World's Best Scientists 2026 revealed!

D-Index & Metrics

Earth Science

D-Index
33
Citations
5984
World Ranking
8203
National Ranking
2721

Overview

Wenlu Zhu is affiliated with the University of Maryland, College Park in the United States. Their research spans multiple fields, primarily focusing on Engineering and Earth and Planetary Sciences. Within these domains, Zhu's work extensively covers subfields such as Geophysics, Mechanics of Materials, Ocean Engineering, Mechanical Engineering, and Civil and Structural Engineering.

The scientist's publication record includes research on a variety of topics, including Geological and Geochemical Analysis, earthquake and tectonic studies, Rock Mechanics and Modeling, Seismic Imaging and Inversion Techniques, High-pressure geophysics and materials, Drilling and Well Engineering, and Welding Techniques and Residual Stresses.

Wenlu Zhu has published papers in several scientific venues. The most frequent publication venues are:

  • Zenodo (CERN European Organization for Nuclear Research)
  • Journal of Geophysical Research Solid Earth
  • Abstracts with programs - Geological Society of America
  • Geochemistry Geophysics Geosystems
  • OPAL (Open@LaTrobe) (La Trobe University)

Recent publications by Zhu include:

  • Permeability Profiles Across the Crust-Mantle Sections in the Oman Drilling Project Inferred From Dry and Wet Resistivity Data, 2020, Journal of Geophysical Research Solid Earth
  • The competition between fracture nucleation, propagation, and coalescence in dry and water-saturated crystalline rock, 2021, Solid Earth
  • Melt Focusing Along Permeability Barriers at Subduction Zones and the Location of Volcanic Arcs, 2020, Geochemistry Geophysics Geosystems
  • Effective seismic wave velocities and attenuation in partially molten rocks, 2021, Earth and Planetary Science Letters
  • Thermally Enhanced Water Weakening of the Solnhofen Limestone, 2022, Journal of Geophysical Research Solid Earth

Zhu frequently collaborates with other researchers. Prominent coauthors include:

  • Laurent G. J. Montési (13 joint publications)
  • Goeun Ha (10 joint publications)
  • B. Cordonnier (5 joint publications)
  • François Renard (3 joint publications)
  • D. L. Buczkowski (3 joint publications)

Best Publications

  • The transition from brittle faulting to cataclastic flow in porous sandstones: Mechanical deformation

    Teng-fong Wong;Christian David;Wenlu Zhu

  • Laboratory measurement of compaction-induced permeability change in porous rocks: Implications for the generation and maintenance of pore pressure excess in the crust

    Christian David;Teng-Fong Wong;Wenlu Zhu;Jiaxiang Zhang

  • The transition from brittle faulting to cataclastic flow: Permeability evolution

    Wenlu Zhu;Teng-fong Wong

  • Micromechanics of brittle faulting and cataclastic flow in Berea sandstone

    Beatriz Menéndez;Wenlu Zhu;Teng-Fong Wong

  • Failure mode and weakening effect of water on sandstone

    Patrick Baud;Wenlu Zhu;Teng-fong Wong

  • Microtomography of Partially Molten Rocks: Three-Dimensional Melt Distribution in Mantle Peridotite

    Wenlu Zhu;Glenn A. Gaetani;Florian Fusseis;Laurent G. J. Montési

  • Shear-enhanced compaction and permeability reduction: Triaxial extension tests on porous sandstone

    Wenlu Zhu;Laurent G.J. Montesi;Teng-fong Wong

  • Experimental quantification of permeability of partially molten mantle rock

    Kevin J. Miller;Wen-lu Zhu;Laurent G.J. Montési;Glenn A. Gaetani

  • Mechanical compaction, microstructures and permeability evolution in sandstones

    C. David;B. Menendez;W. Zhu;T. f. Wong

  • Network modeling of permeability evolution during cementation and hot isostatic pressing

    Wenlu Zhu;Christian David;Teng-fong Wong

  • Microscale characterization of rupture nucleation unravels precursors to faulting in rocks

    François Renard;François Renard;Benoît Cordonnier;Maya Kobchenko;Neelima Kandula

  • Experimental evidence of reaction-induced fracturing during olivine carbonation

    Wenlu Zhu;Florian Fusseis;Harrison Lisabeth;Tiange Xing

  • Network modeling of the evolution of permeability and dilatancy in compact rock

    Wenlu Zhu;Teng-fong Wong

  • Dynamic In Situ Three-Dimensional Imaging and Digital Volume Correlation Analysis to Quantify Strain Localization and Fracture Coalescence in Sandstone

    Francois Renard;Francois Renard;Jessica Ann McBeck;Benoit Cordonnier;Benoit Cordonnier;Xiaojiao Zheng

  • Permeability reduction in a dilating rock: Network modeling of damage and tortuosity

    Wenlu Zhu;Teng-Fong Wong

  • A network model for permeability in partially molten rocks

    Wenlu Zhu;Greg Hirth

  • Fault slip controlled by stress path and fluid pressurization rate

    Melodie E. French;Wenlu Zhu;Jeremy Banker

  • Extraction of Hydrocarbons from High-Maturity Marcellus Shale Using Supercritical Carbon Dioxide

    Palma J. Jarboe;Philip A. Candela;Wenlu Zhu;Alan J. Kaufman

  • Brittle Faulting and Permeability Evolution: Hydromechanical Measurement, Microstructural Observation, and Network Modeling

    Teng‐Fong Wong;Wenlu Zhu

  • Stabilizing Effect of High Pore Fluid Pressure on Slip Behaviors of Gouge‐bearing Faults

    Tiange Xing;Wenlu Zhu;Melodie French;Melodie French;Ben Belzer;Ben Belzer

  • A low-cost X-ray-transparent experimental cell for synchrotron-based X-ray microtomography studies under geological reservoir conditions.

    Florian Fusseis;Holger Steeb;Xianghui Xiao;Wen-lu Zhu

Frequent Co-Authors

Teng-fong Wong
Teng-fong Wong Chinese University of Hong Kong
François Renard
François Renard University of Oslo
Peter B. Kelemen
Peter B. Kelemen Columbia University
Deborah K. Smith
Deborah K. Smith Woods Hole Oceanographic Institution
Patrick Baud
Patrick Baud University of Strasbourg
Glenn A. Gaetani
Glenn A. Gaetani Woods Hole Oceanographic Institution
Hans Schouten
Hans Schouten Woods Hole Oceanographic Institution
Ikuo Katayama
Ikuo Katayama Hiroshima University
Katsuyoshi Michibayashi
Katsuyoshi Michibayashi Nagoya University
Margaret K. Tivey
Margaret K. Tivey Woods Hole Oceanographic Institution

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