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Backfill Corrosivity around Corrugated Steel Plate Culverts

机译:波纹钢板涵洞周围的回填腐蚀

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Corrugated steel plate (CSP) culverts are exposed to the risk of soil corrosion because of the location in the soil environment. This paper characterizes the most important factors contributing to corrosion in the soil: resistivity, pH, and moisture content. Tests of soil resistivity based on the geophysical electrical resistivity measurements (Wenner array) are presented. This method allows for soil resistivity measurements at various depths. The conducted experimental tests concerned the six galvanized CSP culverts situated on different types of roads (national, provincial, and local). All tests were conducted in two seasons: summer and spring. The minimum resistivity of the soil in the vicinity of the CSP culverts amounted to 30 Omega . m and was established near roadway. The pH of the backfill in the tested culverts showed alkaline reaction (8.1-9.3). The largest natural soil moisture of approximately 10% was obtained during the spring. The obtained results indicate the peril of the soil corrosion occurrence in the CSP culverts, especially located on the national and provincial roads. The Pearson's correlation coefficient was applied to the statistical analysis. A strong correlation between the backfill resistivity and the pH value in summer and spring, and between the resistivity and moisture content in spring, was recorded. Analysis of durability based on the three standards [American Association of State Highway and Transportation Officials (AASHTO), Australian/New Zealand Standard (AS/NZS), and Canadian Highway Bridge Design Code (CHBDC)] shows that the tested culverts meet the requirement for a minimum service life of 40 years (as for culverts), but do not fulfill the required lifetime as for bridges, which is 100 years. (C) 2014 American Society of Civil Engineers.
机译:波纹钢板涵(CSP)由于位于土壤环境中,因此容易遭受土壤腐蚀。本文描述了导致土壤腐蚀的最重要因素:电阻率,pH和水分含量。提出了基于地球物理电阻率测量(温纳阵列)的土壤电阻率测试。该方法允许在各种深度下测量土壤电阻率。进行的实验测试涉及位于不同类型道路(国家,省和地方)上的六个镀锌CSP涵洞。所有测试均在两个季节进行:夏季和春季。 CSP涵洞附近的土壤最小电阻率为30Ω。米,并建立在巷道附近。被测涵洞中回填料的pH值显示碱性反应(8.1-9.3)。在春季期间获得了大约10%的最大自然土壤水分。获得的结果表明,CSP涵洞尤其是在国家和省级公路上,土壤腐蚀发生的危险。皮尔逊相关系数用于统计分析。记录了夏季和春季回填电阻率与pH值之间以及春季的电阻率与水分含量之间的强相关性。根据三种标准[美国国家公路和运输官员协会(AASHTO),澳大利亚/新西兰标准(AS / NZS)和加拿大公路桥梁设计规范(CHBDC)]进行的耐久性分析表明,经测试的涵洞符合要求。至少有40年的使用寿命(如涵洞),但没有达到桥梁要求的使用寿命,即100年。 (C)2014美国土木工程师学会。

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