Investigation of a Cathodic Protection Configuration for the Steel Casing Pipes in Reinforced Concrete Bridge in the Niger Delta

Gabriel Essien, Victor E. Etuk, Aniefiok Livinus, Okon, Edet Ita
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Abstract

This paper details the Design of a Cathodic Protection System on the steel casing pipes of the 60m reinforced concrete bridge project in the Niger Delta, Nigeria. Galvanic anode cathodic protection system was provided for the submerged steel support piles on the newly reinforced concrete bridge to ensure adequate corrosion protection of the structures. A total of fifty-six (56) Aluminum Anodes (32 kg) were used. Two of the Aluminum anodes were installed on each of the twenty-eight (28) steel casing piles. The anode installation was achieved by means of clamping at the predetermined water depth of 37.2 m with purpose made carbon steel clamps. The bonding of the anode to the pile structure to make electrical contact was achieved through welding of the pre-installed anode steel core extension bar against the steel pile at the water splash zone area of the river. A pre- and post-installation test and survey activities were conducted on each of the steel piles to ascertain the integrity of the installation and degree of corrosion protection of the steel casing piles. The field test and measurement results indicated mean values of open circuit potential of 0.600 Volts and polarized corrosion potential of 0.850 Volts. The recorded corrosion potential for the installed cathodic protection system confirmed adequate corrosion protection for ten (10) years from anode life for the steel casing supports of the 60 m reinforced concrete bridge.
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尼日尔三角洲钢筋混凝土桥梁钢套管阴极保护配置调查
本文详细介绍了尼日利亚尼日尔三角洲 60 米钢筋混凝土桥梁工程钢护筒阴极保护系统的设计。为新钢筋混凝土桥梁的水下钢支撑桩提供了电镀阳极阴极保护系统,以确保对结构进行充分的腐蚀保护。共使用了 56 个铝阳极(32 千克)。二十八(28)根钢护筒桩上各安装了两个铝阳极。阳极安装是在预定的 37.2 米水深处用特制的碳钢夹具夹紧。通过将预先安装的阳极钢芯延长杆焊接到河水飞溅区的钢桩上,实现了阳极与桩身结构的粘接,从而实现电接触。对每根钢桩都进行了安装前后的测试和勘测活动,以确定安装的完整性和钢护筒桩的防腐程度。现场测试和测量结果表明,开路电位的平均值为 0.600 伏,极化腐蚀电位为 0.850 伏。已安装的阴极保护系统记录的腐蚀电位证实,60 米钢筋混凝土桥梁的钢护筒支架在阳极寿命期满后的 10 年内都有足够的腐蚀保护。
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