和建筑物的总成本上使用特定价值的影响。该研究的目的是获得alpha的最佳值,以最小化建筑物的总成本,考虑到以下变量:结构动态性质,地震发生率(0-360度),设计弹力的减少因子(设计延展性需求) (Q = 2或4)和土壤类型(固定或软)。分析α的值= 10%,30%,50%,70%和100%。学习模型是理想化的构建结构模型,沿型号正交方向振动周期的多种组合。结合所研究的变量的所有值,共有66,600种不同的情况进行了设计和分析。基于设计和分析非线性结果,计算了研究案例的总成本。考虑到以下建筑成本,评估每种案件的总费用:由于受伤和死亡人士而导致的初始成本,修复成本,内容损失,收入损失和损失。调查的主要结果表明,最大限度地减少建筑物总成本的α的最佳平均值是:用于稳定的土壤:(alpha)在Q = 2和(alpha)上方的条形(OPT)= 0.85上方(OPT)= 0.94对于Q = 4.对于软土:(OPT)= 0.22的Q.

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