Author:
Bijani Masoud,Khamehchi Ehsan,Shabani Mehdi
Abstract
AbstractIn this study, a mechanistic and comprehensive examination of the impact of the scale formation situation of different diluted seawater levels was conducted to investigate the influence of important factors on the performance and efficiency of low salinity water. To clarify the effective participating mechanisms, scale precipitation by compatibility test, field emission scanning electron microscopy (FESEM) and energy dispersive X-ray spectroscopy (EDX) analysis, zeta potentials as surface charge, ion concentration changes, contact angle, pH, CO2 concentration, electrical conductivity, and ionic strength were analyzed. The results showed that increasing the dilution time to the optimal level (10 times-diluted seawater (SW#10D)) could effectively reduce the amount of severe precipitation of calcium carbonate (CaCO3) and calcium sulfate (CaSO4) scales. However, the reduction in CaCO3 scale precipitation (due to mixing different time diluted seawater with formation brine) and its effect on the wettability alteration (due to the change in surface charge of OLSW/oil and sandstone/OLSW) had higher impacts. The zeta potential results have shown that OLSW with optimum salinity, dilution, and ionic composition compared to different low salinity water compositions could change the surface charge of OLSW/oil/rock (− 16.7 mV) and OLSW/rock (− 10.5 mV) interfaces toward an extra negatively charged. FESEM and contact angle findings confirmed zeta potential results, i.e. OLSW was able to make sandstone surface more negative with diluting seawater and wettability changes from oil-wet toward water-wet. As a result, SW#10D was characterized by minimum scaling tendency and scale deposition (60 mg/l), maximum surface charge of OLSW/oil/rock (− 16.7 mV), and the potential of incremental oil recovery due to wettability alteration toward more water-wetness (the oil/rock contact angle ~ 50.13°) compared with other diluted seawater levels.
Publisher
Springer Science and Business Media LLC
Reference90 articles.
1. Singh Sidhu, H., Siddhamshetty, P. & Kwon, J. S. Approximate dynamic programming based control of proppant concentration in hydraulic fracturing. Mathematics 6, 132 (2018).
2. Sen, D., Chen, H., Datta-Gupta, A., Kwon, J. & Mishra, S. Machine learning based rate optimization under geologic uncertainty. J. Petrol. Sci. Eng. 207, 109116 (2021).
3. Abbasi, S. & Khamehchi, E. Investigation of permeability decline due to coupled precipitation/dissolution mechanism in carbonate rocks during low salinity co-water injection. Energy Rep. 7, 125–135 (2021).
4. Alameri, W., Teklu, T. W., Graves, R. M., Kazemi, H. & AlSumaiti, A. M. In SPE Asia Pacific Oil & Gas Conference and Exhibition. (OnePetro).
5. Farhadi, H., Fatemi, M. & Ayatollahi, S. Experimental investigation on the dominating fluid-fluid and rock-fluid interactions during low salinity water flooding in water-wet and oil-wet calcites. J. Petrol. Sci. Eng. 204, 108697 (2021).
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