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首页> 外文期刊>Journal of structural engineering >Sensitivity of Wood-Frame Shear Wall Collapse Performance to Variations in Hysteretic Model Parameters
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Sensitivity of Wood-Frame Shear Wall Collapse Performance to Variations in Hysteretic Model Parameters

机译:木框架剪力墙倒塌性能对滞后模型参数变化的敏感性

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This paper presents a numerical investigation of the influence of varying three parameters of the cyclic analysis of shear walls in wood-frame structures (CASHEW) 10-parameter wood-frame shear wall hysteretic model that have distinctly different effects on the shape of the backbone curve. The purpose is to assess the sensitivity of wood-frame shear wall collapse performance to changes from the baseline assumptions used to validate the FEMA P695 collapse performance methodology. The variations in backbone curve shape are intended to reflect observed variations in experimental response due to test methods, test boundary conditions, and shear wall aspect ratio. The paper also investigates the influence of including P-delta effects and the use of assumed equivalent viscous damping of 5% of critical. The baseline assumptions exclude P-delta effects and use 1% damping. A total of 126 unique analyses are conducted for six of the FEMA P695 wood-frame shear wall index models ranging from two to five stories. The results show that improved collapse performance (increased adjusted collapse margin ratio) occurs for hysteretic model assumptions that reduce (less negative) postpeak stiffness, increase displacement at peak strength, and increase peak strength intercept. These hysteretic model changes produce improved collapse performance for cases modeled with and without P-delta and for cases modeled with 1% and 5% damping. The inclusion of P-delta effects reduces adjusted collapse margin ratio by an average of 10% relative to the without-P-delta baseline. Use of 5% damping in these models improves adjusted collapse margin ratio by an average of 13% relative to the 1% damping baseline.
机译:本文对数值模拟研究了三个不同参数对木结构结构(CASHEW)10参数木结构剪力墙滞回模型的剪力墙的周期性分析的影响,这些参数对主干曲线的形状有明显不同的影响。目的是评估木框剪力墙坍塌性能对基准线变化的敏感性,该基准线用于验证FEMA P695坍塌性能方法。骨干曲线形状的变化旨在反映由于测试方法,测试边界条件和剪力墙纵横比而导致的实验响应中观察到的变化。本文还研究了包括P-δ效应的影响,以及假设临界粘度为5%的等效粘性阻尼的使用。基线假设不包括P-delta效应,并使用1%阻尼。对FEMA P695木结构剪力墙指数模型中的六个进行了126次独特的分析,范围从2到5层。结果表明,对于滞后模型假设而言,改善的塌陷性能(增加的调整后的塌陷裕度比)会降低(降低)负峰后刚度,增加峰值强度处的位移并增加峰值强度截距。这些滞后模型的变化对于使用和不使用P-delta建模的情况以及使用1%和5%阻尼建模的情况,可以改善崩溃性能。相对于没有P-delta基准,P-delta效应的包含使调整后的崩溃边际比率平均降低了10%。在这些模型中使用5%的阻尼,相对于1%的阻尼基准,可将调整后的塌陷裕度比平均提高13%。

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