Geofluids

New Challenges and Advances in the Unconventional Oil/Gas Reservoirs Characterization and Development


Publishing date
01 Jan 2023
Status
Closed
Submission deadline
09 Sep 2022

Lead Editor

1China University of Geosciences, Wuhan, China

2China University of Petroleum, Qingdao, China

3Institute of Oceanology, China Academy of Sciences, Qingdao, China

4Core Geologic LLC, Houston, USA

5China University of Petroleum, Beijing, China

This issue is now closed for submissions.

New Challenges and Advances in the Unconventional Oil/Gas Reservoirs Characterization and Development

This issue is now closed for submissions.

Description

Energy consumption is increasing, while production from conventional reservoirs is declining. The unconventional resources, including shale oil/gas, tight oil/gas, coalbed methane and natural gas hydrates are gradually playing a more important role in offsetting this shortage. Due to the low porosity and ultra-low permeability of unconventional reservoirs, more challenging and different solutions are required to characterize, optimize and manage reservoirs. Advanced evaluation theories and development techniques have been well established and tested in laboratories and fields in the past decade. Hydraulic fracturing, micro/nano scale pore characterization, fracture reservoir modeling and sweet-spot prediction are proposed to promote global unconventional oil and gas development. The powerful machine learning algorithm and models also help solve problems in reservoir characterization due to the availability of high-performance computational resources in recent years.

Despite the recent advances and techniques, unsolved problems with reservoir characterization and development remains. Some drilling wells still have no economic production even though hydraulic fracturing is conducted in the production layer. The complex rock-fluid interactions lead to significant heterogeneity of the pore-crack network. The relatively short production span observed in unconventional reservoirs also increases the uncertainty of hydrocarbon production. Hence, more novel solutions are required to optimize drilling and completion, and improving recovery efficiency should combine geological and engineering methods. Geological factors control the fundamental properties of hydrocarbon reservoirs, while the engineering approaches are closely related to the drilling practice and development results.

This Special Issue aims to cover the recent pressing challenges and inspiring advances in reservoir characterization, optimization and management from geological and engineering aspects. We sincerely invite prospective authors to submit high-quality original articles or reviews regarding how to promote unconventional oil/gas development, especially by integrating geological and engineering theories and methodologies.

Potential topics include but are not limited to the following:

  • Sedimentary environment and genesis mechanism of fine-grained rocks
  • New advances of reservoir geochemistry
  • Pore evolution and structure of reservoirs
  • Hydrocarbon generation and enrichment
  • Physical properties, occurrence and mobility of oil/gas
  • Oil and gas exploration in onshore and offshore areas
  • Drilling, completion, hydraulic fracturing, and related reservoir damage and stimulation
  • Characterization of natural fractures and hydraulic fractures
  • Fluid flow behavior in the matrix and fracture
  • Enhanced oil/gas recovery through physical and chemical methods
  • Prediction of oil/gas production rate

Articles

  • Special Issue
  • - Volume 2023
  • - Article ID 5039604
  • - Research Article

The Exquisite Comparison of Shale Mineralogical-Geochemical Characteristics between Chang 7 Member and Chang 9 Member in Yanchang Formation, Ordos Basin

Wang Zhang | Xinping Liang | ... | Guoheng Liu
  • Special Issue
  • - Volume 2023
  • - Article ID 6181179
  • - Research Article

Hydrocarbon Exploration Potential of the Jurassic Chaoshan Subbasin in Northern South China Sea: Evidence from the Latest Seismic and Outcrop Data

Kunsheng Qiang | Haipeng Li
  • Special Issue
  • - Volume 2023
  • - Article ID 3042994
  • - Research Article

Evaluating Pore Structure of Shale Reservoirs through Pore Space Multifractal Characterization

Quanqi Dai | Yingfu He | ... | Hao Wu
  • Special Issue
  • - Volume 2023
  • - Article ID 2248940
  • - Research Article

Rare Earth Partition Characteristics and Sedimentary Diagenetic Response in Layered Argillaceous Limestone: Taking the Shale of Upper Es4 in the Nx55 Well Area as an Example

Jianbin Teng | Longwei Qiu | ... | Jiejie Yu
  • Special Issue
  • - Volume 2023
  • - Article ID 4003656
  • - Research Article

An Explicit Method for Estimating the Average Reservoir Pressure and Gas in Place Based on the Gas Property Polynomial Function

Lixia Zhang | Hao Jiang | ... | Yang Li
  • Special Issue
  • - Volume 2023
  • - Article ID 9786775
  • - Research Article

Theoretical and Experimental Antiscaling Performance Study of Several Inhibitors to Prevent Barium Sulfate Formation during Water Injection in Oil Reservoirs

Haitao Li | Ran Li
  • Special Issue
  • - Volume 2022
  • - Article ID 6514733
  • - Research Article

Geochemistry of Formation Water and Implications for Ultradeep Tight Sandstone of DK Gas Field in Kuqa Depression

Xiaobo Guo | Libin Zhao | ... | Chenglin Zhang
  • Special Issue
  • - Volume 2022
  • - Article ID 6071514
  • - Research Article

Coal Facies and Its Effects on Pore Characteristics of the Late Permian Longtan Coal, Western Guizhou, China

Yi Lou | Yuliang Su | ... | Xiangping Chen
  • Special Issue
  • - Volume 2022
  • - Article ID 3299768
  • - Research Article

Genetic Mechanisms and Identification of Low-Resistivity Pay Zones: A Case Study of Pengyang Area, Ordos Basin, China

Peiqiang Zhao | Yuting Hou | ... | Zhiqiang Mao
  • Special Issue
  • - Volume 2022
  • - Article ID 3424367
  • - Research Article

Evaluation of Coalbed Methane Content by Using Kernel Extreme Learning Machine and Geophysical Logging Data

Jianhong Guo | Zhansong Zhang | ... | Can Wang
Geofluids
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