Journal of Rehabilitation in Civil Engineering

Journal of Rehabilitation in Civil Engineering

Journal of Rehabilitation in Civil Engineering

ISO Abbreviation:

J. Rehabil. Civ. Eng.

Facts & Figures

Start Publication: February 2013

Acceptance Rate: 23%

Submission to Initial Assessment: 5 days 

Submission to Final Decision: 120 days

No. of Volumes: 14

No. of Issues: 43

No. of Articles: 429

No. of Indexing Databases: 12

No. of Reviewers: 605

No. of Contributors: 975

Contributing Countries: 30

Article View: 655,584

PDF Download: 489,451

View Per Article: 1528.17

PDF Download Per Article: 1140.91


SCImago Journal & Country Rank

 

SJR 2025: 0.269

SNIP 2024: 0.411


CiteScore Categories

Safety, Risk, Reliability and Quality

Rank: #141/235

 

Building and Construction

Rank: #145/239

 

Engineering (miscellaneous)

Rank: #175/264

 

Civil and Structural Engineering

Rank: #281/407

The Journal of Rehabilitation in Civil Engineering is an international open-access journal (print and online) published quarterly by Semnan University Press which was founded in 2012. This journal has initially been published biannually until 2018, while it is being published quarterly as of 2019. It reports the latest and the most creative research results in entire rehabilitation fields of civil engineering, including roads and bridges, buildings, structures, slopes, foundations, experiments and tests of structures or sites, etc, in the form of articles. The Journal seeks to bridge and integrate the intellectual, methodological, and substantive diversity of rehabilitation in civil engineering, and to encourage a vigorous dialogue between civil engineering scholars and practitioners. It aims to promote the theory and practice of civil engineering science and technology, innovation, engineering, and management.

The Journal welcomes contributions which promote the exchange of ideas and rational discourse between practicing educators and civil engineering researchers all over the world. A broad outline of the journal’s scope includes peer-reviewed original research articles, case, and technical reports, reviews and analyses papers, short communications and notes to the editor, in interdisciplinary information on the practice and status of research in civil engineering science and technology. Thus high-quality research papers or reviews dealing with any aspect of rehabilitation in civil engineering are welcomed. Papers may be theoretical, numerical, analytical, or experimental. The journal is published in English. Accepted papers will immediately appear online followed by printed in hard copy.

iThenticate Journal of Rehabilitation in Civil Engineering (JRCE) utilizes "Plagiarism Detection Software (iThenticate)" for checking the originality of submitted manuscripts in the reviewing process.
Current Issue: Volume 14, Issue 3 - Serial Number 43, Summer 2026 

Assessment of Deep Learning Models for Pavement Distress Detection in High-Resolution UAV Imagery

Article ID:2415

10.22075/jrce.2025.2415

Mohamed Eid abdelshakour Mohamed, Adel A. Esmat, Ahmed M. Hamdy, Amr M. El Sheshtawy

Keywords Cloud

  • Damage Detection
  • Compressive Strength
  • Reinforced Concrete
  • Mechanical properties
  • Rehabilitation
  • nonlinear dynamic analysis
  • ductility
  • Durability
  • finite element method
  • Concrete
  • FRP
  • Finite element
  • Bearing capacity
  • Seismic Performance
  • Shear strength
  • Fatigue
  • Optimization
  • Strengthening
  • Progressive collapse
  • Finite element analysis
  • Silica Fume
  • Artificial Neural Network
  • Corrosion
  • Steel fiber
  • Wavelet Transform
  • Asphalt Mixture
  • Fatigue life
  • Damping ratio
  • Nonlinear Time History Analysis
  • Clay
  • IDA
  • nonlinear analysis
  • Fragility curve
  • soil-structure interaction
  • Incremental Dynamic Analysis
  • geogrid
  • Damage identification
  • Energy Dissipation
  • Retrofitting
  • tensile strength
  • Pushover Analysis
  • Nano-silica
  • natural frequency
  • Resilient modulus
  • Experimental Study
  • Cyclic loading
  • Steel plate
  • ANN
  • Seismic Rehabilitation
  • Cyclic behavior
  • Shallow foundation
  • Dynamic Analysis
  • Asphalt Pavement
  • Recycled Concrete
  • Nonlinear static analysis
  • deep beams
  • Flexural behavior
  • CFRP
  • Mode shape
  • Damage Index
  • Iran
  • Structural Health Monitoring
  • Buckling Restrained Brace
  • Stabilization
  • Lightweight concrete
  • base isolation
  • Boundary element
  • Improvement
  • Seismic Assessment
  • steel moment frame
  • Settlement
  • Seismic hazard analysis
  • Rutting
  • Buckling
  • Seismic response
  • Seismic Retrofitting
  • HPFRCC
  • Self-healing
  • pavement design
  • gene expression programming
  • Asphalt binder
  • Local Scour
  • Masonry
  • Soil improvement
  • Abaqus
  • seismic behavior
  • Self-compacting concrete
  • Bracing system
  • Collision
  • Confined Concrete
  • Tall Building
  • Ultra-High Performance Concrete (UHPC)
  • Framed tube
  • Physical Model
  • Mortar
  • Fiber reinforced polymer
  • Steel Frame
  • Seismic vulnerability
  • Aging effect
  • Ground improvement
  • Shear modulus
  • Retrofit
  • Impact Resistance
  • Modal data
  • Frame
  • Reactive powder concrete
  • Recycling
  • Cracking
  • sand
  • Failure mode
  • Environment
  • Intensity Measure
  • Concrete Shear Wall
  • Pervious Concrete
  • Peak Ground Acceleration
  • Flexural strength
  • in-situ strength
  • Concrete pavement
  • green concrete
  • sustainable concrete
  • inter-story drift
  • Time history analysis
  • RC building
  • Mechanical Performance
  • Rebar fracture
  • Performance Evaluation
  • Composite shear wall
  • Flexural Strength Test
  • Stiffness
  • Safety
  • Shotcrete
  • Overstrength Factor
  • Sulfate attack
  • Beam
  • Seismic design
  • Numerical modeling
  • Artificial intelligence
  • Continuous beams
  • GFRP
  • SAP2000
  • AHP
  • Masonry walls
  • Punching shear
  • Opening
  • Metakaolin
  • Concentric Bracing
  • Static non-linear analysis
  • MEPDG
  • Embankment
  • Seismic Joint
  • Loading frequency
  • Garson’s algorithm
  • Hypoplastic
  • Hysteretic energy
  • Pullout Test
  • Pavement
  • High strength concrete
  • Ultrasonic pulse velocity
  • Soil
  • slope
  • Neural Network
  • Pounding
  • Artificial Neural Networks
  • Mode shapes
  • Strength properties
  • Seismic evaluation
  • Nano materials
  • Column
  • Analysis
  • Recycled Aggregates
  • Permeability
  • Bacteria
  • Composite
  • Time-history analysis
  • OpenFOAM
  • Neural Networks
  • Damage
  • Reclaimed asphalt pavement
  • Seismic Hazard
  • Elevated temperature
  • Near-fault earthquake
  • Seismic pounding
  • Discharge Coefficient
  • RC moment-resisting frame
  • RC Beam
  • Coefficient of restitution
  • SEM
  • Steel fiber reinforced concrete
  • Modal strain energy
  • Pushover
  • Shear link
  • Alternating plasticity
  • concrete structure
  • Movement
  • Reliability
  • Strip footing
  • Reinforcement
  • performance based design
  • Numerical analysis
  • collapse