The paper develops a novel and general methodology to characterize the nonlinearity of structural systems and to provide a mathematically proven basis for applying partial safety factors to nonlinear structural systems. It establishes, for the first time since the development of limit-state theory, the necessary key relationship between the partial safety factor concept and the reliability theory of nonlinear structural systems. The degree of homogeneity has been introduced as a nonlinearity measure at the design point, allowing an efficient mathematical decoupling of the reliability index into nonlinearity-invariant partial reliability indexes. With this formulation, critical safety situations in extreme cases of nonlinearities have been identified in complex nonlinear structural systems. The theory resulted in two main outcomes based on the asymptotic behaviour of the reliability index. First, the reliability index of any nonlinear structural system remains always bounded between an upper and lower bound, which can be determined by the concept of nonlinearity-invariant partial reliability indexes. The second is nonlinearity-invariant critical partial safety factors, a concept that assures a reliability index greater than the target reliability index in any nonlinear structural system. Homogeneity analysis has been suggested to assess the safety of complex nonlinear structural systems. While it can be coupled with advanced computational methods available in structural mechanics, it is not specifically designed for engineering practice. The proposed theory is designed primarily to provide code writers with the necessary procedure for calibrating partial safety factors for nonlinear structural systems, and to identify the over-safe or under-safe cases in the codes of practice.
翻译:本文为结构系统的非线性和非线性结构系统提供了一个新的通用方法,以说明结构系统的非线性特征,并为对非线性结构系统应用部分安全系数提供经数学证明的基础;自制定限值理论以来,首次确立了部分安全系数概念与非线性结构系统可靠性理论之间的必要关键关系;在设计点,将同质性程度作为一项非线性指标引入了非线性指标,从而可以将可靠性指数有效地数学脱钩为非线性性非线性部分可靠性指数。有了这一表述,非线性结构结构系统中极端的非线性安全系数的极端情况被确定为非线性结构结构系统;首先,任何非线性结构系统的可靠性指数总是在设计上下之间,这可以由非线性性性性性性性性部分可靠性指数概念确定;第二是非线性性性性性性非线性性性性部分性安全系数,在复杂的非线性结构性结构系统下,可以具体地提出非线性结构性结构系统内部安全分析的可靠性指数。在任何非线性结构性结构系统下,可具体地提出非结构性结构性结构性分析中,可提供非结构性结构性结构性结构性结构性结构性分析。在任何结构性结构性分析中,可提供非结构性结构性结构性结构性结构性结构性结构性分析的系统下进行非结构性分析。