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首页> 外文期刊>KSCE journal of civil engineering >Assessment of Reliability Levels and Adjustment of Load-resistance Factors Using Optimization for Gravitational Loads-governed Limit States of the AASHTO LRFD Bridge Design Specifications
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Assessment of Reliability Levels and Adjustment of Load-resistance Factors Using Optimization for Gravitational Loads-governed Limit States of the AASHTO LRFD Bridge Design Specifications

机译:使用AASHTO LRFD桥梁设计规范的引力载荷控制极限状态的优化评估可靠性水平和抗力系数调整

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This paper presents the reliability levels provided by the load-resistance factors of the AASHTO LRFD Bridge Design Specifications for the Strength Limit State-I and -IV, and an optimization scheme for adjusting the load-resistance factors of the specifications. It is shown that the load-resistance factors of the specifications result in lower reliability indices than the target reliability index and widely varying reliability indices with the load composition for reinforced concrete, steel and pre-stressed concrete members. An optimization scheme is proposed to obtain a new set of the load-resistance factors that yield more uniform reliability levels and better approximation to the target reliability index in a wide range of load compositions. The objective function of the proposed optimization scheme is defined as the L-2-norm of the error between the target and calculated reliability indices by load-resistance factors over a given interval of load composition. The results of the optimization show that the dead load factor for structural components should be increased by 0.1 for the Strength Limit State-I, and that the vehicular live load should be included in the Strength Limit State-IV. The use of exact figures up to the second decimal point is recommended for the resistance factors. A unified limit state for gravitational loads is proposed to replace the two limit states with a single limit state.
机译:本文介绍了强度极限状态I和-IV的AASHTO LRFD桥梁设计规范的荷载阻力系数所提供的可靠性等级,以及用于调整该规范的荷载阻力系数的优化方案。结果表明,规范中的抗荷载因素导致可靠性指标低于目标可靠性指标,并且随着钢筋混凝土,钢和预应力混凝土构件的荷载组成,可靠性指标变化很大。提出了一种优化方案以获得一组新的载荷抵抗因子,从而在较宽的载荷组成范围内产生更均匀的可靠性水平,并更好地逼近目标可靠性指标。所提出的优化方案的目标函数定义为在给定的载荷组成间隔内,通过载荷阻力因子计算的目标指标与计算得出的可靠性指标之间的误差的L-2-范数。优化结果表明,对于强度极限状态I,结构部件的静载系数应增加0.1,并且车辆的活载应包括在强度极限状态IV中。对于电阻系数,建议使用精确到小数点后第二位的数字。提出了一个统一的重力极限状态,用一个极限状态代替了两个极限状态。

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