On the 3d Fluid Behavior During Cbm Coproduction in a Multi Pressure System: Insights from Experimental Analysis and Mathematical Models

43 Pages Posted: 22 May 2023

See all articles by Shijie Dai

Shijie Dai

Chongqing University

Jiang Xu

Chongqing University

Li Jia

Chongqing University

Jieren Chen

Chongqing University

Fazhi Yan

Taiyuan University of Technology

Yuexia Chen

affiliation not provided to SSRN

Shoujian Peng

Chongqing University

Abstract

To investigate the dynamic response characteristics of coalbed methane (CBM) reservoirs with multi pressure system induced by coproduction, physical simulation experiments were conducted on CBM coproduction under both conventional and constant-rate coproduction modes using a self-built experimental platform. The results showed that constant-rate coproduction can significantly extend the stable coproduction period of CBM compared to conventional coproduction, but it may have an inhibitory effect on certain reservoirs, which is negatively correlated with the initial reservoir pressure. Constant-rate coproduction can cause disturbance effects on reservoir pressure, leading to an increase in the expansion resistance of the pressure-reduction funnel during coproduction, and even the appearance of the pressure-buildup funnel of low-pressure reservoirs. A calculation principle for the 3D fluid flow parameters was developed by considering the dynamic permeability and the pressure gradient of the reservoir. The 3D fluid flow parameters were employed to quantitatively characterize the spatial and temporal evolution of fluid relative flow velocity and deflection angle in the reservoir during coproduction. Near the far end of the wellbore, the fluid flowed nearly horizontally, while near the wellbore, the fluid flowed towards or away from the wellbore center due to different levels of disturbance.

Keywords: Multi pressure system, Coalbed methane coproduction, 3D fluid flow parameter, Relative flow velocity, Deflection angle

Suggested Citation

Dai, Shijie and Xu, Jiang and Jia, Li and Chen, Jieren and Yan, Fazhi and Chen, Yuexia and Peng, Shoujian, On the 3d Fluid Behavior During Cbm Coproduction in a Multi Pressure System: Insights from Experimental Analysis and Mathematical Models. Available at SSRN: https://ssrn.com/abstract=4455264 or http://dx.doi.org/10.2139/ssrn.4455264

Shijie Dai (Contact Author)

Chongqing University ( email )

Shazheng Str 174, Shapingba District
Shazheng street, Shapingba district
Chongqing 400044, 400030
China

Jiang Xu

Chongqing University ( email )

Shazheng Str 174, Shapingba District
Shazheng street, Shapingba district
Chongqing 400044, 400030
China

Li Jia

Chongqing University ( email )

Jieren Chen

Chongqing University ( email )

Shazheng Str 174, Shapingba District
Shazheng street, Shapingba district
Chongqing 400044, 400030
China

Fazhi Yan

Taiyuan University of Technology ( email )

No.79 West Yingze Street
Taiyuan
China

Yuexia Chen

affiliation not provided to SSRN ( email )

Shoujian Peng

Chongqing University ( email )

Shazheng Str 174, Shapingba District
Shazheng street, Shapingba district
Chongqing 400044, 400030
China

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