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Model uncertainties and bias in SHEAR strength predictions of slender stirrup reinforced concrete beams

机译:箍筋混凝土梁抗剪强度预测中的模型不确定性和偏差

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摘要

Prior studies point to high model uncertainty in shear prediction. Model factors for various shear prediction models are characterized here, based on a recent and well-vetted database of shear failures. Characterization includes estimation of main statistical parameters; and importantly also correlation and regression analysis to assess consistency of model factors over ranges of design parameters. The aim of the study is to identify models suitable for use as general probabilistic model (GPM) in future reliability assessments. The Variable Strut Inclination Method (VSIM), shear level of approximation III of the fib Model Code 2010, and ACI 318 displayed high bias, variability and various correlations with shear input parameters which make them unsuitable choices for GPM. The compression chord capacity model and the modified compression field theory displayed low bias and variability with consistent model factors over the ranges of shear design parameters and are thus suitable as GPM. Concerns stem from observed inconsistency in capacity prediction by VSIM and size effect in ACI. Reliability assessment is advised.
机译:先前的研究指出剪切预测中模型不确定性高。在此基础上,根据最近经过严格审查的剪切破坏数据库,对各种剪切预测模型的模型因子进行了表征。表征包括主要统计参数的估计;重要的是还需要进行相关和回归分析,以评估设计参数在设计参数范围内的一致性。该研究的目的是确定适合用作未来可靠性评估中的一般概率模型(GPM)的模型。可变支撑杆倾斜法(VSIM),fib型号代码2010的近似III的剪切水平和ACI 318显示出较高的偏差,可变性以及与剪切输入参数的各种相关性,这使其不适合作为GPM的选择。压缩弦能力模型和改进的压缩场理论在剪切设计参数范围内显示出低偏差和可变性,且模型因子一致,因此适合作为GPM。引起关注的是通过VSIM预测的容量不一致以及ACI中的尺寸效应。建议进行可靠性评估。

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