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Mechanical and Aerospace Engineering

D-Index
32
Citations
3146
World Ranking
3226
National Ranking
101

Overview

Rajneesh Bhardwaj is affiliated with the Indian Institute of Technology Bombay in India and conducts research primarily in the field of Engineering. Their work spans several subfields, including Computational Mechanics, Electrical and Electronic Engineering, Plant Science, Control and Systems Engineering, and Aerospace Engineering.

The scientist has a notable publication record focused on topics related to Fluid Dynamics and Vibration Analysis, Infection Control and Ventilation, Fluid Dynamics and Heat Transfer, Nanomaterials and Printing Technologies, Surface Modification and Superhydrophobicity, and Lattice Boltzmann Simulation Studies.

Frequent co-authors collaborating with Rajneesh Bhardwaj include:

  • Amit Agrawal
  • Sanghamitro Chatterjee
  • Atul Sharma
  • Yagya Narayan
  • Janani Srree Murallidharan

Common publication venues where their work appears are:

  • Default Digital Object Group
  • Physics of Fluids
  • Langmuir
  • Journal of Fluids and Structures
  • Sadhana

Recent papers authored or co-authored by Rajneesh Bhardwaj include:

  • Tailoring surface wettability to reduce chances of infection of COVID-19 by a respiratory droplet and to improve the effectiveness of personal protection equipment (2020) - Physics of Fluids
  • Why coronavirus survives longer on impermeable than porous surfaces (2021) - Physics of Fluids
  • Wetting characteristics of Colocasia esculenta (Taro) leaf and a bioinspired surface thereof (2020) - Scientific Reports
  • Reducing chances of COVID-19 infection by a cough cloud in a closed space (2020) - Physics of Fluids
  • Probability of COVID-19 infection by cough of a normal person and a super-spreader (2021) - Physics of Fluids

Best Publications

  • Pattern formation during the evaporation of a colloidal nanoliter drop: a numerical and experimental study

    Rajneesh Bhardwaj;Xiaohua Fang;Daniel Attinger

  • Likelihood of survival of coronavirus in a respiratory droplet deposited on a solid surface

    Rajneesh Bhardwaj;Amit Agrawal

  • Benchmarking a Coupled Immersed-Boundary-Finite-Element Solver for Large-Scale Flow-Induced Deformation

    Rajneesh Bhardwaj;Rajat Mittal

  • Droplet impact dynamics on micropillared hydrophobic surfaces

    Nagesh D. Patil;Rajneesh Bhardwaj;Atul Sharma

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

    Atul Kumar Soti;Rajneesh Bhardwaj;John Sheridan

  • Damping effects on vortex-induced vibration of a circular cylinder and implications for power extraction

    Atul Kumar Soti;Jisheng Zhao;Mark C. Thompson;John Sheridan

  • Interfacial temperature measurements, high-speed visualization and finite-element simulations of droplet impact and evaporation on a solid surface

    Rajneesh Bhardwaj;Jon P. Longtin;Daniel Attinger

  • Why coronavirus survives longer on impermeable than porous surfaces

    Sanghamitro Chatterjee;Janani Srree Murallidharan;Amit Agrawal;Rajneesh Bhardwaj

  • Harnessing electrical power from vortex-induced vibration of a circular cylinder

    Atul Kumar Soti;Mark C. Thompson;John Sheridan;Rajneesh Bhardwaj

  • Droplet Bouncing and Breakup during Impact on a Microgrooved Surface.

    Laxman K. Malla;Nagesh D. Patil;Rajneesh Bhardwaj;Adrian Neild

  • Tailoring surface wettability to reduce chances of infection of COVID-19 by a respiratory droplet and to improve the effectiveness of personal protection equipment

    Rajneesh Bhardwaj;Amit Agrawal

  • A computational model of blast loading on the human eye

    Rajneesh Bhardwaj;Kimberly Ziegler;Jung Hee Seo;K. T. Ramesh

  • Reducing chances of COVID-19 infection by a cough cloud in a closed space

    Amit Agrawal;Rajneesh Bhardwaj

  • Non-isothermal wetting during impact of millimeter-size water drop on a flat substrate: Numerical investigation and comparison with high-speed visualization experiments

    Rajneesh Bhardwaj;Daniel Attinger

  • A numerical investigation on the influence of liquid properties and interfacial heat transfer during microdroplet deposition onto a glass substrate

    Rajneesh Bhardwaj;Jon P. Longtin;Daniel Attinger

  • Probability of COVID-19 infection by cough of a normal person and a super-spreader

    Amit Agrawal;Rajneesh Bhardwaj

  • Coalescence dynamics of a droplet on a sessile droplet

    Manish Kumar;Rajneesh Bhardwaj;Kirti Chandra Sahu

  • Computational study of bouncing and non-bouncing droplets impacting on superhydrophobic surfaces

    Prathamesh G. Bange;Rajneesh Bhardwaj

  • How coronavirus survives for days on surfaces.

    Rajneesh Bhardwaj;Amit Agrawal

  • A combined computational and experimental investigation on evaporation of a sessile water droplet on a heated hydrophilic substrate

    Manish Kumar;Rajneesh Bhardwaj

  • Vortex-induced vibration of a cooled circular cylinder

    Hemanshul Garg;Atul Kumar Soti;Rajneesh Bhardwaj

  • The response of an elastic splitter plate attached to a cylinder to laminar pulsatile flow

    Anup Kundu;Atul K. Soti;Rajneesh Bhardwaj;Mark C. Thompson

  • A sharp interface immersed boundary method for vortex-induced vibration in the presence of thermal buoyancy

    Hemanshul Garg;Atul K. Soti;Rajneesh Bhardwaj

Frequent Co-Authors

Adrian Neild
Adrian Neild Monash University
Amit Agrawal
Amit Agrawal Indian Institute of Technology Bombay
Mark Christopher Thompson
Mark Christopher Thompson Monash University
Kirti Chandra Sahu
Kirti Chandra Sahu Indian Institute of Technology Hyderabad
Thao D. Nguyen
Thao D. Nguyen Johns Hopkins University
John Sheridan
John Sheridan Monash University
Rajat Mittal
Rajat Mittal Johns Hopkins University
Suhas S. Joshi
Suhas S. Joshi Indian Institute of Technology Bombay
Ponisseril Somasundaran
Ponisseril Somasundaran Columbia University
Gaurav Sharma
Gaurav Sharma University of Rochester

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