Prediction of Corrosion Rate for Carbon Steel Using Regression Model with Commercial LPR Sensor Data

被引:2
作者
Jung, Kwang-Hu [1 ]
Lee, Jung-Hyung [2 ]
机构
[1] Mokpo Natl Maritime Univ, Div Cadet Training, Mokpo 58628, South Korea
[2] Mokpo Natl Maritime Univ, Div Marine Syst Engn, Mokpo 58628, South Korea
来源
APPLIED SCIENCES-BASEL | 2024年 / 14卷 / 23期
关键词
carbon steel; corrosion rate; LPR sensor; electrochemical technique; regression model; BEHAVIOR; PH;
D O I
10.3390/app142310836
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In this study, a model was proposed to predict the corrosion rate (Mils per Year, MPY) of carbon steel in a 3.5% NaCl solution, with the objective of comparing the effectiveness of a commercial LPR sensor against traditional electrochemical methods, using potentiostat-based LPR techniques. The primary factors considered in the experiments were temperature, flow velocity, and pH, tested through a full factorial design to identify the most influential variables. Statistical analysis showed that temperature and flow velocity had a significant effect on corrosion rate, with their interaction having the most substantial impact. In contrast, pH had no statistically significant influence within the tested conditions, likely due to the dominant effects of temperature and flow velocity in the high-salinity environment. The MPY data were validated through Tafel plots, immersion coupon tests, and other electrochemical techniques to confirm the reliability of the measurements. A regression model trained on 54 MPY data points demonstrated high accuracy, achieving a coefficient of determination (R2) of 0.9733. The model also provided reliable predictions for factor combinations excluded from the training dataset. Additionally, scenario-based evaluations highlighted the model's performance under simulated operating conditions, while revealing challenges related to sensor contamination during long-term use. These findings emphasize the potential of commercial LPR sensors as effective tools for real-time corrosion monitoring and demonstrate the utility of the regression model in marine environments.
引用
收藏
页数:19
相关论文
共 31 条
[1]  
Abo Nassar N.E., 2022, Int. J. Adv. Eng. Sci. Appl., V3, DOI [10.47346/ijaesa.v3i1.80, DOI 10.47346/IJAESA.V3I1.80]
[2]   Prediction of maximum pitting corrosion depth in oil and gas pipelines [J].
Ben Seghier, Mohamed El Amine ;
Keshtegar, Behrooz ;
Tee, Kong Fah ;
Zayed, Tarek ;
Abbassi, Rouzbeh ;
Nguyen Thoi Trung .
ENGINEERING FAILURE ANALYSIS, 2020, 112
[3]  
Biologic, VASP-RP Determination Corrosion Application Note
[4]   Electrochemical Evaluation of the Effect of Different NaCl Concentrations on Low Alloy- and Stainless Steels under Corrosion and Erosion-Corrosion Conditions [J].
Brownlie, Frazer ;
Hodgkiess, Trevor ;
Pearson, Alastair ;
Galloway, Alexander .
CORROSION AND MATERIALS DEGRADATION, 2022, 3 (01) :101-126
[5]   An experimental study of crevice corrosion behaviour of 316L stainless steel in artificial seawater [J].
Cai, Baoping ;
Liu, Yonghong ;
Tian, Xiaojie ;
Wang, Fei ;
Li, Hang ;
Ji, Renjie .
CORROSION SCIENCE, 2010, 52 (10) :3235-3242
[6]   Effect of seawater salinity, pH, and temperature on external corrosion behavior and microhardness of offshore oil and gas pipeline: RSM modelling and optimization [J].
Chohan, Imran Mir ;
Ahmad, Azlan ;
Sallih, Nabihah ;
Bheel, Naraindas ;
Salilew, Waleligne Molla ;
Almaliki, Abdulrazak H. .
SCIENTIFIC REPORTS, 2024, 14 (01)
[7]   Study of the Chlorine Influence on the Corrosion of Three Steels to Be Used in Water Treatment Municipal Facilities [J].
Costa, Ruben D. F. S. ;
Barbosa, Marta L. S. ;
Silva, Francisco J. G. ;
Sousa, Susana R. R. ;
Sousa, Vitor F. C. ;
Ferreira, Bruno O. O. .
MATERIALS, 2023, 16 (06)
[8]   Modeling and analysis of internal corrosion induced failure of oil and gas pipelines [J].
Dao, Uyen ;
Sajid, Zaman ;
Khan, Faisal ;
Zhang, Yahui ;
Tran, Trung .
RELIABILITY ENGINEERING & SYSTEM SAFETY, 2023, 234
[9]   CORROSION RATE MEASUREMENTS BY NONLINEAR ELECTROCHEMICAL IMPEDANCE SPECTROSCOPY [J].
DAROWICKI, K .
CORROSION SCIENCE, 1995, 37 (06) :913-925
[10]   Corrosion rate measurements by non-linear electrochemical impedance spectroscopy. Comments on the paper by K. Darowicki, Corros. Sci. 37, 913 (1995) [J].
Diard, JP ;
Le Gorrec, B ;
Montella, C .
CORROSION SCIENCE, 1998, 40 (2-3) :495-508