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Empirical modeling of splitting tensile strength from cylinder compressive strength of concrete by genetic programming

机译:基于遗传规划的混凝土圆筒抗压强度断裂强度的经验模型。

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摘要

Compressive strength and splitting tensile strength are both mechanical properties of concrete that are utilized in structural design. This study presents gene expression programming (GEP) as a new tool for the formulations of splitting tensile strength from compressive strength of concrete. For purpose of building the GEP-based formulations, 536 experimental data have been gathered from existing literature. The GEP-based formulations are developed for splitting tensile strength of concrete as a function of age of specimen and cylinder compressive strength. In experimental parts of this study, cylindrical specimens of 150 x 300 mm and 100 x 200 mm in dimensions are utilized. Training and testing sets of the GEP-based formulations are randomly separated from the complete experimental data. The GEP-based formulations are also validated with additional 173 data of experimental results other than the data used in training and testing sets of the GEP-based formulations. All of the results obtained from the GEP-based formulations are compared with the results obtained from experimental data, the developed regression-based formulation and formulas given by some national building codes. These comparisons showed that the GEP-based formulations appeared to well agree with the experimental data and found to be quite reliable.
机译:抗压强度和劈裂抗拉强度都是用于结构设计的混凝土的机械性能。这项研究提出了基因表达程序设计(GEP),作为从混凝土抗压强度中分离抗拉强度的新工具。为了建立基于GEP的制剂,已经从现有文献中收集了536个实验数据。基于GEP的配方被开发用于将混凝土的抗拉强度作为试样的寿命和圆柱体的抗压强度的函数。在本研究的实验部分中,使用了尺寸为150 x 300 mm和100 x 200 mm的圆柱形试样。基于GEP的配方的训练和测试集与完整的实验数据随机分离。除了用于GEP配方的训练和测试集之外,还使用其他173个实验结果数据对基于GEP的配方进行了验证。将所有从基于GEP的配方获得的结果与从实验数据,已开发的基于回归的配方以及一些国家建筑法规给出的公式得到的结果进行比较。这些比较表明,基于GEP的配方似乎与实验数据完全吻合,并且非常可靠。

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