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Effect of the Geometrical Constraints to the Wenner Four-Point Electrical Resistivity Test of Reinforced Concrete Slabs

机译:几何限制对钢筋混凝土板Wenner四点电阻率试验的影响

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摘要

The main objectives of this study are to evaluate the effect of geometrical constraints of plain concrete and reinforced concrete slabs on the Wenner four-point concrete electrical resistivity (ER) test through numerical and experimental investigation and to propose measurement recommendations for laboratory and field specimens. First, a series of numerical simulations was performed using a 3D finite element model to investigate the effects of geometrical constraints (the dimension of concrete slabs, the electrode spacing and configuration, and the distance of the electrode to the edges of concrete slabs) on ER measurements of concrete. Next, a reinforced concrete slab specimen (1500 mm (width) by 1500 mm (length) by 300 mm (thickness)) was used for experimental investigation and validation of the numerical simulation results. Based on the analytical and experimental results, it is concluded that measured ER values of regularly shaped concrete elements are strongly dependent on the distance-to-spacing ratio of ER probes (i.e., distance of the electrode in ER probes to the edges and/or the bottom of the concrete slabs normalized by the electrode spacing). For the plain concrete, it is inferred that the thickness of the concrete member should be at least three times the electrode spacing. In addition, the distance should be more than twice the electrode spacing to make the edge effect almost negligible. It is observed that the findings from the plain concrete are also valid for the reinforced concrete. However, for the reinforced concrete, the ER values are also affected by the presence of reinforcing steel and saturation of concrete, which could cause disruptions in ER measurements.
机译:本研究的主要目标是通过数值和实验调查评估普通混凝土和钢筋混凝土板对Wenner四点混凝土电阻率(ER)测试的影响,并提出了实验室标本的测量建议。首先,使用3D有限元模型进行一系列数值模拟,以研究几何限制(混凝土板的尺寸,电极间距和配置的尺寸,以及电极到混凝土板边缘的距离)的影响混凝土的测量。接下来,使用钢筋混凝土板(1500mm(宽度)1500mm(长度)300mm(厚度))用于实验研究和验证数值模拟结果。基于分析和实验结果,得出结论:定期形状的混凝土元件的测量ER值强烈地取决于ER探针的距离 - 间距比(即,电极在ER探针中的距离和/或由电极间隔归一化的混凝土板的底部)。对于普通的混凝土,推断混凝土构件的厚度应至少为电极间距的三倍。此外,距离应超过电极间距的两倍以使边缘效果几乎可以忽略不计。观察到普通混凝土的发现也适用于钢筋混凝土。然而,对于钢筋混凝土,ER值也受到加强钢和混凝土饱和的影响,这可能导致ER测量中断。

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