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Safety factor calibration for a new model of shear strength of reinforced concrete building beams and slabs

机译:钢筋混凝土建筑梁和平板抗剪强度新模型的安全系数校准

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摘要

When assessing existing structures, the availability of adequate safety factors, calibrated with the most accurate models, and for established target reliability indexes, is of critical importance in order to take the right decision regarding the maintenance/repair/strengthening interventions. In the case of shear resistance in reinforced concrete (RC) structures, when using the current design codes provisions for new constructions in assessment results that, in many cases, existing structures may be considered unsafe, implying large economic costs in strengthening or even dismantling. In this research, a proposal of safety factor relative to a recently developed model for shear strength, for elements with and without transversal reinforcement, based on a reliability-based calibration is presented. A formulation is proposed to determine the adequate strength factor for a selected target reliability index of the existing structure and desired remaining service life by means of a safety factor format, considering the load factors present in the Eurocodes. The calibration is carried out considering typical geometry and load ratios of building floors, as well as normal and high strength concrete. The derived safety factor is almost independent of the chosen remaining service life.
机译:在评估现有结构时,使用最准确的模型进行校准的适当安全系数的可用性以及已建立的目标可靠性指标,对于就维护/维修/加强干预措施做出正确的决定至关重要。对于钢筋混凝土(RC)结构的抗剪强度,在评估结果中使用新设计的现行设计规范规定时,在许多情况下,现有结构可能被认为是不安全的,这意味着在加固甚至拆除时会付出巨大的经济成本。在这项研究中,基于基于可靠性的标定,针对具有和不具有横向钢筋的构件,提出了相对于最近开发的剪切强度模型的安全系数建议。建议采用一种公式,通过考虑欧洲规范中存在的载荷系数,通过安全系数格式为现有结构的选定目标可靠性指标和所需的剩余使用寿命确定足够的强度系数。进行校准时要考虑建筑地板,普通和高强度混凝土的典型几何形状和负载比。得出的安全系数几乎与所选的剩余使用寿命无关。

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