Smart Materials in Oil and Gas Industry: Application

Author:

Rashidi Alimorad,Sharafinia Soheila

Publisher

Springer International Publishing

Reference84 articles.

1. Ahmadi S, Hosseini M, Tangestani E, Mousavi SE, Niazi M (2020) Wettability alteration and oil recovery by spontaneous imbibition of smart water and surfactants into carbonates. Pet Sci:17(3):712–721

2. Amanullah M, AlArfaj MK, Al-abdullatif ZA (2011) Preliminary test results of nano-based drilling fluids for oil and gas field application. In: SPE/IADC drilling conference and exhibition. Society of Petroleum Engineers

3. API, R65 (2002) Cementing shallow water flow zones in deepwater wells. API, Washington, DC; (b) Vipulanandan, C.; Mohammed, A., Smart cement rheological and piezoresistive behavior for oil well applications. Journal of petroleum Science and Engineering 2015, 135, 50–58

4. Barry MM, Jung Y, Lee J-K, Phuoc TX, Chyu MK (2015) Fluid filtration and rheological properties of nanoparticle additive and intercalated clay hybrid bentonite drilling fluids. J Pet Sci Eng 127:338–346; (b) Vryzas, Z.; Nalbandian, L.; Zaspalis, V. T.; Kelessidis, V. C., How different nanoparticles affect the rheological properties of aqueous Wyoming sodium bentonite suspensions. Journal of Petroleum Science and Engineering 2019, 173, 941–954; (c) Cai, J.; Chenevert, M. E.; Sharma, M. M.; Friedheim, J. E., Decreasing water invasion into Atoka shale using nonmodified silica nanoparticles. SPE Drilling & Completion 2012, 27 (1), 103–112; (d) William, J. K. M.; Ponmani, S.; Samuel, R.; Nagarajan, R.; Sangwai, J. S., Effect of CuO and ZnO nanofluids in xanthan gum on thermal, electrical and high pressure rheology of water-based drilling fluids. Journal of Petroleum Science and Engineering 2014, 117, 15–27; (e) Huang, X.; Lv, K.; Sun, J.; Lu, Z.; Bai, Y.; Shen, H.; Wang, J., Enhancement of thermal stability of drilling fluid using laponite nanoparticles under extreme temperature conditions. Materials Letters 2019, 248, 146–149; (f) Wang, K.; Jiang, G.; Liu, F.; Yang, L.; Ni, X.; Wang, J., Magnesium aluminum silicate nanoparticles as a high-performance rheological modifier in water-based drilling fluids. Applied Clay Science 2018, 161, 427–435; (g) Meng, X.; Zhang, Y.; Zhou, F.; Chu, P. K., Effects of carbon ash on rheological properties of water-based drilling fluids. Journal of Petroleum Science and Engineering 2012, 100, 1–8; (h) Ismail, A.; Aftab, A.; Ibupoto, Z.; Zolkifile, N., The novel approach for the enhancement of rheological properties of water-based drilling fluids by using multi-walled carbon nanotube, nanosilica and glass beads. Journal of Petroleum Science and Engineering 2016, 139, 264–275

5. Biscay F, Ghoufi A, Malfreyt P (2011) Surface tension of water–alcohol mixtures from Monte Carlo simulations. J Chem Phys 134(4):044709; (b) Russo, N.; Anastassopoulou, J.; Barone, G., Properties and Chemistry of Biomolecular Systems: Proceedings of the Second Joint Greek-Italian Meeting on Chemistry and Biological Systems and Molecular Chemical Engineering, Cetraro, Italy, October 1992. Springer Science & Business Media: 2012; Vol. 11

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