Numerical Methods in Civil Engineering

Numerical Methods in Civil Engineering

 Journal of Numerical Methods in Civil Engineering

 ISO Abbreviation: 

               J. Num. Meth. Civ. Eng.

 

Start Publication:  2016 
Number of Volumes 10
Number of Issues 39
Number of Articles 274
Number of Contributors 597
Contributing Countries 5
 
Number of Submissions 559
Accepted Submissions 277
Rejection Rate 42
Acceptance Rate 50
Submission to Initial Assessment (Days) 10
Time to Accept (Days) 161
Number of Indexing Databases 11
Number of Reviewers 653

The journal of “Numerical Methods in Civil Engineering” is an international open-accessonlinepeer review journal publishing original papers of high quality related to the NUMERICAL METHODS in all areas of CIVIL ENGINEERING which was founded by K. N. Toosi University of Technology in 2016. This journal is principally interested in papers with innovative numerical procedure and their applications for solving real-world problems. A significant research activity involves reporting new numerical techniques, improving existing numerical methods, and investigating the efficiency and applicability of numerical approaches are particularly encouraged to be submitted with identical priority on all fields of civil engineering problems.
The Journal of Numerical Methods in Civil Engineering, the official publication of the civil engineering faculty of K. N. Toosi University of Technology, welcomes researchers all over the world to submit their original papers. The journal editorial team is seeking various research papers, reviews, commentaries, and other article formats to provide a medium for the communication of information among the world’s numerical researchers. This journal is intended to be of interest and utility to the researchers and practitioners in the academic, governmental and industrial communities.


Newly Indexed in Scopus

 

Journal of Numerical Methods in Civil Engineering is Now Indexed by Scopus 

Current Issue: Volume 10, Issue 3, Winter 2026 

Keywords Cloud

  • Finite element method
  • Machine Learning
  • Energy dissipation
  • Nonlinear dynamic analysis
  • Seismic Performance
  • numerical simulation
  • Endurance Time method
  • Damage detection
  • Safety factor
  • Steel moment frame
  • finite element analysis
  • Soil-structure interaction
  • Ductility
  • Finite Element
  • structural health monitoring
  • Dynamic analysis
  • Signal processing
  • Buckling
  • Soft Computing
  • Artificial Neural Network
  • climate change
  • Sensitivity analysis
  • Numerical modelling
  • Natural frequency
  • Incremental Dynamic Analysis
  • seismic analysis
  • Artificial Neural Networks
  • Bearing Capacity
  • Constitutive Model
  • Genetic Algorithm
  • Liquefaction
  • Fluid-structure interaction
  • Arch dam
  • jointed foundation
  • Semi-Active Control
  • slope stability
  • Stability Analysis
  • Performance-based design
  • Shallow foundation
  • strengthening
  • Tall Buildings
  • nonlinear dynamic analyses
  • structural analysis
  • functionally graded materials
  • Physical Modeling
  • coefficient of permeability
  • coefficient of friction
  • Groundwater
  • In-plane behaviour
  • unseating
  • GEP
  • Scaled Boundary Finite Element Method (SBFEM)
  • FE model updating
  • Columns
  • Modeling
  • statistical parameters
  • Iran
  • Finite element model
  • Steel
  • VOF
  • Transient Flow
  • Response modification factor
  • Fracture mechanics
  • FE-SPH coupling
  • Sloshing
  • Tapered Beam
  • Soil-structure interaction (SSI)
  • Seismic Design
  • FLAC2D
  • Eccentrically braced frame
  • cyclic loading
  • damping
  • Particle swarm
  • Hybrid Damper
  • Finite difference method
  • mesh generation
  • Moment-rotation curve
  • Multi-Objective Optimization
  • soil infiltration
  • ANFIS
  • Structural Optimization
  • Probabilistic analysis
  • Functionally Graded Material
  • Meshless Method
  • Steel structures
  • Fragility Analysis
  • Precipitation
  • Multiple linear regression
  • Near-fault earthquake
  • Concrete gravity dam
  • Masonry
  • wedge
  • Nonlinear analysis
  • Remote Sensing
  • Numerical modeling
  • Reliability-based design
  • Fire loading
  • MR damper
  • drift
  • Steel Plate
  • optimization
  • reduced beam section
  • Seismic Retrofitting
  • system identification
  • reinforced concrete
  • Infill
  • Elastic Foundation
  • performance
  • Risk Assessment
  • Floating Breakwaters
  • Dam-reservoir-foundation interaction
  • Pearson correlation analysis
  • GPS-X
  • drained
  • pile foundations
  • corner RC beam-column joint
  • Coarse meshes
  • Multi-Design Variable Configuration (Multi-DVC)
  • Coronavirus Optimization Algorithm
  • Rubber-metal supports
  • Excavation
  • Elastostatics
  • ‎Mass transport velocity
  • Seismic Resistance
  • Autonomous Vehicles
  • Risk level of building
  • Slotted Beam Web
  • Suppressed and non-suppressed sill
  • Steel plate shear panels
  • Transversely Isotropic
  • Oil Reservoirs
  • Hysteresis model
  • ACI 318-05
  • Performance-based seismic design
  • Offshore wind turbine (OWT)
  • concrete column
  • multivariate adaptive regression spline
  • Pile group
  • Dhajji-Dewari
  • Compression Test
  • decision tree
  • Strip foundation
  • 3D Numerical Simulation
  • Steel MRF
  • bridge pier
  • seismic displacement
  • DBQ
  • Non-prismatic column
  • Seepage
  • Vertical Link
  • Jacket-Type Offshore Platform
  • SimWeight
  • Sluice-tainter gate
  • elastic and inelastic buckling analysis
  • Retaining wall
  • Guide Vane
  • response surface method
  • Critical members
  • Timoshenko Theory
  • Performance Based Design
  • Infill wall
  • shaking table
  • density-driven flow
  • Parallel Processing
  • Pump Intake
  • Beam-Column corner Joints
  • UNSATURATED FLOW
  • Geopolymer concrete
  • Hysteretic
  • Cable bracing system
  • HEC-RAS
  • Pile Supported Structure
  • Bulging
  • probabilistic method
  • Arching Effect
  • Space Structure
  • aqueduct
  • multi-plane
  • Strength distribution
  • Random wave
  • wall post
  • Incline steel strips
  • Adaptive Neuro Fuzzy Inference System
  • Prescriptive Requirements
  • Nonlinear Structural Dynamics
  • Directional uncertainty
  • Optimal design
  • side orifice
  • Relative length of the drop
  • Relative sufficiency
  • Shear delay
  • Ultimate bearing capacity
  • OpenSees
  • aggressive drivers
  • Density current
  • phase angle
  • Eccentrically Braced Frame (EBF)
  • Time integration method
  • Compressive strength
  • Y-shape bracing