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Influence of resistivity on current and potential distribution of cathodic protection systems for steel framed masonry structures

机译:电阻率对钢框架砌体结构阴极保护系统电流和电位分布的影响

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摘要

The present paper presents the influence of resistivity on the current and potential distribution of cathodic protection (CP) systems for steel framed masonry structures. The work involves both experimental measurements and boundary element analysis and follows on from earlier experiments employing sand as a simple model for masonry encasement that has been reported elsewhere. Factors such as the size and type of masonry, moisture content and width of mortar joints will affect the resistance of the path through which the CP currents pass and thereby influence the distribution onto the steel surface. To represent such variations in resistance, it has been necessary to construct a small scale specimen replicating, as far as possible, actual applications on steel framed structures. The results from the laboratory specimen and numerical modelling are in sufficient agreement to confirm the validity of the modelling approach and allow the results to be employed for the purposes of design and development.
机译:本文介绍了电阻率对钢框架砌体结构阴极保护(CP)系统的电流和电位分布的影响。这项工作涉及实验测量和边界元素分析,并且是在较早的实验之后进行的,该实验采用沙子作为砌体围护的简单模型,在其他地方已有报道。诸如砌体的大小和类型,含水量和灰浆缝的宽度等因素将影响CP电流通过的路径的电阻,从而影响到钢表面的分布。为了表现出这样的电阻变化,必须构造一个小规模的样本,尽可能地复制钢框架结构上的实际应用。实验室标本和数值模拟的结果在充分吻合上证实了模拟方法的有效性,并允许将结果用于设计和开发目的。

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