Secondary recovery involves injecting water or gas into reservoirs to maintain or boost the pressure and sustain production levels at viable rates. Accurate tracking of pressure dynamics as reservoirs produce under secondary production is one of the challenging tasks in reservoir modelling. In this paper, a data-driven based technique called Dynamic Mode Learning (DML) that aims to provide an efficient alternative approach for learning and decomposing pressure dynamics in multiphase reservoir model that produces under secondary recovery is proposed. Existing algorithms suffer from complexity and thereby resulting to expensive computational demand. The proposed DML technique is developed in the form of a learning system by first, constructin...
This thesis has two aims. First, to investigate the importance of incorporating the multiphase flow ...
The oil and gas industry works with a few of the most complex and challenging industrial processes a...
In this paper, we apply mode decomposition and interpolatory projection methods to speed up simulati...
Secondary recovery involves injecting water or gas into reservoirs to maintain or boost the pressure...
The process of storing natural gas in geological formations involves applying pressure to force the ...
In reservoir engineering, data-driven methodologies have been applied successfully to infer interwel...
Gas reservoirs, like many other physical processes, belong to the large class of dynamic systems who...
For reliable performance assessment of unconventional reservoirs, we need to model the complex hydra...
This dissertation comprises two topics. The first topic introduces an innovative multiphase, multico...
The article presents the first successful industrial application of the Target Pressure and Phase Me...
Reservoir tank modeling has traditionally been employed to simplify complicated reservoir simulation...
Computational instability may occur in the mathematical simulation of hydrocarbon reservoirs when sm...
Gas reservoirs, like many other physical processes, belong to the large class of dynamic systems who...
The study presented in this thesis addresses various pore-scale phenomena related to the oil indust...
A physics-based data-driven model is proposed in this study for the forecasting of secondary oil rec...
This thesis has two aims. First, to investigate the importance of incorporating the multiphase flow ...
The oil and gas industry works with a few of the most complex and challenging industrial processes a...
In this paper, we apply mode decomposition and interpolatory projection methods to speed up simulati...
Secondary recovery involves injecting water or gas into reservoirs to maintain or boost the pressure...
The process of storing natural gas in geological formations involves applying pressure to force the ...
In reservoir engineering, data-driven methodologies have been applied successfully to infer interwel...
Gas reservoirs, like many other physical processes, belong to the large class of dynamic systems who...
For reliable performance assessment of unconventional reservoirs, we need to model the complex hydra...
This dissertation comprises two topics. The first topic introduces an innovative multiphase, multico...
The article presents the first successful industrial application of the Target Pressure and Phase Me...
Reservoir tank modeling has traditionally been employed to simplify complicated reservoir simulation...
Computational instability may occur in the mathematical simulation of hydrocarbon reservoirs when sm...
Gas reservoirs, like many other physical processes, belong to the large class of dynamic systems who...
The study presented in this thesis addresses various pore-scale phenomena related to the oil indust...
A physics-based data-driven model is proposed in this study for the forecasting of secondary oil rec...
This thesis has two aims. First, to investigate the importance of incorporating the multiphase flow ...
The oil and gas industry works with a few of the most complex and challenging industrial processes a...
In this paper, we apply mode decomposition and interpolatory projection methods to speed up simulati...