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A simple formulation for effective flexural stiffness of circular reinforced concrete columns

机译:圆形钢筋混凝土柱有效抗弯刚度的简单公式

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Concrete cracking reduces flexural and shear stiffness of reinforced concrete (RC) members. Therefore analyzing RC structures without considering the cracking effect may not represent actual behavior. Effective flexural stiffness resulting from concrete cracking depends on some important parameters such as confinement, axial load level, section dimensions and material properties of concrete and reinforcing steel. In this study, a simple formula as a securer, quicker and more robust is proposed to determine the effective flexural stiffness of cracked sections of circular RC columns. This formula is generated by genetic programming (GP). The generalization capabilities of the explicit formulations are compared by cross sectional analysis results and confirmed on a 3-D building model. Moreover the results from GP based formulation are compared with EC-8 and TEC-2007. It is demonstrated that the GP based model is highly successful to determine the effective flexural stiffness of circular RC columns.
机译:混凝土开裂会降低钢筋混凝土(RC)构件的弯曲和剪切刚度。因此,在不考虑开裂效果的情况下分析RC结构可能无法代表实际行为。混凝土开裂产生的有效抗弯刚度取决于一些重要参数,例如约束力,轴向载荷水平,截面尺寸以及混凝土和钢筋的材料性能。在这项研究中,提出了一个简单的公式来确定圆形RC柱裂缝部分的有效抗弯刚度,以使其更安全,更快速,更可靠。该公式由遗传编程(GP)生成。通过横截面分析结果比较显式配方的泛化能力,并在3-D建筑模型中进行确认。此外,基于GP的配方的结果与EC-8和TEC-2007进行了比较。结果表明,基于GP的模型在确定圆形RC柱的有效抗弯刚度方面非常成功。

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