Optimization Of Hydraulic Fracturing In Tight Gas Reservoirs With Alternative Fluid


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Optimization of Hydraulic Fracturing in Tight Gas Reservoirs with Alternative Fluid


Optimization of Hydraulic Fracturing in Tight Gas Reservoirs with Alternative Fluid

Author: Faisal Mehmood

language: en

Publisher:

Release Date: 2021


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Optimization of hydraulic fracturing in tight gas reservoirs with alternative fluid


Optimization of hydraulic fracturing in tight gas reservoirs with alternative fluid

Author: Faisal Mehmood

language: en

Publisher: Cuvillier Verlag

Release Date: 2021-07-26


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Due to the finite nature of petroleum resources and depletion of conventional reservoirs, the exploitation of unconventional resources has been a key to meeting world energy needs. Natural gas, a cleaner fossil fuel compared to oil and coal, has an increasing role in the energy mix. It is expected that the peak global natural gas production will remain between 3.7-6.1 trillion m3 per year between 2019 and 2060. Therefore, addressing the technical challenges posed by reservoir exploitation technologies in an environmentally responsible manner is critical for efficient energy production and energy secure of the world.

Optimization of Multistage Hydraulic Fracturing Treatment for Maximization of the Tight Gas Productivity


Optimization of Multistage Hydraulic Fracturing Treatment for Maximization of the Tight Gas Productivity

Author: Mengting Li

language: en

Publisher: Cuvillier Verlag

Release Date: 2018-12-17


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Hydraulic fracturing is essential technology for the development of unconventional resources such as tight gas. So far, there are no numerical tools which can optimize the whole process from geological modeling, hydraulic fracturing until production simulation with the same 3D model with consideration of the thermo-hydro-mechanical coupling. In this dissertation, a workflow and a numerical tool chain were developed for design and optimization of multistage hydraulic fracturing in horizontal well regarding a maximum productivity of the tight gas wellbore. After the verification a full 3D reservoir model is generated based on a real tight gas field in the North German Basin. Through analysis of simulation results, a new calculation formula of FCD was proposed, which takes the proppant position and concentration into account and can predict the gas production rate more accurately. However, not only FCD but also proppant distribution and hydraulic connection of stimulated fractures to the well, geological structure and the interaction between fractures are determinant for the gas production volume. Through analysis the numerical results of sensitivity analysis and optimization variations, there is no unique criterion to determine the optimal number and spacing of the fractures, it should be analyzed firstly in detail to the actual situation and decided then from case to case.