Geo-hazards in the North Arabian Sea with special emphasis on Makran Subduction Zone

SAH Gardezi, X Luan, Z Sun, R Haider, Y Zhang… - Earth-Science …, 2024 - Elsevier
The intricate convergence of tectonic plates and the interplay between landmasses and
oceans in subduction zones give rise to marine geo-hazards, encompassing catastrophic …

Insights on the source of the 28 September 2018 Sulawesi tsunami, Indonesia based on spectral analyses and numerical simulations

M Heidarzadeh, A Muhari, AB Wijanarto - Pure and Applied Geophysics, 2019 - Springer
Abstract The 28 September 2018 Sulawesi tsunami has been a puzzle because extreme
deadly tsunami waves were generated following an Mw 7.5 strike-slip earthquake, while …

[HTML][HTML] A review of tsunami hazards in the Makran subduction zone

A Rashidi, D Dutykh, ZH Shomali… - Geosciences, 2020 - mdpi.com
The uncertain tsunamigenic potential of the Makran Subduction Zone (MSZ) has made it an
interesting natural laboratory for tsunami-related studies. This study aims to review the …

Thermal structure and megathrust seismogenic potential of the Makran subduction zone

GL Smith, LC McNeill, K Wang, J He… - Geophysical …, 2013 - Wiley Online Library
The Makran subduction zone experienced a tsunamigenic Mw 8.1 earthquake in 1945 and
recent, smaller earthquakes also suggest seismicity on the megathrust; however, its …

Differences between heterogenous and homogenous slip in regional tsunami hazards modelling

D Melgar, AL Williamson… - Geophysical Journal …, 2019 - academic.oup.com
The homogenous slip finite fault model is commonly used in tsunami hazards for a variety of
applications. These include early warning and short-term forecasts of tsunami amplitudes …

Coastal boulders as evidence for high-energy waves on the Iranian coast of Makran

M Shah-hosseini, C Morhange, AN Beni, N Marriner… - Marine Geology, 2011 - Elsevier
Coastal boulder deposits attesting to large waves are found along the rocky coast of Makran
(Iran) from Chabahar to Lipar. Boulders are either scattered on the rocky coastal platform or …

New insights into the source of the Makran tsunami of 27 November 1945 from tsunami waveforms and coastal deformation data

M Heidarzadeh, K Satake - Pure and Applied Geophysics, 2015 - Springer
We constrain the source of the 27 November 1945 tsunami in the Makran Subduction Zone
(MSZ) using available tsunami waveforms recorded on tide gauges at Mumbai (India) and …

Possible sources of the tsunami observed in the northwestern Indian Ocean following the 2013 September 24 Mw 7.7 Pakistan inland earthquake

M Heidarzadeh, K Satake - Geophysical Journal International, 2014 - academic.oup.com
We report and analyse the tsunami recorded in the northwestern Indian Ocean at the
Makran region following the M w 7.7 Pakistan inland strike-slip earthquake on 2013 …

Deep structure of the western coast of the Makran subduction zone, SE Iran

K Motaghi, E Shabanian, T Nozad-Khalil - Tectonophysics, 2020 - Elsevier
The Makran subduction zone is one of the world's least well documented active subduction
zones. We investigate the geometry of subsurface velocity interfaces across the western …

A Combined Earthquake–Landslide Source Model for the Tsunami from the 27 November 1945  8.1 Makran Earthquake

M Heidarzadeh, K Satake - Bulletin of the Seismological …, 2017 - pubs.geoscienceworld.org
The tsunami of 27 November 1945 from an M w 8.1 earthquake in the Makran subduction
zone is the only instrumentally recorded and deadly tsunami in the northwest Indian Ocean; …