A simple yet practical model to estimate the time dependence of metal loss (ML) in underground pipelines has been developed considering the in situ soil parameters. These parameters are soil resistivity, pH, moisture content, chloride content, and salinity. The time dependence of the ML was modeled as Pmax ¼ ktn, where t is the time exposure, k is ML constant, and n is the corrosion growth pattern. The results of ML and in situ parameters were analyzed using statistical methods such as data screening, linear correlation analysis, principal component analysis, and multiple linear regressions. The best model revealed that k is principally influenced by ressistivity, and n appears to be correlated with chloride content. Model optimization wa...
Soil corrosion is a complex and multi-disciplinary problem affecting a range of engineering assets a...
External damage to buried pipelines is mainly caused by corrosive components in soil solution. The r...
Some operating buried transmission pipeline systems will develop unforeseen surface corrosion. Elect...
A simple yet practical model to estimate the time dependence of metal loss (ML) in underground pipel...
A statistical predictive model to estimate the time dependence of metal loss (ML) for buried pipelin...
A statistical predictive model to estimate the time dependence of metal loss (ML) for buried pipelin...
The reliability of a buried steel pipeline is strongly influenced by external corrosion due to soil....
Pipelines are one of the economical ways to transport large quantities of fluids such as natural gas...
Corrosion is one of the most terrifying incidents that engineers does not want on the pipeline, espe...
Underground pipe system will place at different place and will pass through the different soil struc...
Corrosion is a serious concern for asset managers and owners of the buried pipelines. Millions of do...
This review concentrates on corrosion properties that expose to soil environment. Forms of corrosion...
The corrosion of pipeline steels buried under seabed sediment is not fully predictable, since there ...
The need for predicting pipeline service life and improving risk assessment relating to corrosion ha...
Corrosion is one of the major factors leading to the failure of buried pipelines. Soil properties su...
Soil corrosion is a complex and multi-disciplinary problem affecting a range of engineering assets a...
External damage to buried pipelines is mainly caused by corrosive components in soil solution. The r...
Some operating buried transmission pipeline systems will develop unforeseen surface corrosion. Elect...
A simple yet practical model to estimate the time dependence of metal loss (ML) in underground pipel...
A statistical predictive model to estimate the time dependence of metal loss (ML) for buried pipelin...
A statistical predictive model to estimate the time dependence of metal loss (ML) for buried pipelin...
The reliability of a buried steel pipeline is strongly influenced by external corrosion due to soil....
Pipelines are one of the economical ways to transport large quantities of fluids such as natural gas...
Corrosion is one of the most terrifying incidents that engineers does not want on the pipeline, espe...
Underground pipe system will place at different place and will pass through the different soil struc...
Corrosion is a serious concern for asset managers and owners of the buried pipelines. Millions of do...
This review concentrates on corrosion properties that expose to soil environment. Forms of corrosion...
The corrosion of pipeline steels buried under seabed sediment is not fully predictable, since there ...
The need for predicting pipeline service life and improving risk assessment relating to corrosion ha...
Corrosion is one of the major factors leading to the failure of buried pipelines. Soil properties su...
Soil corrosion is a complex and multi-disciplinary problem affecting a range of engineering assets a...
External damage to buried pipelines is mainly caused by corrosive components in soil solution. The r...
Some operating buried transmission pipeline systems will develop unforeseen surface corrosion. Elect...