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Pressure and Permeability Evolution near Hydrate Exploitation Well During Constant-Rate Water Flooding: An Experimental Study

delete2026-08-15
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OA
AI
Y
Yuning Liu
Y
Yunkai Ji *
Q
Qiang Fu
Z
Zhenyu Zhu
Z
Zihao Wang
G
Gaowei Hu
陈强 (Qiang Chen)
Y
Yongchao Zhang
Q
Qingtao Bu
Y
Yizhao Wan *
DOI:10.3390/jmse14161505delete
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Abstract

Abstract

En 中文
Dynamic damage to the seepage characteristics of the near-well zone during natural gas hydrate exploitation is a key factor limiting production stability. There is still a lack of systematic understanding of the microscopic mechanisms underlying fine-particle migration and blockage in the near-well zone. In this study, a long sand-packed column was segmentally packed with clayey-silt sediments from the South China Sea and quartz sand to simulate the near-well reservoir and the packed layer, respectively. Long-term seepage processes in the near-well zone were simulated using water flow experiments at constant flow velocities. By combining pressure distribution monitoring with particle-size analysis, the spatiotemporal evolution of seepage characteristics in the near-well zone is revealed from both macroscopic and microscopic perspectives. Results indicate that under long-term displacement, the reservoir permeability near the injection end increased from 0.0149 mD to 0.0159 mD; the reservoir permeability near the packed layer exhibits the greatest decline, dropping from 0.0089 mD to 0.0065 mD. Combined with the particle-size analysis of the packer layer, the boundary between the reservoir and the packed layer is identified as the critical site for permeability damage in the near-well zone. Radial flow inversion shows that a reduction in wellbore radius leads to an increase in reservoir pressure, with the increase being greater the farther from wellbore. A decrease in the permeability of packed layer causes an increase in reservoir pressure, but the magnitude of the increase is consistent across different locations. It provides a theoretical basis for the optimized design of production wells.
Keywords:
permeability
near-well zone
packed layer
hydrate extraction
particle migration

Journal

Journal of Marine Science and Engineering cover
Journal of Marine Science and Engineering
IF:
2.8
Papers:
4.3K
Citations:
2.3W

Organization

Q
Qingdao Institute of Marine Geology
Scholars:
127
Papers: 49
Citations: 695
C
cnooc research institute
Scholars:
37
Papers: 20
Citations: 0
L
Laoshan Laboratory
Scholars:
2.6K
Papers: 2.0K
Citations: 1.3K
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