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Pengaruh Kadar Air Dan Jenis Tanah Terhadap Penyediaan Arus Sistem Impressed Current Cathodic Protection Untuk Proteksi Korosi Pipa Baja

机译:水分和土壤类型对外加电流腐蚀钢管阴极保护系统供电的影响

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摘要

THE EFFECT OF VARIATIONS IN RESISTIVITY AND SOIL WATER CONTENT TO WARDS CURRENT IN IMPRESSED CURRENT CATHODIC PROTECTION SYSTEM AT STEEL PIPE. Corrosion is the main problem of the failure of metal pipe and it is unavoidable from underground piping system. The frequent method that been used for reducing corotion in underground pipe by giving coat and ICCP installation. The environment factor become the most indicator towards ground corotion is the resistivity and soil water content. The purpose of this research are to analyze the resistivity effect and soil water content towards the requirement of ICCP current protection system at metal pipe API 5L Grade B as a chatode that been add with the coating variation (full coating, without coating and square form scratch defect with 500mm2 wide). The 0% of water content variation (dry condition) and 25%.We use graphite as an anode and current rectifier and Cu/ CuSO4 electrode as a reference. The measurement of this current protection been held for 7 days with data retrieval everyday. From this research it show us that the increase of soil water content level make the soil resistivity reduce, because the increasing of the water level in the soil can ease the current. The soil resistivity number can be higher but it needs the low current protection, this is all due to the soil with the higher resistivity have the high resistance (too weak to deliver the electric current or isolator).Meanwhile with the high level of soil water content, the number of the current protection will be increase, this is all due to the water can easily absorb the ionisation of the electron in the soil so it can ease the current flow. According to the hypothesis of the authors, the higher of resistivity will make the current of protection will be even lower.
机译:钢管中电流阴极保护系统中电阻率和土壤水分对电流的变化的影响。腐蚀是金属管失效的主要问题,地下管道系统不可避免。通过提供涂层和安装ICCP来减少地下管道结垢的常用方法。导致地面腐蚀的最主要指标是环境电阻率和土壤含水量。这项研究的目的是分析针对金属管API 5L B级作为IC的ICCP电流保护系统的要求的电阻率效应和土壤含水量,该阴极随着涂层变化而变化(全涂层,无涂层和方形划痕)宽500mm2的缺陷)。水分变化0%(干燥条件)和25%。我们使用石墨作为阳极,使用电流整流器和Cu / CuSO4电极作为参考。每天进行7天这种电流保护的测量,并进行数据检索。从这项研究可以看出,增加土壤含水量会使土壤电阻率降低,因为土壤中含水量的增加可以缓解电流。土壤电阻率值可以更高,但需要低电流保护,这是由于电阻率较高的土壤具有较高的电阻(太弱而无法提供电流或隔离器)。同时土壤水含量高含量增加时,电流保护的数量将会增加,这都是由于水可以轻易吸收土壤中电子的电离,因此可以缓解电流的流动。根据作者的假设,电阻率越高,保护电流就越低。

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