Effect of warship impressed current cathodic protection configuration on low frequency current output modulations associated with propeller/shaft rotation

A. Akomah, J. Dahele, D. Tighe-ford
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引用次数: 4

Abstract

Abstract Physical scale modelling was employed to examine the effect of reference electrode (RE) location upon the modulations of warship impressed current cathodic protection (ICCP) current output resulting from propeller rotation. A one hundredth scale painted metal model of a frigate hull, fitted with two rotating propellers, was protected by ICCP in sea water diluted to an electrical conductivity one hundredth that of standard sea water. An 'all aft' four anode ICCP configuration was employed, with the RE at one of three locations in the after cut up. Propeller/shaft rotation produced amplitude modulations of ICCP current outputs. The data shows that both the waveform and the magnitude of the modulations were determined by where the RE was sited relative to the propellers. A different output waveform was associated with each RE location. A superimposed 'beat' rhythm was produced only with one position. The RE location also determined not only total current outputs but also the absolute and percentage magnitude of the modulations. Possible mechanisms for the phenomenon and requirements for further studies are discussed.
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舰船外加电流阴极保护配置对螺旋桨/轴旋转低频电流输出调制的影响
摘要采用物理比例模型研究了参考电极位置对螺旋桨旋转对舰船外加电流阴极保护(ICCP)输出调制的影响。一个装有两个旋转螺旋桨的百分之一比例的涂漆金属护卫舰船体模型,在电导率稀释到标准海水的百分之一的海水中受到ICCP的保护。采用“全后”四阳极ICCP配置,RE位于后切割的三个位置之一。螺旋桨/轴的旋转产生了ICCP电流输出的振幅调制。数据表明,波形和调制幅度都是由相对于螺旋桨的RE位置决定的。不同的输出波形与每个RE位置相关联。只有一个位置才会产生叠加的“节拍”节奏。RE的位置不仅决定了总电流输出,还决定了调制的绝对幅度和百分比幅度。讨论了该现象的可能机制和进一步研究的要求。
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