Research on Hydrate Formation Risk in the Wellbore of Deepwater Dual-Source Co-production
Author:
Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-97-1309-7_25
Reference19 articles.
1. Sloan, E.D.: A changing hydrate paradigm—from apprehension to avoidance to risk management. Fluid Phase Equilib. 228–229, 67–74 (2005)
2. Jassim, E., Abdi, M.A., Muzychka, Y.: A new approach to investigate hydrate deposition in gas-dominated flowlines. J. Nat. Gas Sci. Eng. 2(4), 163–177 (2010)
3. Perfeldt, C.M., et al.: Oil and gas pipelines with hydrophobic surfaces better equipped to deal with gas hydrate flow assurance issues. J. Nat. Gas Sci. Eng. 27, 852–861 (2015)
4. Wu, Y.S., Pruess, K.: An analytical solution for wellbore heat transmission in layered formations. SPE Reserv. Eng. 5(4), 531–538 (1990)
5. Gao, Y.H., Sun, B.J., Xu, B.Y., Wu, X.R., Chen, Y., Zhao, X.X., et al.: A wellbore/formation-coupled heat-transfer model in deepwater drilling and its application in the prediction of hydrate-reservoir dissociation. SPE J. 22(3), 756–766 (2017)
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