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Using genetic programming to model the bond strength of GFRP bars in concrete under the effects of design guidelines

机译:用遗传编程在设计指南效应下模拟混凝土中GFRP棒的粘合强度

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PurposeThis paper aims to use a derivative of genetic programming to predict the bond strength of glass fiber-reinforced polymer (GFRP) bars in concrete under the effects of design guidelines. In developing bond strength prediction models, this paper prioritized simplicity and meaningfulness over extreme accuracy.Design/methodology/approachAssessing the bond strength of GFRP bars in concrete is a critical issue in designing and building reinforced concrete structures.FindingsUltimately, the equation of a linear form of a particular design guideline was suggested as the optimal prediction model. Improvements to the current design guidelines suggested by this model include setting a 1.31 magnification and considering the effects of the three significant parameters of bar diameter (db), minimum cover-to-bar diameter (C/db) and development length to bar diameter (l/db) under an acceptable root mean square error accuracy of around 2 MPa. Furthermore, the model suggests that the original influence parameter of concrete compressive strength (f(c)) may be removed from bond strength calculations.Originality/valueThe model suggests that the original influence parameter of concrete compressive strength (f(c)) may be removed from bond strength calculations.
机译:目的纸目的是使用遗传编程的衍生物,以预测设计指南的影响下混凝土中的玻璃纤维增​​强聚合物(GFRP)棒的粘合强度。在开发债券强度预测模型中,本文优先考虑了极端精度的简单性和有意义.Design/Methodology/ApprocateSing混凝土中GFRP酒吧的债券强度是设计和建造钢筋混凝土结构的关键问题。 - 一种线性形式的等式特定设计指南被建议为最佳预测模型。改进该模型建议的设计指南包括设置1.31放大率,并考虑杆直径(DB),最小盖子直径(C / DB)和开发长度的三个重要参数的效果与杆直径( l / db)在可接受的根均方误差精度约为2 mpa。此外,该模型表明,可以从粘合强度计算中除去混凝土压缩强度(F(c))的原始影响参数。符合性/ valsete模型表明,混凝土压缩强度的原始影响参数(f(c))可以是从债券强度计算中取出。

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