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Random forest-based optimization of UHPFRC under ductility requirements for seismic retrofitting applications

机译:地震改装应用延展性要求下的UHPFRC随机林优化

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摘要

UHPFRC is a material that offers several openings within the building industry. One of those applications is the seismic retrofitting of existing non-ductile concrete structures. This paper aims to optimize a UHPFRC to meet ductility needs for seismic retrofitting applications at a lower cost. To achieve this objective, two Random Forest models were created to estimate the energy absorption capacity and the maximum post-cracking strain. Even though random forest models have been reported as one of the most efficient approaches for forecasting the properties of special concretes, with the purpose of demonstrating the efficiency of the proposed methodology, the random-forest-based optimization results were assessed by experimental works. The experimentally validated results showed that the appropriate combination of high-strength steel microfibers and normal-strength steel fibers with hooked ends meet the limit values (g = 50 kJ/m(3) and epsilon(pc) = 0.3%) at a lower cost. (C) 2021 Elsevier Ltd. All rights reserved.
机译:UHPFRC是一种在建筑行业内提供几个开口的材料。其中一个应用是现有的非延性混凝土结构的地震改装。本文旨在优化UHPFRC以满足延展性需求,以较低的成本。为实现这一目标,创建了两个随机林模型以估计能量吸收能力和最大开裂后应变。尽管随机森林模型被报告为预测特殊混凝土特性的最有效方法之一,但目的是通过实验工程评估随机林的优化结果的目的。实验验证的结果表明,高强度钢微纤维和垂直强度钢纤维的适当组合,钩住末端符合极限值(G& = 50kJ / m(3)和ε(PC)& = 0.3% )以较低的成本。 (c)2021 elestvier有限公司保留所有权利。

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