Journal of the Earth and Space Physics

Journal of the Earth and Space Physics

 

 

Information Journal

 

* Title: Journal of the Earth and Space Physics

* Publisher: University of Tehran Press

* Place of Publication: Iran

* Publish Type: Print & Online

* Frequency: Quarterly (three issues in Persian with English summaries and one in English)

* Type of Journal: Academic

* Articles Type: Research Article, Research Notes, Review

* Journal Language: Multi Language (Persian & English)

* Type of Access: Access to the articles in this journal is free and open.

* Type of License:  Authors retain the copyright and full publishing rights without restrictions. This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License (CC- BY-NC). 

* This journal is following of Committee on Publication Ethics (COPE) and complies with the highest ethical standards in accordance with ethical laws.

* Copyright: Authors retain the copyright and full publishing rights without restrictions

* Peer Review and Publication Cycle: Flow Diagram

* Plagiarism Detection Software: Samim Noor

* Article Processing Charges: Iranians: 6000,000 Rials , Non-Iranians: Free of charge

* Peer Review Policy: Double blind peer review

Average refereeing time: 12 weeks

* Average Review Date: Journal Metrics

* Print ISSN: 2538-371X

* Online ISSN: 2538-3906

* E-mail: igtu-jnl@ut.ac.ir

* The Journal of  Earth and Space Physics has a collaborative agreement with the Iranian Geophysical Society



Last Update: 2026-06-02

Current Issue: Volume 52, Issue 1, Spring 2026, Pages 1-210 (online publication date: 30 May 2026) 

Study of Aerosols Dispersion due to Zanjan Specialized Town of Zinc Activity

Pages 65-87

10.22059/jesphys.2026.380433.1007698

Minoo Noor, Yousefali Abedini, Amin Abedi, Abbas Ali Zamani, Parham Abedini

Identifying the Rainy Season in Iran

Pages 179-194

10.22059/jesphys.2026.408873.1007746

Mohadeseh Vaziri Mehr, Hossein Asakereh, Mohsen Hamidianpour

Ensemble lightning forecasting in the southern foothills of the Alborz mountain range using WRF model

Pages 195-210

10.22059/jesphys.2026.408935.1007747

Mojtaba Jalali Koutanaei, Farahnaz Taghavi, Ali Reza Mohebalhojeh, Maryam Gharaylou, Sarmad Ghader

Keywords Cloud

  • Iran
  • inversion
  • magnetotelluric
  • climate change
  • Gravity
  • GPS
  • Ionosphere
  • resistivity
  • Precipitation
  • Analytic signal
  • Satellite altimetry
  • MODIS
  • Porosity
  • Gravity data
  • Focal mechanism
  • depth estimation
  • TEHRAN
  • Potential Field
  • quality factor
  • Edge detection
  • Forward modeling
  • Zagros
  • interpolation
  • seismic attributes
  • WRF model
  • Source parameters
  • earthquake
  • precipitation
  • seismicity
  • topography
  • Potential vorticity
  • Caspian Sea
  • anomaly
  • Grace
  • Acoustic impedance
  • Geothermal
  • remote sensing
  • simulation
  • temperature
  • Fault
  • Anisotropy
  • Drought
  • Wavelet transform
  • Persian Gulf
  • Electrical conductivity
  • Euler deconvolution
  • Permeability
  • seismic inversion
  • Downscaling
  • Artificial Neural Network
  • Troposphere
  • Tomography
  • Finite difference
  • magnetotellurics
  • Microgravity
  • Dust
  • gravity anomaly
  • Cyclogenesis
  • Numerical simulation
  • jet stream
  • Lightning
  • Microtremor
  • relative humidity
  • Mean Sea Level
  • Attenuation
  • Magnitude
  • CMIP6
  • Radiosonde
  • Dating
  • Well logs
  • Tehran
  • Seismotectonics
  • structural index
  • Oman Sea
  • modeling
  • Slip rate
  • vertical velocity
  • Artificial Neural Network
  • Earthquake Precursor
  • Numerical accuracy
  • Iran
  • linear inversion
  • systematic error
  • Groundwater
  • Land surface temperature
  • Genetic Algorithm
  • source mechanism
  • Magnetosphere
  • Receiver function
  • Baroclinic conversion
  • Crustal Structure
  • Temperature anomaly
  • Northwestern Iran
  • Solar wind
  • ANN
  • Downward continuation
  • Discrete Wavelet Transform
  • Geoid
  • Density
  • Crust
  • Gravity field
  • aeromagnetic
  • Gravimetry
  • Upward continuation
  • earthquake prediction
  • conductivity
  • Group velocity
  • Regularization
  • time series
  • depth weighting
  • Central Iran
  • Numerical simulation
  • Total ozone
  • RegCM4
  • Deformation
  • Regularization parameter
  • GPS/Leveling
  • Joint inversion
  • Reservoir
  • ERA-Interim
  • Principal component analysis
  • Cross-correlation
  • Seeding efficiency
  • orthometric height
  • Short time Fourier transform
  • magnetometry
  • Curie point depth
  • inverse modeling
  • aerosols
  • Ray tracing
  • Kerman
  • Noise
  • seismic refraction
  • Artificial Neural Networks
  • aftershock activity
  • InSAR
  • Correlation
  • electrical anisotropy
  • Spectral decomposition
  • Heterogeneous nucleation
  • magnetic resonance sounding
  • Alborz
  • Wind Shear
  • Moho depth
  • Iranian plateau
  • Deconvolution
  • Magnetic Anomaly
  • Rayleigh wave
  • simulation
  • SST
  • neural network
  • compactness
  • upper mantle
  • Airborne electromagnetic
  • NAO
  • magnetic
  • Filtering
  • Earthquake location
  • gravity anomalies
  • HYSPLIT
  • Rayleigh Waves
  • Depth
  • water saturation
  • chromosphere
  • WRF-Chem model
  • Zanjan
  • Regression
  • Support vector machine
  • Kriging
  • Satellite
  • Trend Analysis
  • precipitable water vapor
  • Thunderstorm
  • 2D inversion
  • Magnetic survey
  • b-value
  • heavy rainfall
  • uncertainty
  • S receiver function
  • Visibility
  • Depth migration
  • meteorological parameters
  • Barotropic conversion
  • Vertical derivative
  • Central Alborz
  • Geostatistics
  • Soliton
  • Copula
  • Green function
  • Mashhad
  • Bouguer anomaly
  • Electrical Resistivity Tomography
  • Solar atmosphere
  • Convection
  • Time-frequency analysis
  • Aeromagnetic data
  • Bias correction
  • Khuzestan
  • satellite streak detection
  • Rainfall

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