Assessing the feasibility of using a data-driven corrosion rate model for optimizing dosages of corrosion inhibitors

IF 6.6 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Chamanthi Denisha Jayaweera, David Fernandes del Pozo, Ivaylo Plamenov Hitsov, Maxime Van Haeverbeke, Thomas Diekow, Arne Verliefde, Ingmar Nopens
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Abstract

Optimizing dosages of corrosion inhibitors requires experimental data gathered from time-consuming methods. The current study examines the feasibility of optimizing inhibitor dosages using a model trained for predicting corrosion rates more easily measured using linear polarization resistance in a full-scale cooling water system. A comprehensive study on variable selection showed that linearly correlated variables are necessary to predict corrosion trends. The Sobol sensitivity of inhibitors is trivialized by variables linearly correlated to the corrosion rate. The study highlights the importance of achieving high model prediction accuracy and high Sobol sensitivity of inhibitors to the corrosion rate, for using the model for inhibitor dosage optimization.

Abstract Image

评估使用数据驱动的腐蚀速率模型来优化缓蚀剂剂量的可行性
优化缓蚀剂的剂量需要从耗时的方法中收集实验数据。目前的研究考察了优化缓蚀剂剂量的可行性,使用一个模型来预测腐蚀速率,更容易在全尺寸冷却水系统中使用线性极化电阻来测量。对变量选择的全面研究表明,线性相关变量是预测腐蚀趋势的必要条件。缓蚀剂的Sobol敏感性被与腐蚀速率线性相关的变量所简化。该研究强调了实现高模型预测精度和抑制剂对腐蚀速率的高Sobol敏感性对于使用该模型进行抑制剂用量优化的重要性。
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来源期刊
npj Materials Degradation
npj Materials Degradation MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
7.80
自引率
7.80%
发文量
86
审稿时长
6 weeks
期刊介绍: npj Materials Degradation considers basic and applied research that explores all aspects of the degradation of metallic and non-metallic materials. The journal broadly defines ‘materials degradation’ as a reduction in the ability of a material to perform its task in-service as a result of environmental exposure. The journal covers a broad range of topics including but not limited to: -Degradation of metals, glasses, minerals, polymers, ceramics, cements and composites in natural and engineered environments, as a result of various stimuli -Computational and experimental studies of degradation mechanisms and kinetics -Characterization of degradation by traditional and emerging techniques -New approaches and technologies for enhancing resistance to degradation -Inspection and monitoring techniques for materials in-service, such as sensing technologies
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