Advances in Energy Sciences and Technologies

Advances in Energy Sciences and Technologies

Advances in Energy Science and Technologies (AEST) is a double-blind peer-reviewed quarterly journal, owned, managed, and published by Amirkabir University of Technology. The journal publishes original full-length articles, reviews, and letters relevant to all fields of energy science and technology. The journal accepts various types of submissions, including original papers, letters, technical notes, reviews, short communications, and comments.

Through rigorous peer review and collaboration with leading experts in the field, we are committed to maintaining the highest standards of quality and academic integrity. AEST provides an invaluable opportunity for researchers to present their findings to a global audience, contributing not only to the advancement of energy science but also to the academic growth and professional recognition of contributors.

Publication Information

Publisher

Director-in-Charge
Editor-in-Chief
Managing Editor

Frequency
Quarterly

Keywords Cloud

  • Small Modular Reactors (SMRs)
  • Sustainable energy
  • optimization
  • Renewable Energy
  • Persian Gulf
  • Electric Arc Furnace
  • distributed generation
  • Phase Change Materials
  • Crude Oil
  • Sustainable Development
  • Multi-objective optimization
  • Energy harvesting
  • energy consumption
  • Sustainability
  • Life Cycle Assessment
  • Exergy analysis
  • Steel
  • Machine learning
  • Enhancement
  • Plasma
  • Aerial Robot
  • perovskite
  • Laser induced fluorescence
  • SARA
  • Quantum efficiency
  • Photovoltaics (PV)
  • Artificial intelligence (AI)
  • Digital twin (DT)
  • Autonomous aerial monitoring (AAM)
  • Off
  • Grid Hybrid Energy Systems Multi
  • Storage Systems Design Builder HOMER CCHP systems
  • Sustainable architecture Futures studies Energy
  • efficient design Scenario planning Strategic foresight
  • Building Energy Consumption
  • Random Forest Algorithm
  • Occupants’ Behavior
  • Externality
  • Si solar cell
  • Tungsten disulfide
  • TVS
  • 2M Thermal
  • hydraulic VVER
  • 1000 Porous Media Approach (PMA) COBRA
  • EN
  • CO2 emissions Carbon capture technologies Pre
  • combustion Post
  • combustion Oxy
  • fuel combustion
  • MXenes
  • MBenes
  • Photocatalysis
  • Solar energy conversion
  • Plasma facing materials
  • Plasma facing components
  • Edge localized modes
  • Tokamak
  • Si solar cells
  • nano-materials
  • Mechanisms
  • Betavoltaic cell
  • Self-absorption
  • Backscattering effect
  • Size limitations
  • 147Pm2O3/Si
  • CH3T
  • CH2TCH3
  • Swept pore volume
  • Hydrodynamic connectivity
  • Gas flow velocity
  • Passive Strategy
  • DesignBuilder
  • Indoor Temperature
  • PCM Integration
  • Photovoltaic (PV) power plant
  • Autonomous aerial monitoring
  • Aerial robots
  • Encoder-decoder architecture
  • RoboPV
  • Energy imbalance
  • Energy management in Iran
  • Green Cryptocurrencies
  • Sustainable energy development
  • Energy governance
  • Economic dispatch
  • GAMS software
  • Cost energy
  • NuScale
  • High-Temperature, Gas-Cooled Reactors (HTGRs)
  • Thermodynamic Efficiency
  • System-level energy assessment
  • Energy mix optimization
  • Nuclear power systems
  • Iran energy planning
  • Anisotropic superlattice
  • Negative phase velocity
  • Electromagnetic energy transport
  • Energy efficient photonic devices
  • Safety
  • artificial neural network