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Genetic programming approach for prediction of compressive strength of concretes containing rice husk ash

机译:遗传程序设计方法预测稻壳灰混凝土抗压强度

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Soft computing techniques have recently been widely used to model some of human activities in many areas of civil engineering applications. In this paper, two models in gene expression programming (GEP) approach for predicting compressive strength of concretes containing rice husk ash have been developed at the age of 1, 3, 7,14, 28, 56 and 90 days. For purpose of building the models, experimental results for 188 specimens produced with 41 different mixture proportions are obtained from the literature. According to these experimental results, the models are arranged by using seven different input variables in CEP approach. In according to these input variables, the compressive strength values from mechanical properties of concretes containing rice husk ash are predicted in GEP approach models. The results of training, testing and validation sets of the models are compared with experimental results. All of the results showed that GEP is a strong technique for the prediction of compressive strength values of concretes containing rice husk ash.
机译:软计算技术最近已广泛用于在土木工程应用的许多领域中对某些人类活动进行建模。在本文中,已经开发了两种用于预测含稻壳灰的混凝土抗压强度的基因表达编程(GEP)方法模型,分别在1、3、7、14、28、56和90天龄使用。为了建立模型,从文献中获得了以41种不同的混合比例生产的188个试样的实验结果。根据这些实验结果,在CEP方法中使用七个不同的输入变量来排列模型。根据这些输入变量,可以在GEP方法模型中预测包含稻壳灰的混凝土的机械性能所产生的抗压强度值。将模型的训练,测试和验证集的结果与实验结果进行比较。所有结果表明,GEP是一种用于预测含稻壳灰的混凝土抗压强度值的强大技术。

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