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个人简介
Mahdi Haddad is a research associate and geomechanicist at the Bureau of Economic Geology at UT-Austin with extensive experience in modeling injection and production-induced fault reactivation through several TexNet-CISR consortium projects. Currently, Mahdi conducts research on hydraulic-fracture mapping and CO2 monitoring techniques through two Department of Energy projects, focused on the Devine Fracture Pilot Site. Previously, Haddad worked as a research geomechanics intern at FracGeo, where he developed continuum damage mechanics models using the material point method for the estimation of the stimulated reservoir volumes. He also spent a summer as a research geophysics intern at Total E&P Research and Technology USA, where he proposed a method for improving the interpretation of microseismicity through 3D finite-element fracture-intersection models. His SPEJ publication on this topic awarded him the 2018 Cedric K. Ferguson Medal from SPE International. Mahdi has authored 21 peer-reviewed journal articles and conference papers on induced seismicity, multiple-stage hydraulic-fracture design, refracturing optimization, stimulated naturally fractured reservoir simulation, and smoothed particle hydrodynamics. Haddad is an active member of SPE and ARMA, received technical reviewer award from SPE Reservoir Evaluation & Engineering Journal in 2020, and was inducted as an ARMA Future Leader in 2019. He served as a technical committee member and session chairperson in the 51st, 53rd, and 56th U.S. Rock Mechanics/Geomechanics Symposia. Mahdi has been one of the organizers of the ARMA induced seismicity monthly webinar series since May 2020. Mahdi holds BS degrees in mechanical and petroleum engineering and an MS in mechanical engineering/energy conversion from Sharif University of Technology, Iran, as well as a PhD in petroleum engineering from UT-Austin.
研究兴趣
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Interpretationpp.1-81, (2024)
Day 1 Tue, January 31, 2023 (2023)
Mohsen Ahmadian,Mahdi Haddad,Liangze Cui,Alfred Kleinhammes,Patrick Doyle, Jeffrey Chen, Trevor Pugh,Qing Huo Liu,Yue Wu, Darwin Mohajeri
Day 2 Wed, February 01, 2023 (2023)
Rock Mechanics and Rock Engineeringno. 3 (2022): 2103-2135
Rock Mechanics and Rock Engineeringno. 10 (2022): 7049-7069
OSTI OAI (U.S. Department of Energy Office of Scientific and Technical Information) (2022)
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Proceedings of the 9th Unconventional Resources Technology Conference (2021)
user-61447a76e55422cecdaf7d19(2020)
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SPE Canada Unconventional Resources Conference (2020)
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