Geofluids

Hydrocarbon Migration and Extraction in Tight Formation


Publishing date
01 Aug 2021
Status
Published
Submission deadline
02 Apr 2021

Lead Editor

1University of Aberdeen, Aberdeen, UK

2Research Institute of PetroChina, Lanzhou, China

3GRC Total, Aberdeen, UK

4China University of Geosciences, Wuhan, China

5China University of Geosciences, Beijing, China


Hydrocarbon Migration and Extraction in Tight Formation

Description

Porosity and permeability are much lower in tight formation (e.g., shale, tight sandstone, chalk, and coal seam) compared with conventional formations; this is due to the small pore size and lack of connectivity observed in tight formation. The recent advanced imaging facilities make it possible to identify pore and mineral distribution at a nano-scale. The mechanism of hydrocarbon accumulation and extraction in tight formation is still lacking proper investigation.

Tight formation has gathered tremendous pace around the world to meet the global energy demand. A thorough investigation of hydrocarbon migration and extraction in tight formation will help us to improve our reserves evaluation and screen the most efficient strategies to develop these reservoirs.

This Special Issue emphasizes the fundamental scientific innovation on experimental and mathematical multiscale modelling of hydrocarbon migration and extraction in tight formation, with an emphasis on contributions that increase the basic understanding of hydrocarbon accumulation, reservoir trapping mechanics, and novel hydrocarbon extraction techniques in tight formation. We invite authors to contribute original research and critical review articles related to all aspects of hydrocarbon migration and extraction in tight formation by means of theoretical, numerical modelling, and experimental approaches.

Potential topics include but are not limited to the following:

  • Tight formation characterization
  • Reserve evaluation in tight formation
  • Hydrocarbon accumulation and migration in tight formation
  • Fluid flow mechanisms in tight formation
  • Stimulation in tight formation
  • Enhance hydrocarbon recovery in tight formation

Articles

  • Special Issue
  • - Volume 2021
  • - Article ID 6657788
  • - Research Article

An Analytical Model for Fracture Initiation from a Particular Radial Borehole in Hydraulic Fracturing Guided by Multiradial Boreholes

Yuxin Chen | Yunhong Ding | ... | Chunmei Zou
  • Special Issue
  • - Volume 2021
  • - Article ID 6685820
  • - Research Article

A Novel Radial-Composite Model of Pressure Transient Analysis for Multistage Fracturing Horizontal Wells with Stimulated Reservoir Volume

Yunpeng Hu | Xiaoling Zhang | ... | Wenqi Zhang
  • Special Issue
  • - Volume 2021
  • - Article ID 6674425
  • - Research Article

Study on Inhibitory Effect of Cavity on Gas Explosion Propagation

Zhuo Yan | Shujie Yuan | ... | Chaomin Mu
  • Special Issue
  • - Volume 2021
  • - Article ID 6622079
  • - Research Article

Pore-Scale Modelling of Three-Phase Capillary Pressure Curves Directly in Uniformly Wet Rock Images

Yingfang Zhou | Dimitrios Georgios Hatzignatiou | ... | Jianchao Cai
  • Special Issue
  • - Volume 2020
  • - Article ID 6618590
  • - Research Article

Investigation of Large-Diameter Borehole for Enhancing Permeability and Gas Extraction in Soft Coal Seam

Yongwen Wang | Wanjun Yan | ... | Heng Zhang
  • Special Issue
  • - Volume 2020
  • - Article ID 8854307
  • - Research Article

Rate Decline Analysis of Horizontal Wells with Multiple Variable Conductivity and Uneven Distributed Fractures

Yunpeng Hu | Ziyun Cheng | ... | Wenqi Zhang
Geofluids
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Acceptance rate29%
Submission to final decision141 days
Acceptance to publication32 days
CiteScore2.300
Journal Citation Indicator0.600
Impact Factor1.7
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