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Dive into the research topics where Narayan Bhandari is active.

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Featured researches published by Narayan Bhandari.


SPE International Symposium on Oilfield Chemistry | 2015

Scale Prediction and Control at Ultra HTHP

Amy T. Kan; Zhaoyi Dai; Fangfu Zhang; Narayan Bhandari; Fei Yan; Zhang Zhang; Ya Liu; Mason B. Tomson

Production from deepwater environment often encounter ultra high temperature, pressure (ultra HTHP) and with more exotic fluid compositions. Most scale prediction programs were developed by semiempirically modeling the thermodynamic parameters using experimentally measured mineral solubilities and other chemical properties. However, the experimental data were limited at temperature, pressure, and ionic strength that were clearly below that typically encountered in deepwater production. Therefore, extending the existing thermodynamic models to HTHP applications is of questionable accuracy. Furthermore, the partitioning of H 2 O, CO 2 , and H 2 S in and out of the gas/oil phases during production can have a significant impact on scaling tendency. The authors have published papers on experimental solubility measurements and thermodynamic modeling to extend the solubility data to HTHP condition. The new thermodynamic parameters and a flash calculator that integrate the latest development of Equation of State (EOS) to model the partition of H 2 O, CO 2 , and H 2 S in hydrocarbon/aqueous phases at temperature and pressure have been incorporated into a scale prediction software that is specifically tailored for oil and gas production application. The objective of this paper is to validate the software’s application range with a set of critically evaluated peer-reviewed mineral solubility data for general oilfield produced water and deepwater HTHP application. A total of 73 selected papers and more than 2,500 individual experimental data points were included in this evaluation. Our model has been shown to be applicable to greater than 95% of produced water compositions with SI prediction of better than 0.03 for halite, 0.05 for gypsum, 0.1 for calcite and anhydrite, and 0.2 for barite at temperature between 32 - 500 °F, and and pressure between 14.7 to 22,000 psia. The newly incorporated flash calculator is capable of predicting how CO 2 ,H 2 S, and H 2 O partition in and out of the gas phase during production. The partitioning of CO 2 ,H 2 S, and H 2 O between the hydrocarbon and aqueous phases has significantly changed the ion composition and pH and therefore, impacted the scaling tendency of the fluids at the production temperature and pressure. This is a particularly important issue for newer wells with high volumes of gas and low water cuts and for CO 2 flooding.


Journal of Petroleum Science and Engineering | 2015

Adsorption and precipitation of scale inhibitors on shale formations

Fei Yan; Fangfu Zhang; Narayan Bhandari; Lu Wang; Zhaoyi Dai; Zhang Zhang; Ya Liu; Gedeng Ruan; Amy T. Kan; Mason B. Tomson


Rock Mechanics and Rock Engineering | 2017

Solubility Measurements and Predictions of Gypsum, Anhydrite, and Calcite Over Wide Ranges of Temperature, Pressure, and Ionic Strength with Mixed Electrolytes

Zhaoyi Dai; Amy T. Kan; Wei Shi; Nan Zhang; Fangfu Zhang; Fei Yan; Narayan Bhandari; Zhang Zhang; Ya Liu; Gedeng Ruan; Mason B. Tomson


Chemical Engineering Journal | 2015

Determination of adsorption isotherm parameters with correlated errors by measurement error models

Fei Yan; Yiyi Chu; Kai Zhang; Fangfu Zhang; Narayan Bhandari; Gedeng Ruan; Zhaoyi Dai; Ya Liu; Zhang Zhang; Amy T. Kan; Mason B. Tomson


Journal of Petroleum Science and Engineering | 2016

An assay method to determine mineral scale inhibitor efficiency in produced water

Ya Liu; Amy T. Kan; Zhang Zhang; Chao Yan; Fei Yan; Fangfu Zhang; Narayan Bhandari; Zhaoyi Dai; Gedeng Ruan; Lu Wang; Janet Greenberg; Mason B. Tomson


SPE International Symposium on Oilfield Chemistry | 2015

Ferrous Iron Impact on Phosphonate and Polymeric Scale Inhibitors at Temperature Ranging from 25 to 70°C

Zhang Zhang; Fangfu Zhang; Qiliang ‘Luke’ Wang; Narayan Bhandari; Fei Yan; Ya Liu; Zhaoyi Dai; Lu Wang; Valerie Bolanos; Amy T. Kan; Mason B. Tomson


open source systems | 2014

Prediction of Barite Scaling Risk and Inhibition for Oil and Gas Production at High Temperature

Fangfu Zhang; Narayan Bhandari; Amy T. Kan; Mason B. Tomson; Chao Yan


Spe Journal | 2017

Barite-Scaling Risk and Inhibition at High Temperature

Fangfu Zhang; Zhaoyi Dai; Chao Yan; Narayan Bhandari; Fei Yan; Ya Liu; Zhang Zhang; Gedeng Ruan; Amy T. Kan; Mason B. Tomson


Crystal Growth & Design | 2016

Mineral Precipitation Kinetics: Assessing the Effect of Hydrostatic Pressure and Its Implication on the Nucleation Mechanism

Narayan Bhandari; Amy T. Kan; Fangfu Zhang; Zhaoyi Dai; Fei Yan; Gedeng Ruan; Zhang Zhang; Ya Liu; Rudi van Eldik; Mason B. Tomson


Journal of Petroleum Science and Engineering | 2017

Barite scale formation and inhibition in laminar and turbulent flow: A rotating cylinder approach

Fei Yan; Zhaoyi Dai; Gedeng Ruan; Hamad Amer Alsaiari; Narayan Bhandari; Fangfu Zhang; Ya Liu; Zhang Zhang; Amy T. Kan; Mason B. Tomson

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