Aims and Scope
The Journal of Computational and Applied Research in Mechanical Engineering (JCARME) publishes high-quality research that advances computational, analytical, numerical, experimental, and data-driven approaches in mechanical engineering.
The journal particularly welcomes original research that combines mechanical engineering principles with modern computational and applied methodologies.
Main Areas of Interest
Computational Mechanics
- Computational solid mechanics
- Computational structural mechanics
- Multiphysics modeling
- Nonlinear mechanics
- Computational materials mechanics
- Numerical methods and simulation
Fluid Mechanics and Thermal Engineering
- Computational fluid dynamics
- Multiphase flows
- Heat and mass transfer
- Thermodynamics
- Combustion
- Turbomachinery
- Thermal systems
Energy and Sustainable Engineering
- Renewable energy systems
- Fuel cells
- Energy conversion and storage
- Sustainable thermal systems
- Energy-efficient mechanical systems
Mechanical Design and Optimization
- Mechanical design
- Design optimization
- Reliability and uncertainty quantification
- Computational design
- Topology optimization
- Digital engineering
Manufacturing and Materials
- Advanced manufacturing
- Additive manufacturing
- Manufacturing processes
- Mechanics of materials
- Fracture and fatigue
- Surface engineering
Dynamics, Control, Mechatronics and Robotics
- Mechanical dynamics
- Vibration and acoustics
- Control systems
- Mechatronics
- Robotics
- Intelligent mechanical systems
Emerging Computational Technologies
- Artificial intelligence and machine learning in mechanical engineering
- Data-driven modeling
- Digital twins
- Reduced-order modeling
- Scientific machine learning
- Micro- and nanoscale mechanical systems
The journal also welcomes interdisciplinary contributions when the principal scientific contribution is clearly relevant to mechanical engineering.
Manuscripts should demonstrate a clear scientific contribution and should not be submitted solely because they use a computational or numerical technique without a substantive mechanical-engineering contribution.