Open Science Research Excellence

ICFE 2022 : International Conference on Fluids Engineering

London, United Kingdom
October 21 - 22, 2022

Conference Code: 22UK10ICFE

Conference Proceedings

All submitted conference papers will be blind peer reviewed by three competent reviewers. The peer-reviewed conference proceedings are indexed in the Open Science Index, Google Scholar, Semantic Scholar, Zenedo, OpenAIRE, BASE, WorldCAT, Sherpa/RoMEO, and other index databases. Impact Factor Indicators.

Special Journal Issues

ICFE 2022 has teamed up with the Special Journal Issue on Fluids Engineering. A number of selected high-impact full text papers will also be considered for the special journal issues. All submitted papers will have the opportunity to be considered for this Special Journal Issue. The paper selection will be carried out during the peer review process as well as at the conference presentation stage. Submitted papers must not be under consideration by any other journal or publication. The final decision for paper selection will be made based on peer review reports by the Guest Editors and the Editor-in-Chief jointly. Selected full-text papers will be published online free of charge.

Conference Sponsor and Exhibitor Opportunities

The Conference offers the opportunity to become a conference sponsor or exhibitor. To participate as a sponsor or exhibitor, please download and complete the Conference Sponsorship Request Form.

Important Dates

Abstracts/Full-Text Paper Submission Deadline   April 29, 2021
Notification of Acceptance/Rejection   May 13, 2021
Final Paper (Camera Ready) Submission & Early Bird Registration Deadline   June 23, 2022
Conference Dates   October 21 - 22, 2022

Important Notes

Please ensure your submission meets the conference's strict guidelines for accepting scholarly papers. Downloadable versions of the check list for Full-Text Papers and Abstract Papers.

Please refer to the Paper Submission GUIDE before submitting your paper.

Selected Conference Papers

1) Thermal Performance of a Pair of Synthetic Jets Equipped in Microchannel
J. Mohammadpour, G. E. Lau, S. Cheng, A. Lee
2) Design of Experiment and Computational Fluid Dynamics Used to Optimize Hydrodynamic Characteristics of the Marine Propeller
Rohit Suryawanshi
3) Effect of Halo Protection Device on the Aerodynamic Performance of Formula Racecar
Mark Lin, Periklis Papadopoulos
4) Conjugate Heat Transfer Analysis of a Combustion Chamber using ANSYS Computational Fluid Dynamics to Estimate the Thermocouple Positioning in a Chamber Wall
Muzna Tariq, Ihtzaz Qamar
5) Aerodynamic Design Optimization of High-Speed Hatchback Cars for Lucrative Commercial Applications
A. Aravind, M. Vetrivel, P. Abhimanyu, C. A. Akaash Emmanuel Raj, K. Sundararaj, V. R. S. Kumar
6) Effective Wind-Induced Natural Ventilation in a Residential Apartment Typology
Tanvi P. Medshinge, Prasad Vaidya, Monisha E. Royan
7) Comprehensive Studies on the Aerodynamic Characteristics of Subsonic Scarf Inlets
M. Jegannath, V. Akshaya, B. Arunkumar, G. Lakshmi Soundharya, V. Thenmozhi, S. Varun, V. R. S. Kumar
8) Numerical Investigation on the Interior Wind Noise of a Passenger Car
Liu Ying-jie, Lu Wen-bo, Peng Cheng-jian
9) Numerical Study of Bubbling Fluidized Beds Operating at Sub-atmospheric Conditions
Lanka Dinushke Weerasiri, Subrat Das, Daniel Fabijanic, William Yang
10) Computational Study of Blood Flow Analysis for Coronary Artery Disease
Radhe Tado, Ashish B. Deoghare, K. M. Pandey
11) Cessna Citation X Performances Improvement by an Adaptive Winglet during the Cruise Flight
Marine Segui, Simon Bezin, Ruxandra Mihaela Botez
12) A Fast, Portable Computational Framework for Aerodynamic Simulations
Mehdi Ghommem, Daniel Garcia, Nathan Collier, Victor Calo
13) Compressible Flow Modeling in Pipes and Porous Media during Blowdown Experiment
Thomas Paris, Vincent Bruyere, Patrick Namy
14) Improving the Performance of Gas Turbine Power Plant by Modified Axial Turbine
Hakim T. Kadhim, Faris A. Jabbar, Aldo Rona, Audrius Bagdanaviciu
15) Unsteady 3D Post-Stall Aerodynamics Accounting for Effective Loss in Camber Due to Flow Separation
Aritras Roy, Rinku Mukherjee

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