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Potential and current distribution across different layers of reinforcement in reinforced concrete cathodic protection system- A numerical study

机译:钢筋混凝土阴极保护系统中不同加固层的电位和电流分布 - 数值研究

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Cathodic Protection (CP) is being applied extensively to protect reinforced concrete structures exposed to aggressive environment from corrosion. However, protection provided by cathodic protection is dependent on several parameters such as concrete resistivity, applied current density and the geometrical arrangement of anode and cathode. For the first time, the distribution of potential and protection current along different layers of reinforcement in concrete is numerically investigated. A parametric study was done to analyse the effect of applied current density and concrete resistivity on protection achieved by different layers of reinforcement. The results show, concrete with anode applied at one surface is only able to protect top two reinforcement layers with current density of 40 mA/m(2), compared to anode at two adjacent concrete surfaces which protect all four layers of reinforcement with minimum 10 mA/m(2) of current density. 80-90% of protection current reached the top layer of steel near the anode. Bottom layers of reinforcement received very minimal current and thus shows negligible protection. A drastic drop in protection was observed on moving down the reinforcement layers. Moreover, protection provided is highly depended on concrete resistivity. (C) 2020 Elsevier Ltd. All rights reserved.
机译:阴极保护(CP)正在广泛应用,以保护暴露于侵蚀环境的钢筋混凝土结构免受腐蚀。然而,通过阴极保护提供的保护取决于诸如混凝土电阻率,施加电流密度和阳极和阴极的几何布置的若干参数。首次首次,数值研究了混凝土中不同加固层的潜在和保护电流的分布。完成参数研究以分析应用电流密度和混凝土电阻率对不同加固层的保护的影响。结果表明,在一个表面上施加的阳极混凝土仅能够保护顶部两个强度,电流密度为40 mA / m(2),与两个相邻的混凝土表面相比,其保护所有四层加固至少10 MA / M(2)电流密度。 80-90%的保护电流达到阳极附近的顶层钢。底层加固接收极小的电流,因此忽略不计。在向下移动加强层时,观察到保护的激烈滴落。此外,提供的保护高度依赖于混凝土电阻率。 (c)2020 elestvier有限公司保留所有权利。

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