Base shear and collapse capacity statistical analysis

M. Azman, K. John, M. Shahir Liew
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Abstract

As part of structural reliability assessment, the statistical analysis provides engineers with good estimation of distribution and statistical properties for both load and resistance. This study involved modelling of eight (8) offshore structures with the corresponding environmental conditions for ten (10), fifty (50) and hundred (100) years in order to perform non-linear push over analysis for getting the ultimate strength. The environmental condition covers three main oil and gas regions in Malaysia. The collective results of base shear and collapse capacity were used for statistical analysis. The data were analyzed using probability density function with central limit theorem under Gaussian distribution. All the statistical parameters such as mean value (μ), standard deviation (σ) and variance (V) were calculated. The average base shear from the statistical analysis has been obtained as 3.03 MN with a standard deviation of 3.35 and variance of 11.26. For the resistance part, the mean collapse capacity has been obtained as 18.28 MN with a standard deviation of 18.10 and variance of 327.93. This meant that for general case, the structural resistance is higher than the environmental loading. Using probability density function, the reliability index (β) was estimated through robust calculation between statistical parameters of load and resistance. From this calculation, reliability index (β) has been estimated as 3.97.
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基层抗剪抗倒能力统计分析
作为结构可靠性评估的一部分,统计分析为工程师提供了对荷载和阻力分布和统计特性的良好估计。本研究对8个海上结构在10年、50年和100年的相应环境条件下进行建模,以便进行非线性推覆分析,以获得极限强度。环境条件涵盖了马来西亚的三个主要油气区。基础抗剪能力和抗倒能力的集合结果用于统计分析。采用高斯分布下的概率密度函数和中心极限定理对数据进行分析。计算了所有统计参数,如平均值(μ)、标准差(σ)和方差(V)。统计分析得到的平均基剪为3.03 MN,标准差为3.35,方差为11.26。阻力部分的平均倒塌能力为18.28 MN,标准差为18.10,方差为327.93。这意味着在一般情况下,结构阻力高于环境荷载。采用概率密度函数,通过负荷与阻力统计参数之间的鲁棒计算,估计出可靠性指标β。由计算得到的可靠性指标(β)为3.97。
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