Advanced Energy Systems and Intelligent Geoscience
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Aims & Scope

Aims

The Advanced Energy Systems and Intelligent Geoscience (AESIG)  is a professional academic journal focused on the cross-disciplinary integration of energy physics and computational intelligence, aiming to provide the latest research results, scientific discoveries, industry trends, and policy analysis for the target readership. The content of the journal covers a wide range of topics related to modern energy engineering, including but not limited to experimental characterization of porous media, high-performance numerical simulation, AI-driven optimization, and carbon-neutral energy technologies. Each issue will delve into relevant topics and combine theory with practice to help readers better understand and master the core points of complex energy systems and their digitalization. At the same time, the journal encourages interaction with readers, regularly organizes expert forums and academic exchange activities, and provides readers with opportunities for dialogue with industry authorities. By inviting global experts and scholars to write column articles, the journal presents cutting-edge insights and experiences to readers. Whether you are a practitioner in the energy and computing sectors or an ordinary reader interested in sustainable development and smart energy, Advanced Energy Systems and Intelligent Geoscience will provide you with a new perspective to help you gain a deeper understanding and participate in this innovative and challenging industry.

Scope

Topics of interest include:

Subject Areas
Description
Interdisciplinary Research and Engineering Applications

Interdisciplinary Research and Engineering Applications Studies on energy system optimization, carbon neutrality technologies (CCUS, low-carbon pathways), energy digitalization (Digital Twins, IoT), and cross-domain engineering practices in oil & gas and renewables.

Energy Computing Methods

Energy Computing Methods and Technologies Innovation in numerical simulation (FVM, FEM, Meshless methods), AI and data-driven modeling (Deep Learning, PINN, Generative AI), quantum computing applications in energy, and multi-physics/multi-scale coupling analysis.

Energy Physics and Experimental Characterization

Energy Physics and Experimental Characterization Research on the physical properties of energy media (oil/gas reservoirs, energy storage materials), micro/macro-scale flow mechanisms in porous media, and advanced experimental testing for energy development and conversion systems (including HPHT environments and micro-characterization).

Please carefully read the submission guidelines as well as relevant academic ethics and policies before submitting your manuscript.

Notes and Links

Editor's Message: We hope to become a bridge between academia and industry through the Advanced Energy Systems and Intelligent Geoscience, promoting interdisciplinary cooperation and knowledge exchange worldwide, and contributing to the development of sustainable and intelligent energy systems.

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