Open Journal of Fluid Dynamics

Open Journal of Fluid Dynamics

ISSN Print: 2165-3852
ISSN Online: 2165-3860
www.scirp.org/journal/ojfd
E-mail: ojfd@scirp.org
"Shape Optimization of a Regenerative Blower Used for Building Fuel Cell System"
written by Choon-Man Jang, Jong-Sung Lee,
published by Open Journal of Fluid Dynamics, Vol.2 No.4A, 2012
has been cited by the following article(s):
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[1] Numerical simulation of using DBD plasma air blower for a proton exchange membrane fuel cell
International Journal of Hydrogen Energy, 2024
[2] Quantitative analysis of energy loss and performance prediction of regenerative compressor
Applied Thermal Engineering, 2024
[3] Performance analysis of a microbubble pump with novel 'S-shape'impeller by experimental and numerical analysis at design and off-design operating …
Applied Sciences, 2021
[4] Parametric study and numerical analysis of the regenerative compressor with symmetric aerodynamic blades, to improve performance
… Of Applied and Computational Sciences in …, 2021
[5] Performance Analysis of a Microbubble Pump with Novel 'S-Shape'Impeller by Experimental and Numerical Analysis at Design and Off-Design Operating Conditions
2021
[6] Shape optimization of regenerative flow compressor with aero-foil type blades using response surface methodology coupled with CFD
Structural and Multidisciplinary Optimization, 2021
[7] مطالعۀ پارامتری و تحلیل عددی کمپرسور بازتولیدکننده با پره‌های آیرودینامیکی متقارن، برای بهبود عملکرد‎
علوم کاربردی و محاسباتی در مکانیک, 2021
[8] Optimal Design of a Novel 'S-shape'Impeller Blade for a Microbubble Pump
2019
[9] Improving the efficiency of regenerative blower impellers
2019
[10] INVESTIGATION OF STRUCTURAL INTEGRITY IN INTEGRATED BLADED ROTOR (IBR) OF A GAS TURBINE ROTOR
2019
[11] Bubble Size and Bubble Concentration of a Microbubble Pump with Respect to Operating Conditions
Energies, 2018
[12] Исследование влияния давления газа на входе в струйно-реактивную турбину на показатели ее
2018
[13] Analysing mass flow rate and noise level of blowers through Ansys CFX solver.
2017
[14] Optimization of a regenerative blower to enhance aerodynamic and aeroacoustic performance
Journal of Mechanical Science and Technology, 2016
[15] Analysing mass flow rate and noise level of blowers through Ansys CFX solver
Annals of GIS, 2016
[16] Aerodynamic and Aeroacoustic Analyses of a Regenerative Blower
ASME Turbo Expo 2015: Turbine Technical Conference and Exposition, 2015
[17] Performance Enhancement of 20kW Regenerative Blower Using Design Parameters
International Journal of Fluid Machinery and Systems, 2014
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