Reservoir Science: A Multi-Coupling Communication Platform to Promote Energy Transformation, Climate Change and Environmental Protection
Editorial  ·  Published: 14 July 2025
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Reservoir Science
Volume 1, Issue 1, 2025: 1-2
Editorial Open Access

Reservoir Science: A Multi-Coupling Communication Platform to Promote Energy Transformation, Climate Change and Environmental Protection

1 Faculty of Engineering, China University of Petroleum-Beijing at Karamay, Karamay 834000, China
* Corresponding Author: Qiang Li, [email protected]
Volume 1, Issue 1

Article Information

Abstract

Reservoir Science (RS) journal represents a significant milestone in the pursuit of energy extraction, energy storage, and the multifarious effects of climate change, which are influenced by the dual factors of global climate variability and energy scarcity. Concurrently, Reservoir Science is dedicated to the dissemination of innovative modules and research domains pertaining to energy extraction, energy storage, reservoir environment and greenhouse gas storage. Furthermore, the field of Reservoir Science encompasses the exploitation of geothermal energy, hydrocarbons (petroleum, hydrates) and hydrogen energy within reservoirs. The research scope of Reservoir Science encompasses not only the domain of reservoir energy storage, which falls under the purview of energy storage engineering, but also that of carbon storage science. Finally, the question of environmental impact on reservoirs during energy extraction and storage is a fundamental aspect of Reservoir Science journal.

Keywords

energy extraction energy storage reservoir environment climate protection mining engineering

Data Availability Statement

Not applicable.

Funding

This work was supported without any funding.

Conflicts of Interest

The author declares no conflicts of interest.

Ethical Approval and Consent to Participate

Not applicable.

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* Citation data provided by Crossref Cited-by.

Cite This Article

APA Style
Li, Q. (2025). Reservoir Science: A Multi-Coupling Communication Platform to Promote Energy Transformation, Climate Change and Environmental Protection. Reservoir Science, 1(1), 1–2. https://doi.org/10.62762/RS.2025.352950
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TY  - JOUR
AU  - Li, Qiang
PY  - 2025
DA  - 2025/07/14
TI  - Reservoir Science: A Multi-Coupling Communication Platform to Promote Energy Transformation, Climate Change and Environmental Protection
JO  - Reservoir Science
T2  - Reservoir Science
JF  - Reservoir Science
VL  - 1
IS  - 1
SP  - 1
EP  - 2
DO  - 10.62762/RS.2025.352950
UR  - https://www.icck.org/article/abs/RS.2025.352950
KW  - energy extraction
KW  - energy storage
KW  - reservoir environment
KW  - climate protection
KW  - mining engineering
AB  - Reservoir Science (RS) journal represents a significant milestone in the pursuit of energy extraction, energy storage, and the multifarious effects of climate change, which are influenced by the dual factors of global climate variability and energy scarcity. Concurrently, Reservoir Science is dedicated to the dissemination of innovative modules and research domains pertaining to energy extraction, energy storage, reservoir environment and greenhouse gas storage. Furthermore, the field of Reservoir Science encompasses the exploitation of geothermal energy, hydrocarbons (petroleum, hydrates) and hydrogen energy within reservoirs. The research scope of Reservoir Science encompasses not only the domain of reservoir energy storage, which falls under the purview of energy storage engineering, but also that of carbon storage science. Finally, the question of environmental impact on reservoirs during energy extraction and storage is a fundamental aspect of Reservoir Science journal.
SN  - 3070-2356
PB  - Institute of Central Computation and Knowledge
LA  - English
ER  - 
BibTeX Format
Compatible with LaTeX, BibTeX, and other reference managers
@article{Li2025Reservoir,
  author = {Qiang Li},
  title = {Reservoir Science: A Multi-Coupling Communication Platform to Promote Energy Transformation, Climate Change and Environmental Protection},
  journal = {Reservoir Science},
  year = {2025},
  volume = {1},
  number = {1},
  pages = {1-2},
  doi = {10.62762/RS.2025.352950},
  url = {https://www.icck.org/article/abs/RS.2025.352950},
  abstract = {Reservoir Science (RS) journal represents a significant milestone in the pursuit of energy extraction, energy storage, and the multifarious effects of climate change, which are influenced by the dual factors of global climate variability and energy scarcity. Concurrently, Reservoir Science is dedicated to the dissemination of innovative modules and research domains pertaining to energy extraction, energy storage, reservoir environment and greenhouse gas storage. Furthermore, the field of Reservoir Science encompasses the exploitation of geothermal energy, hydrocarbons (petroleum, hydrates) and hydrogen energy within reservoirs. The research scope of Reservoir Science encompasses not only the domain of reservoir energy storage, which falls under the purview of energy storage engineering, but also that of carbon storage science. Finally, the question of environmental impact on reservoirs during energy extraction and storage is a fundamental aspect of Reservoir Science journal.},
  keywords = {energy extraction, energy storage, reservoir environment, climate protection, mining engineering},
  issn = {3070-2356},
  publisher = {Institute of Central Computation and Knowledge}
}

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CC BY Copyright © 2025 by the Author(s). Published by Institute of Central Computation and Knowledge. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/), which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made.
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