Applied Mathematics

Applied Mathematics

ISSN Print: 2152-7385
ISSN Online: 2152-7393
www.scirp.org/journal/am
E-mail: am@scirp.org
"3-D Modeling of Axial Fans"
written by Ali Sahili, Bashar Zogheib, Ronald M. Barron,
published by Applied Mathematics, Vol.4 No.4, 2013
has been cited by the following article(s):
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[1] Numerical simulation of aerodynamic processes in the fan in the diesel locomotive cooling module
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[2] A comprehensive optimization study of personal cooling radiant desks integrated to HVAC system for energy efficiency and thermal comfort in office buildings
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[3] Performance Determination of Axial Wind Tunnel Fan With Reverse Engineering, Numerical and Experimental Methods
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[4] Non-uniform Airflow Analysis of a Greenhouse Extractor Axial with Conical Diffusers Using CFD Simulation
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[5] Suitability Assessment of an Uncalibrated Body Force Based Fan Modeling Approach to Predict Automotive Underhood Airflows
SAE International Journal of Advances and …, 2021
[6] A Numerical Study on the Performance of a Magnesium-Based Automotive Cooling Fan with Bead Structure
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[7] Application of boundary conditions “actuator disk” in computational study of aerodynamic interference of the engine and airframe of a passenger aircraft
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[8] Применение граничных условий «активный диск» в расчетном исследовании аэродинамической интерференции двигателя и планера пассажирского …
2020
[9] The Effect of Blade Count on Body Force Model Performance for Axial Fans
2020
[10] The effect of hub configuration on the performance of an air-cooled steam condenser fan
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[11] A numerical investigation on the performance improvement of axial-flow automotive cooling fan with beads
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[12] Numerical Prediction of Automotive Underhood Airflows using an Uncalibrated Fan Body Force Model
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[13] Effect of Blade Materials on the Performance of Savonius Wind Turbine for Operation in Taif City-Saudi Arabia
2020
[14] A New Approach to Model the Fan in Vehicle Thermal Management Simulations
2019
[15] Numerical analysis of axial fan characteristics
2018
[16] „Numeryczna analiza charakterystyk wentylatora osiowego”
2018
[17] A Numerical Investigation into the Effect of Blade Trailing-Edge Thickness on the Performance of Axial Fans
2018
[18] of article:„Numeryczna analiza charakterystyk wentylatora osiowego”(„Numerical analysis of axial fan characteristics”)
2018
[19] Cooling Fan Model for the Thermal Design of Compact Electronic Equipment-Modeling of Swirl
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[20] A strategy for the partition of MRF zones in axial fan simulation
International Journal of Ventilation, 2018
[21] Prediction of airflow for automotive cooling applications using openFOAM
2018
[22] Numeryczna analiza charakterystyk wentylatora osiowego
MECHANIK NR, 2018
[23] 提高軸流風扇的風扇效率與降低其氣動噪音之最佳化分析
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[24] An iterative correction method for the input fan curve in an actuator disk model
Journal of Macromolecular Science, Part A: Pure and Applied Chemistry, 2017
[25] Numerical Simulation of the Effects of Design Parameters on the Performance of Tractor Powered Flail Choppers
2017
[26] Methodology of Preliminary Design and Performance of a Axial-Flow Fan through CFD
WASET, 2016
[27] Numerische Abbildung des Wärmetransports durch einen PKW-Axiallüfter
Dissertation, 2016
[28] Experiments and CFD Calculations on the Performance of a Non-Reversible Axial Fan
2016
[29] Experimental and Numerical Investigation of Non-Reversible Axial Fan
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[30] Effect of the Computational Domain Selection on the Calculation of Axial Fan Performance
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[31] Numerical analysis of flow around a fan blade of a CFM56-3
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[32] A Fully Coupled Flow and 6-DOF Motion Solver in Multiple Reference Frames
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[33] Noise Measuring and Control on Industrial Fans
Akustické listy, 2014
[34] Drilling of Inconel 718 with Geometry-modified Twist Drills
Procedia CIRP, 2014
[35] Duman filtreleme sistemi tasarımı ile farklı tip motor seçimi ve kanat tasarımına göre akışın nümerik analizi
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