DESIGN AND PERFORMANCE ANALYSIS OF A REVERSIBLE AXIAL FLOW FAN.

DESIGN AND PERFORMANCE ANALYSIS OF A REVERSIBLE AXIAL FLOW FAN. PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
Reversible axial flow fans are used as emergency ventilation fans to discharge the smoke generated on the probable fires occurring in the underground transportation systems and mines as quickly as possible, without causing any harm to people exposed to it. The fans which are placed in different configurations according to the location of fire must be able to work bi-directionally, namely reversible. Due to this fact, the blade profiles of the fan must possess the same aerodynamic performance while working on either discharge or suction condition of the fan, dictated by direction of the rotation. This manuscript consists of the computation of the aerodynamic performances of symmetrical blade profiles of fully reversible axial fans by computational fluid mechanics (CFD) methods, developing a methodology for the design of reversible axial fans and analysis of the designed fan with CFD methods. The aerodynamic performances of the blade cascades are evaluated using FLUENT 6.0 software for different Reynolds numbers, solidities and angle of attacks of the cascade. The results of these computations are embedded into the developed methodology. Performance analysis of the reversible axial flow fan, which is designed with the developed methodology, is done with CFD techniques.

DESIGN AND PERFORMANCE ANALYSIS OF A REVERSIBLE AXIAL FLOW FAN.

DESIGN AND PERFORMANCE ANALYSIS OF A REVERSIBLE AXIAL FLOW FAN. PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
Reversible axial flow fans are used as emergency ventilation fans to discharge the smoke generated on the probable fires occurring in the underground transportation systems and mines as quickly as possible, without causing any harm to people exposed to it. The fans which are placed in different configurations according to the location of fire must be able to work bi-directionally, namely reversible. Due to this fact, the blade profiles of the fan must possess the same aerodynamic performance while working on either discharge or suction condition of the fan, dictated by direction of the rotation. This manuscript consists of the computation of the aerodynamic performances of symmetrical blade profiles of fully reversible axial fans by computational fluid mechanics (CFD) methods, developing a methodology for the design of reversible axial fans and analysis of the designed fan with CFD methods. The aerodynamic performances of the blade cascades are evaluated using FLUENT 6.0 software for different Reynolds numbers, solidities and angle of attacks of the cascade. The results of these computations are embedded into the developed methodology. Performance analysis of the reversible axial flow fan, which is designed with the developed methodology, is done with CFD techniques.

Axial Flow Fans

Axial Flow Fans PDF Author: R. A. Wallis
Publisher: Academic Press
ISBN: 1483274225
Category : Technology & Engineering
Languages : en
Pages : 381

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Book Description
Axial Flow Fans: Design and Practice focuses on the design of axial flow fans and the practices involved in their applications. The manuscript first offers information on the fluid mechanics of ducted fans, boundary layer and skin friction relations, and aerofoil data for blade design. Discussions focus on flow deflection in cascade of aerofoils, pitching moment, lift, surface roughness in turbulent boundary layers, turbulent boundary layers in pressure gradients, laminar skin friction, viscosity and boundary layers, and similarity and non-dimensional numbers. The text then ponders on vortex flows in ducting and fan, ducts, and introduction to fan design methods. The book takes a look at the momentum and blade element considerations on free vortex flow of rotor and rotor losses. Topics include momentum considerations, profile drag, tip clearance losses, optimum conditions in terms of the flow and swirl coefficients, pressure relations and velocity vectors, and thrust and torque gradients. Tail fairing design and associated losses, overall efficiencies, torque, thrust, and power, and the design of fan unit with arbitrary vortex flow are also discussed. The publication is a dependable source of information for engineers and readers interested in the design of axial flow fans and practices involved in their operation.

Design, Performance and Analysis of Ducted Axial Flow Fans

Design, Performance and Analysis of Ducted Axial Flow Fans PDF Author: Raymond Allan Wallis
Publisher:
ISBN:
Category : Fans (Machinery)
Languages : en
Pages :

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Axial Flow Fans and Ducts

Axial Flow Fans and Ducts PDF Author: R. A. Wallis
Publisher: Wiley-Interscience
ISBN:
Category : Science
Languages : en
Pages : 464

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Book Description
Covers the theory, design, analysis, testing, and research of axial flow fans. Contains up-to-date data on recent developments in the field. Interrelates fan and duct design techniques. Discusses commercial and product development test procedures. Covers future experimental research objectives. Includes a reference section on F-series of airfoils.

