Antifouling and Anticorrosive Protection of Renewable Energy Marine Structures with TiO2-Based Enamel
Author:
Publisher
Faculty of Navigation
Subject
Ocean Engineering,Transportation,Oceanography
Link
https://www.transnav.eu/files/Antifouling_and_Anticorrosive_Protection_of_Renewable_Energy_Marine_Structures_with_TiO2Based_Enamel,1416.pdf
Reference22 articles.
1. Abbas, M., & Shafiee, M. (2020). An overview of maintenance management strategies for corroded steel structures in extreme marine environments. Marine Structures, 71, 102718.
2. Boullosa-Falces, D., García, S., Sanz, D., Trueba, A., & Gomez-Solaetxe, M. A. (2020). CUSUM chart method for continuous monitoring of antifouling treatment of tubular heat exchangers in open-loop cooling seawater systems. Biofouling, 36(1), 73–85.
3. Boullosa-Falces, D., Gomez-Solaetxe, M. A., Sanchez-Varela, Z., García, S., & Trueba, A. (2019). Validation of CUSUM control chart for biofouling detection in heat exchangers. Applied Thermal Engineering, 152. https://doi.org/10.1016/j.applthermaleng.2019.02.009
4. Boullosa-Falces, D., Sanz, D. S., Garcia, S., Trueba-Castañeda, L., & Trueba, A. (2022). Predicting tubular heat exchanger efficiency reduction caused by marine biofilm adhesion using CFD simulations. Biofouling, 1–11. https://doi.org/10.1080/08927014.2022.2110493
5. Costa, F. C. R., Ricci, B. C., Teodoro, B., Koch, K., Drewes, J. E., & Amaral, M. C. S. (2021). Biofouling in membrane distillation applications - a review. Desalination, 516, 115241. https://doi.org/10.1016/j.desal.2021.115241
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