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D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
51
Citations
8466
World Ranking
1131
National Ranking
49

Overview

John Sheridan is affiliated with Monash University in Australia and has published extensively in the field of engineering, with a primary focus on fluid dynamics and aerodynamics. Their research spans various specialized subfields, including computational mechanics, aerospace engineering, environmental engineering, control and systems engineering, and mechanical engineering.

The main themes of Sheridan's work include fluid dynamics and vibration analysis, aerodynamics and fluid dynamics research, wind and airflow studies, fluid dynamics and turbulent flows, and vibration and dynamic analysis. Additional areas of interest cover aerodynamics and acoustics in jet flows and plasma and flow control in aerodynamics.

The scientist has contributed to several publication venues, with multiple papers in the Journal of Fluid Mechanics, International Journal of Heat and Fluid Flow, Journal of Wind Engineering and Industrial Aerodynamics, Journal of Fluids and Structures, and proceedings from the Australasian Fluid Mechanics Conference.

Recent papers authored or co-authored by Sheridan reflect a focus on maglev train aerodynamics and related flow phenomena, including:

  • Influence of high-speed maglev train speed on tunnel aerodynamic effects, 2022, Building and Environment
  • Influences of marshalling length on the flow structure of a maglev train, 2020, International Journal of Heat and Fluid Flow
  • Study of the flow around railway embankment of different heights with and without trains, 2020, Journal of Wind Engineering and Industrial Aerodynamics
  • Aerodynamic Effects as a Maglev Train Passes Through a Noise Barrier, 2020, Flow Turbulence and Combustion
  • An IDDES study of the near-wake flow topology of a simplified heavy vehicle, 2022, Transportation Safety and Environment

Collaboration is notable in Sheridan's career, with frequent co-authors including Mark C. Thompson, David Burton, Thomas McQueen, Siniša Krajnović, and Jisheng Zhao. These partnerships indicate a networked approach to research within the broader fluid mechanics and aerodynamics communities.

Best Publications

  • Three-dimensional instabilities in the wake of a circular cylinder

    Mark Thompson;Kerry Hourigan;John Sheridan

  • Fluid–structure interaction of a square cylinder at different angles of attack

    Jisheng Zhao;Justin Scott Leontini;David Lo Jacono;John Sheridan

  • The interaction between flow-induced vibration mechanisms of a square cylinder with varying angles of attack

    Andras Nemes;Jisheng Zhao;David Lo Jacono;John Sheridan

  • Flow past a cylinder close to a free surface

    John Sheridan;Jung-Chang C Lin;D Rockwell

  • Reynolds number and aspect ratio effects on the leading-edge vortex for rotating insect wing planforms

    Robert Richard Harbig;John Sheridan;Mark Christopher Thompson

  • FORCES AND WAKE MODES OF AN OSCILLATING CYLINDER

    Josie Carberry;John Sheridan;D Rockwell

  • Controlled oscillations of a cylinder: forces and wake modes

    Josie Carberry;John Sheridan;D Rockwell

  • An experimental investigation of the recirculation zone formed downstream of a forward facing step

    M. Sherry;D. Lo Jacono;D. Lo Jacono;D. Lo Jacono;J. Sheridan

  • The performance of different turbulence models (URANS, SAS and DES) for predicting high-speed train slipstream

    Shibo Wang;James R. Bell;David Burton;Astrid H. Herbst

  • Wind tunnel analysis of the slipstream and wake of a high-speed train

    James Robin Bell;David Matthew Burton;Mark Christopher Thompson;Astrid H Herbst

  • Low-Reynolds-number wakes of elliptical cylinders: from the circular cylinder to the normal flat plate

    Mark Christopher Thompson;Alexander Radi;Anirudh Rao;John Sheridan

  • Moving model analysis of the slipstream and wake of a high-speed train

    James Robin Bell;David Matthew Burton;Mark Christopher Thompson;Astrid H Herbst

  • Strain engineering water transport in graphene nanochannels.

    Wei Xiong;Jefferson Zhe Liu;Ming Ma;Zhiping Xu

  • Impact of ground and wheel boundary conditions on numerical simulation of the high-speed train aerodynamic performance

    Jie Zhang;Jing-juan Li;Hong-Qi Tian;Guang jun Gao

  • Three-dimensional vortex structures in a cylinder wake

    J. Wu;J. Sheridan;M. C. Welsh;K. Hourigan

  • Flow-induced deformation of a flexible thin structure as manifestation of heat transfer enhancement

    Atul Kumar Soti;Rajneesh Bhardwaj;John Sheridan

  • Friction of water slipping in carbon nanotubes.

    Ming D. Ma;Luming Shen;John Sheridan;Jefferson Zhe Liu

  • A review of rotating cylinder wake transitions

    Anirudh Rao;Alexander Radi;Justin Scott Leontini;Mark Christopher Thompson

  • A hybrid solar desiccant cooling system

    J.C. Sheridan;J.W. Mitchell

  • Flow-induced vibration of two cylinders in tandem and staggered arrangements

    Martin D. Griffith;David Lo Jacono;John Sheridan;Justin S. Leontini

  • The interaction of helical tip and root vortices in a wind turbine wake

    Michael Sherry;Andras Nemes;David Lo Jacono;Hugh Maurice Blackburn

Frequent Co-Authors

Mark Christopher Thompson
Mark Christopher Thompson Monash University
Kerry Hourigan
Kerry Hourigan Monash University
Donald Rockwell
Donald Rockwell Lehigh University
Hugh Maurice Blackburn
Hugh Maurice Blackburn Monash University
Quanshui Zheng
Quanshui Zheng Tsinghua University
Julio Soria
Julio Soria Monash University
Rajneesh Bhardwaj
Rajneesh Bhardwaj Indian Institute of Technology Bombay
Charles H. K. Williamson
Charles H. K. Williamson Cornell University
Simon C. Watkins
Simon C. Watkins University of Pittsburgh
Jefferson Zhe Liu
Jefferson Zhe Liu University of Melbourne

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