Focus and Scope

Energy Sustainability aims to provide an international scholarly platform for the publication of high-quality research, reviews, case studies, and applied engineering studies in the field of sustainable energy systems. The journal seeks to advance scientific knowledge, engineering innovation, and practical solutions that support clean energy transition, energy efficiency, reliable power systems, and sustainable development.

The journal focuses on interdisciplinary and applied research related to renewable energy, power systems, smart grids, microgrids, energy storage, mechanical and thermal energy systems, energy efficiency, energy economics, energy policy, sustainability assessment, and digital technologies for energy applications. The journal welcomes contributions that combine strong theoretical foundations, experimental validation, modelling, simulation, optimization, techno-economic analysis, or real-world case studies.

Energy Sustainability particularly encourages manuscripts that address the design, operation, control, integration, optimization, and evaluation of sustainable energy technologies and systems. The journal also welcomes policy-oriented and socio-technical studies that contribute to sustainable energy planning, energy transition strategies, and environmental responsibility.

 

Scope

The scope of Energy Sustainability includes, but is not limited to:

  1. Renewable and Sustainable Energy Systems
    Solar energy, wind energy, hydro energy, biomass, geothermal energy, hybrid renewable energy systems, and renewable energy integration.
  2. Power Systems, Smart Grids, and Microgrids
    Power system operation, grid-connected systems, smart grid technologies, microgrid design and control, distributed generation, demand response, and grid reliability.
  3. Energy Storage and Battery Systems
    Battery energy storage systems, battery management systems, hybrid energy storage, supercapacitors, hydrogen storage, storage optimization, and storage integration with renewable energy systems.
  4. Energy Efficiency and Energy Management
    Energy audit, building energy efficiency, industrial energy management, energy conservation, demand-side management, load monitoring, and energy-saving strategies.
  5. Mechanical and Thermal Energy Systems
    Thermal energy systems, heat transfer, HVAC, refrigeration, combustion, turbomachinery, waste heat recovery, thermal storage, and energy conversion systems.
  6. Energy Economics, Policy, and Sustainability Assessment
    Energy economics, energy policy, regulation, techno-economic analysis, life-cycle assessment, environmental impact assessment, energy transition planning, and sustainable development.
  7. Digital Technologies for Energy Applications
    Artificial intelligence, machine learning, Internet of Things, digital twin, smart metering, data analytics, optimization algorithms, and intelligent control for energy systems.