Comprehensive Algorithm for Prediction of Strontium Sulfate (SrSO4) Solubility in Aqueous Electrolyte Solutions at High Temperatures andPressures
محل انتشار: دومین همایش بین المللی نفت،گاز،پتروشیمی و HSE
سال انتشار: 1396
نوع سند: مقاله کنفرانسی
زبان: انگلیسی
مشاهده: 449
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شناسه ملی سند علمی:
OGPH02_052
تاریخ نمایه سازی: 11 شهریور 1397
چکیده مقاله:
Precipitation of strontium sulfate (or SrSO4) has already been distinguished as one of the most costly and critical problems which may occur in process industries especially in oilfield operations. Costs due to scaling and remedial actions that need to be taken afterward are generallyhigh owing to low solubility of SrSO4 in aqueous solutions. Therefore, a thorough understanding of the SrSO4 thermodynamic behavior under various operating conditions is vital to predict or even avoid the overall damage caused by scaling. The primary aim of this work is to develop amodel based on Least Squares Support Vector Machine (LSSVM) and Coupled Simulated Annealing (CSA) referred to as CSA-LSSVM algorithm to predict strontium sulfate solubility as a function of pressure, temperature and ionic compositions. In this context, we have employedalmost 1641 experimental data regarding strontium sulfate solubility to build a comprehensive model and to evaluate its reliability. The results show that the proposed model has a better performance in comparison with pre-existing empirical correlation for predicting SrSO4 solubilityand it is also in well accordance with experimental measurements. Based on the results obtained from this study, developed model could successfully be used in predicting SrSO4 solubility in aqueous Na-Ca-Mg-Sr-Cl-SO4-H2O system over temperature ranges from 2 to 253.5 °C, and pressures from 1 to 568.51 atm
کلیدواژه ها:
Strontium sulfate ، Solubility ، Aqueous solutions ، Least Squares Support Vector Machine ، Coupled Simulated Annealing ، Pitzer ion interaction
نویسندگان
Sadra Rostami
Department of Petroleum Engineering, Amir Kabir University of Technology, Tehran, Iran
Hossein safari
۲ Department of Petroleum Engineering, Petroleum University of Technology, Ahwaz, Iran