1. Alves, L. dos S. (2009). Efeitos Térmicos Transientes e Walking em Dutos Submarinos. Universidade Federal do Rio de Janeiro.
2. Bandeira, M. C. E., Moreira, R. M., de Barros, B., Ribeiro, R. C., Silva, P., Mattos, O. R., & dos Santos, F. P. (2019). The Effect of H2S Consumption on SSC Susceptibility of High Strength Wire Grades for Flexible Pipes. 13483. https://onepetro.org/NACECORR/proceedings-abstract/CORR19/All-CORR19/NACE-2019-13483/127509
3. Benjelloun-Touimi, Z., de Hemptinne, J.-C., Jarrin, J., Leroy, J.-M., Aubry, J.-C., Saas, J.N., & Taravel-Condat, C. (2002). Moldi(Tm): a Fluid Permeation Model to Calculate the Annulus Composition in Flexible Pipes. Oil and Gas Science and Technology –Revue IFP, 57(2), 177–192. https://doi.org/10.2516/ogst:2002014
4. Brandão, M. O., Lima, J., Almeida, E., Borges, O., McCarthy, J., Nott, P., & McNab, J. (2020). SPIRE: Flexible Riser Condition Monitoring System Applied to Pre-Salt Fields With High CO2. 4, 18948. https://asmedigitalcollection.asme.org/OMAE/proceedings-abstract/OMAE2020/84355/V004T04A020/1092744
5. Brandao, M., Pires, F., Poloponsky, I., Santos, F., & Lopes, D. (2021). Flexible Pipes Subjected to SCC CO2: Review and Means to Increase Reliability on Service Life Applied to Brazilian Pre-Salt Fields. 31135. https://onepetro.org/OTCONF/proceedings-abstract/21OTC/4-21OTC/D041S045R006/466749?redirectedFrom=PDF