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Temperature changes in and around the wellbore could lead to significant well performance and flow assurance issues.
When the diffusion coefficient is lower than 1 × 10−4 cm2/s, the gas diffusion plays a negligible role in well performance and the contribution to well performance is only 0.01%.
Subsequently, the effects of various gas flow mechanisms and fracture network complexities on well performance and rate transient behavior with the constraint of constant bottomhole pressure are studied systematically.
To best of our knowledge, this work is the first study that presents the impacts of gas transport mechanisms on well performance and rate transient analysis in shale formations with the complex non-planar fracture network.
This practice, according to the energy analysts, limits the ability to accurately assess well performance and provide more exact long-term estimates for how much gas that part of the shale formation can actually produce over time.
The modeling results demonstrate that changes in fracture aperture and permeability due to geomechanical stress, have a significant impact on well performance and production rate in fractured reservoirs.
Similar(46)
In this paper, a new approach using Artificial Neural Network (ANN) technology is proposed to predict individual well performances and accordingly develop infill drilling strategies.
A mathematical model of fluid flow in stress-sensitive reservoir was established to evaluate the effect of stress changes on well performances, and an analytical solution method was presented.
In the coming decades, optimizing the well performances and managing the reservoir production are the most priorities of each company to provide the requirements to assess more contact with the production layers.
"They responded well, with a good performance and a fantastic result.
The scheme integrates nonlinear models of reservoir and well performance.
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CEO of Professional Science Editing for Scientists @ prosciediting.com