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CHOICE OF THE OPTIMAL STRENGTHENING TECHNOLOGY

机译:最佳强化技术的选择

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Modeling of the true behavior of existing buildings is a difficult step in the analysis of its state, as thereare many unknown variables: building methods, various materials, stiffness and mass distribution,structural degradation and so on. These unknown variables can make complicated numerical proceduresobsolete. Bad input data lead to non-reliable output data although the methods used could be very precise.Simplified methods based on some experimental data could give better results and reliably be used forsafety factor evaluation.Dynamic characteristics represent the real structural behavior and could be used for evaluation ofstructural state, calibration of the mathematical model and analysis of seismic risk or safety factor.Calibrated numerical model is used for choice of the optimal strengthening technology that should payspecial attention to inclusion of elements that eliminate unfavorable behavior under strong seismic effects.After strengthening works are finished quality of the performed works could be verified by repeting thedynamic tests.The methodology proposed in this paper could be used for quick evaluation of the structural state,modeling of the true structural behavior, choice of optimal strengthening technology and for verificationof the performed strengthening works. It combines experimental data about building material, ground andstructural behavior with analytical methods for estimation of the seismic vulnerability of masonry andreinforced concrete buildings. It roughly covers three vulnerability assessment levels required in the EC8:general stability, strength capacity and lateral displacements capacity.
机译:对现有建筑物的真实行为进行建模是分析其状态的困难步骤,因为存在许多未知变量:建筑物方法,各种材料,刚度和质量分布,结构退化等。这些未知变量可能会使复杂的数字过程过时。尽管所使用的方法可能非常精确,但不良的输入数据会导致输出数据不可靠。基于一些实验数据的简化方法可以提供更好的结果,并且可以可靠地用于安全系数评估。动态特性代表了真实的结构行为,可以用于结构状态的评估,数学模型的校准以及地震风险或安全系数的分析。使用校准的数值模型来选择最佳加固技术,该加固技术应特别注意包含在强烈地震作用下消除不利行为的元素。本文提出的方法可用于结构状态的快速评估,真实结构行为的建模,最佳加固技术的选择以及所进行加固的验证。作品。它将有关建筑材料,地面和结构行为的实验数据与分析方法相结合,以评估砌体和钢筋混凝土建筑物的地震易损性。它大致涵盖了EC8中要求的三个脆弱性评估级别:总体稳定性,强度能力和横向位移能力。

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