The Design of a Reversible Fan

The Design of a Reversible Fan PDF Author: Ellis Millard Killgore
Publisher:
ISBN:
Category : Fans (Machinery)
Languages : en
Pages : 80

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The Design and Performance of a High-pressure Axial-flow Fan

The Design and Performance of a High-pressure Axial-flow Fan PDF Author: Lionel S. Marks
Publisher:
ISBN:
Category : Earth pressure
Languages : en
Pages :

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Design of a High Performance Low Aerodynamic Noise Axial Flow Fan

Design of a High Performance Low Aerodynamic Noise Axial Flow Fan PDF Author: Manuel Lanuza Fabregat
Publisher:
ISBN:
Category :
Languages : en
Pages : 50

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The Performance of an Axial-flow Fan Designed by Computer

The Performance of an Axial-flow Fan Designed by Computer PDF Author: J. E. Hesselgreaves
Publisher:
ISBN:
Category :
Languages : en
Pages : 18

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Noise Source Analysis and Control for Small Axial-Flow Fans

Noise Source Analysis and Control for Small Axial-Flow Fans PDF Author: Chen Wang
Publisher:
ISBN: 9781361033272
Category :
Languages : en
Pages :

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Book Description
This dissertation, "Noise Source Analysis and Control for Small Axial-flow Fans" by Chen, Wang, 王晨, was obtained from The University of Hong Kong (Pokfulam, Hong Kong) and is being sold pursuant to Creative Commons: Attribution 3.0 Hong Kong License. The content of this dissertation has not been altered in any way. We have altered the formatting in order to facilitate the ease of printing and reading of the dissertation. All rights not granted by the above license are retained by the author. Abstract: Fan noise is always an important topic in applications ranging from small cooling fans for computers, transport vehicles and machinery, and building ventilation fans, to large compressors and turbo-engine fans in aircraft. When air flow with higher pressure or larger flow rate is needed in some operating conditions, two fans in series or a contra-rotating fan is often adopted. The purpose of this project is to conduct the noise source analysis for two identical small axial-flow cooling fans and a newly designed small axial-flow contra-rotating fan (both about 120 mm in diameter), and to explore some passive methods to reduce the more complex radiated noise, compared with that encountered in a conventional single fan. For two fans in series, a technique of synchronous averaging with time-base stretching is used to decompose the raw sound signals into various noise source components. Acoustic directivity measurements are conducted for two operating conditions: free space and its usual working condition; each condition with two different configurations: free (unobstructed) inlet and distorted inlet by a flat plate covering part of inlet area. For both operating conditions, the rotary noise from the downstream fan dominates over that from the upstream fan for unobstructed inlet while the dominance by the downstream fan is reversed with distorted inlet. The total noise, total broadband noise and rotary noise radiated by the upstream fan all increase gradually with decreased plate-fan spacing. However, the rotary noise radiated by downstream fan is hardly affected by the obstacle plate, whatever the plate-fan spacing is. The flow straightener between the two fans contributes to considerable improvement of aerodynamic performance for free inlet case, while it has a limited role in remedying the severe inlet distortion when placed in front of the upstream fan. From the derived formula of acoustic spectrum from rotor blade forces resulting from the viscous and potential wakes of the upstream counter-rotating blade row impinging in the downstream one, two obvious mechanisms for interaction noise reduction can be easily found, which are either to increase the order of the Bessel function of the first kind, or to reduce the interaction fluctuating forces which can be realized by reducing the magnitude of the wake centerline velocity deficit or broaden the wake width. Several passive methods for reducing the aerodynamic interaction noise of a newly designed small axial-flow contra-rotating fan are explored. These methods include: (1) Perforated trailing edge for the upstream rotor and perforated leading edge for the downstream rotor; (2) Slitted trailing edge serration for the upstream rotor; (3) Chordwise perforated leading edge of the downstream rotor. Up to 5-7 dB overall noise reduction at all directions is achieved through the first two methods compared under the same aerodynamic output. Only 1.3 dB of acoustic benefit is achieved by the third method, but it hardly causes any adverse impact on the aerodynamic performance. The findings are useful and helpful in designing a quiet coaxial fan (two/multiple-stage or contra-rotating) and adopting an appropriate approach for noise mitigation. Subjects: Fans (Machinery) Noise control

The Theory and Performance of Axial-flow Fans

The Theory and Performance of Axial-flow Fans PDF Author: Curt Keller
Publisher:
ISBN:
Category : Aerodynamics
Languages : en
Pages : 170

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Book Description