Mohan Kelkar

Affiliations: 
Petroleum Engineering University of Tulsa, United States 
Area:
Petroleum Engineering
Website:
https://faculty.utulsa.edu/faculty/mohan-kelkar/
Google:
"Mohan Kelkar"
Bio:

https://www.proquest.com/openview/34891781eed2f3948cd58663b0024644/1

Parents

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Yatish T. Shah grad student 1982 University of Pittsburgh
 (Study of Hydrodynamics and Mixing Characteristics in Cocurrent Bubble Column)
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Publications

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Al-Qasim A, Kelkar M. (2018) Effect of mobility and convection-dominated flow on evaluation of reservoir dynamic performance by fast marching method Computational Geosciences. 22: 1059-1082
Al-Qasim A, Kelkar M. (2017) Effect of Mobility and Convection-Dominated Flow on Evaluation of Reservoir Dynamic Performance by Fast Marching Method Sats
Shekhar S, Kelkar M, Hearn WJ, et al. (2017) Improved Prediction of Liquid Loading In Gas Wells Spe Production & Operations. 32: 539-550
Pouladi B, Sharifi M, Ahmadi M, et al. (2017) Fast marching method assisted sector modeling: Application to simulation of giant reservoir models Journal of Petroleum Science and Engineering. 149: 707-719
Ajani A, Kelkar M, Sarica C, et al. (2016) Foam flow in vertical gas wells under liquid loading: Critical velocity and pressure drop prediction International Journal of Multiphase Flow. 87: 1339-1351
Ajani A, Kelkar M, Sarica C, et al. (2016) Effect of surfactants on liquid loading in vertical wells International Journal of Multiphase Flow. 83: 183-201
Skopich A, Pereyra E, Sarica C, et al. (2015) Pipe-diameter effect on liquid loading in vertical gas wells Spe Production and Operations. 30: 164-176
Luo S, Kelkar M, Pereyra E, et al. (2014) A new comprehensive model for predicting liquid loading in gas wells Spe Production and Operations. 29: 337-349
Sharifi M, Kelkar M, Bahar A, et al. (2014) Dynamic ranking of multiple realizations by use of the fast-marching method Spe Journal. 19: 1069-1082
Al-Shawaf A, Kelkar M, Sharifi M. (2014) A new method to predict the performance of gas-condensate reservoirs Spe Reservoir Evaluation and Engineering. 17: 177-189
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