World's Best Scientists 2026 revealed!
Georges L. Chahine

Georges L. Chahine

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
45
Citations
6677
World Ranking
1557
National Ranking
604

Overview

Georges L. Chahine is affiliated with Dynaflow, Inc. in the United States and has contributed to research primarily in engineering and medicine. Their work spans several subfields including biomedical engineering, oncology, computational mechanics, materials chemistry, and surgery.

The research topics covered by Chahine focus on ultrasound and cavitation phenomena, ultrasound and hyperthermia applications, fiber-reinforced polymer composites, fluid dynamics and heat transfer, particle dynamics in fluid flows, lattice Boltzmann simulation studies, and fluid dynamics and mixing.

Recent notable publications include:

  • Effect of plasma treatment on LMPAEK/CF tape and composites manufactured by automated tape placement (ATP), 2024, Composites Part A Applied Science and Manufacturing
  • Bubble dynamics in a pressure gradient with reentrant jet break through and energy loss, 2023, Ultrasonics Sonochemistry

Frequent coauthors collaborating with Chahine are:

  • Chao-Tsung Hsiao
  • Joseph Kattan
  • Jingsen Ma
  • Xiaolong Deng
  • Marwan Ghosn

Their research has been published in varied scientific venues, with frequent contributions to:

  • Clinical Lymphoma Myeloma & Leukemia
  • Polymer Composites
  • Process Safety and Environmental Protection
  • Composites Part A Applied Science and Manufacturing
  • Ocean Engineering

Best Publications

  • Modeling of surface cleaning by cavitation bubble dynamics and collapse.

    Georges L. Chahine;Anil Kapahi;Jin-Keun Choi;Chao-Tsung Hsiao

  • The final stage of the collapse of a cavitation bubble near a rigid wall

    Sheguang Zhang;James H. Duncan;Georges L. Chahine

  • Advanced Experimental and Numerical Techniques for Cavitation Erosion Prediction

    Ki-Han Kim;Georges L. Chahine;Jean-Pierre Franc;Ayat Karimi

  • The Use of Cavitating Jets to Oxidize Organic Compounds in Water

    Kenneth M. Kalumuck;Georges L. Chahine

  • Interaction Between an Oscillating Bubble and a Free Surface

    G. L. Chahine

  • Modelling of material pitting from cavitation bubble collapse

    Chao-Tsung Hsiao;A. Jayaprakash;A. Kapahi;J.-K. Choi

  • Dynamical interactions in a multi-bubble cloud

    Georges L. Chahine;Ramani Duraiswami

  • Multiscale tow-phase flow modeling of sheet and cloud cavitation

    Chao-Tsung Hsiao;Jingsen Ma;Georges L. Chahine

  • Material and velocity effects on cavitation erosion pitting

    Jean-Pierre Franc;Michel Riondet;Ayat Karimi;Georges L. Chahine

  • Experimental and asymptotic study of nonspherical bubble collapse

    G. L. Chahine

  • BUBBLE COUNTING USING AN INVERSE ACOUSTIC SCATTERING METHOD

    Ramani Duraiswami;Sankar Prabhukumar;Georges L. Chahine

  • Impact Load Measurements in an Erosive Cavitating Flow

    Jean-Pierre Franc;Michel Riondet;Ayat Karimi;Georges L. Chahine

  • Scaling of Tip Vortex Cavitation Inception Noise With a Bubble Dynamics Model Accounting for Nuclei Size Distribution

    Chao-Tsung Hsiao;Georges L. Chahine

  • Scaling Effect on Prediction of Cavitation Inception in a Line Vortex Flow

    Chao-Tsung Hsiao;Georges L. Chahine;Han-Lieh Liu

  • Fluid jet cavitation method and system for efficient decontamination of liquids

    Georges L. Chahine;Kenneth M. Kalumuck

  • Collapse of a Cavitating Vortex Ring

    G. L. Chahine;Ph. F. Genoux

  • Numerical and Experimental Study of the Interaction of a Spark-Generated Bubble and a Vertical Wall

    Arvind Jayaprakash;Chao-Tsung Hsiao;Georges Chahine

  • Simulation of the three‐dimensional behavior of an unsteady large bubble near a structure

    Georges L. Chahine;Thomas O. Perdue

  • Boundary element techniques for efficient 2-D and 3-D electrical impedance tomography

    Ramani Duraiswami;Georges L. Chahine;Kausik Sarkar

  • Growth, oscillation and collapse of vortex cavitation bubbles

    Jaehyug Choi;Chao Tsung Hsiao;Georges Chahine;Steven Ceccio

  • BUBBLE DYNAMICS FLUID-STRUCTURE INTERACTION SIMULATION BY COUPLING FLUID BEM AND STRUCTURAL FEM CODES

    K.M. Kalumuck;R. Duraiswami;G.L. Chahine

Frequent Co-Authors

Ramani Duraiswami
Ramani Duraiswami University of Maryland, College Park
Steven L. Ceccio
Steven L. Ceccio University of Michigan–Ann Arbor
Pei Zhong
Pei Zhong Duke University
Mark F. Hamilton
Mark F. Hamilton The University of Texas at Austin
Kausik Sarkar
Kausik Sarkar George Washington University

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