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Using Response Surface Methodology and providing a modified model using whale algorithm for estimating the compressive strength of columns confined with FRP sheets

机译:使用响应面方法,并使用鲸鱼算法提供改进的模型,以估算由FRP板约束的柱的抗压强度

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This study presented a modified model for determining the compressive strength of square and rectangular concrete columns using whale algorithm and a widespread database. In this model, the effective strain coefficient of FRP and cross section coefficient considered as an individual coefficient. Furthermore, the coefficients of the rising strength for specimens with unconfined compressive strength in upper and lower of 35 MPa are differently considered. In addition, Response Surface Methodology used for estimating the compressive strength of the confined specimens by FRP. Finally, results compared with the existing models. The predictions of the modified model and RSM show satisfactory estimations. So that RSM and the modified model have increased R-2 approximately 34% and 26% rather other models, respectively. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项研究提出了一种改进的模型,该模型使用鲸鱼算法和广泛的数据库来确定方形和矩形混凝土柱的抗压强度。在该模型中,将FRP的有效应变系数和横截面系数视为单个系数。此外,对于在35 MPa的上下无限制抗压强度的试样,其上升强度系数的考虑也有所不同。另外,响应面方法用于通过FRP估算承压样品的抗压强度。最后,将结果与现有模型进行比较。修改后的模型和RSM的预测显示令人满意的估计。因此,RSM和修改后的模型将R-2分别增加了其他模型约34%和26%。 (C)2018 Elsevier Ltd.保留所有权利。

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