Advances in Active Bearings in Rotating Machinery : Proceedings of The 1st Workshop on Active Bearings in Rotating Machinery (ABROM 2022), June 29-30, 2022, Athens, Greece / / edited by Athanasios Chasalevris, Carsten Proppe |
Autore | Chasalevris Athanasios |
Edizione | [1st ed. 2023.] |
Pubbl/distr/stampa | Cham : , : Springer International Publishing : , : Imprint : Springer, , 2023 |
Descrizione fisica | 1 online resource (218 pages) |
Disciplina | 621.406 |
Altri autori (Persone) | ProppeCarsten |
Collana | Lecture Notes in Mechanical Engineering |
Soggetto topico |
Automatic control
Machinery Dynamics Nonlinear theories Control and Systems Theory Machinery and Machine Elements Applied Dynamical Systems |
Soggetto non controllato |
Mechanical Engineering
Technology & Engineering |
ISBN | 3-031-32394-7 |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto | 1.Rotordynamic Modal Testing via Journal Bearing Lubricant Film – An Experimental Validation -- 2.Problems of Development of Tribotronics -- 3.A Presentation of Control Theory Applied to the Design of Controllable Segmented Gas Foil Bearings -- 4.Tilting-Pad Journal Bearing with Active Pads: A Way of Attenuating Rotor Lateral Vibrations -- 5.Studying the Effect of Viscous Friction Minimization in Actively Lubricated Journal Hybrid Bearings -- 6.On The Feedback Control of a Rotor System with Active Flexible Bearings -- 7.A novel monolithic shape-morphing bearing for real-time NVH control -- 8.Application of Squeeze film dampers -- 9.Investigation of Active Configuration in Gas Foil Bearings for Stable Ultra High-Speed Operation -- 10.Gyroid lattice structures for Tilting Pad Journal Bearings -- 11.Behavior of an Active Magnetic Bearing as a Stern Tube Bearing: A first approach via simulations -- 12.On the Stability Margins of Parametrically Excited Rotating Shafts on Gas Foil Bearings: Linear and Nonlinear Approach. |
Record Nr. | UNINA-9910728385503321 |
Chasalevris Athanasios
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Cham : , : Springer International Publishing : , : Imprint : Springer, , 2023 | ||
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Lo trovi qui: Univ. Federico II | ||
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Advances in Turbomachinery / / Melih Cemal Kushan, Isil Yazar, editors |
Pubbl/distr/stampa | London : , : IntechOpen, , 2023 |
Descrizione fisica | 1 online resource (118 pages) |
Disciplina | 621.406 |
Soggetto topico | Turbomachines - Design and construction |
ISBN | 1-83768-442-1 |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto | 1. Solid Particle Erosion -- By Wang Di and Yang Zhen -- 2. Periodic Instabilities in a Specific Low-Speed Pump Working as a Turbine -- By Hernan Bolaños and Francisco Botero -- 3. The Influences of Combined Distortions on Fan Performance -- By Quanyong Xu, Anping Hou and Honghu Wu -- 4. Electrification for Aero-Engines: A Case Study of Modularization in New Product Development -- By Edgar Jeevan Danaraj -- 5. Principles of Diagnosing: The Technical Condition of the Bearings of the Gas Turbine Engine Supports Using Rhythmogram and Scatterogram -- By Dmitry Balakin, Vitaly Shtykov, Alexey Zubko, Shalimova Elena Vladimirovna and Zayed Saleh Salem Ali. |
Record Nr. | UNINA-9910727277803321 |
London : , : IntechOpen, , 2023 | ||
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Lo trovi qui: Univ. Federico II | ||
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Aerothermodynamics of turbomachinery [[electronic resource] ] : analysis and design / / Naixing Chen |
Autore | Chen Naixing <1933-> |
Pubbl/distr/stampa | Singapore ; ; Hoboken, NJ, : John Wiley & Sons, c2010 |
Descrizione fisica | 1 online resource (475 p.) |
Disciplina | 621.406 |
Soggetto topico |
Turbomachines - Aerodynamics
Turbomachines - Design and construction |
Soggetto genere / forma | Electronic books. |
ISBN |
1-299-18952-0
0-470-82501-4 0-470-82502-2 |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
AEROTHERMODYNAMICS OF TURBOMACHINERY: ANALYSIS AND DESIGN; Contents; Foreword; Preface; Acknowledgments; Nomenclature; 1 Introduction; 1.1 Introduction to the Study of the Aerothermodynamics of Turbomachinery; 1.2 Brief Description of the Development of the Numerical Study of the Aerothermodynamics of Turbomachinery; 1.3 Summary; Further Reading; 2 Governing Equations Expressed in Non-Orthogonal Curvilinear Coordinates to Calculate 3D Viscous Fluid Flow in Turbomachinery; 2.1 Introduction; 2.2 Aerothermodynamics Governing Equations (Navier-Stokes Equations) of Turbomachinery
2.3 Viscous and Heat Transfer Terms of Equations2.3.1 Viscous Stress Tensor; 2.3.2 Strain Tensor; 2.3.3 Viscous Force; 2.3.4 Rates of Work Done by the Viscous Stresses and Dissipation Function; 2.3.5 Heat Transfer Term; 2.4 Examples of Simplification of Viscous and Heat Transfer Terms; 2.4.1 Three-Dimensional Flow in Turbomachinery Expressed by Using Arbitrary Non-Orthogonal Coordinates; 2.4.2 S1 Stream-Surface Flow; 2.4.3 S2 Stream-Surface Flow; 2.4.4 Annulus Wall Boundary Layer; 2.4.5 Three-Dimensional Boundary Layer on Rotating Blade Surface; 2.5 Tensor Form of Governing Equations 2.5.1 Continuity Equation2.5.2 Momentum Equation; 2.5.3 Energy Equation; 2.5.4 Entropy Equation; 2.6 Integral Form of Governing Equations; 2.6.1 Continuity Equation; 2.6.2 Momentum Equation; 2.6.3 Energy Equation; 2.7 A Collection of the Basic Relationships for Non-Orthogonal Coordinates; 2.8 Summary; 3 Introduction to Boundary Layer Theory; 3.1 Introduction; 3.2 General Concepts of the Boundary Layer; 3.2.1 Nature of Boundary Layer Flow; 3.2.2 Boundary Layer Thicknesses; 3.2.3 Transition of the Boundary Layer Regime; 3.2.4 Boundary Layer Separation; 3.2.5 Thermal Boundary Layer; 3.3 Summary 4 Numerical Solutions of Boundary Layer Differential Equations4.1 Introduction; 4.2 Boundary Layer Equations Expressed in Partial Differential Form; 4.2.1 Two-Dimensional Laminar Boundary Layer Equations; 4.2.2 Laminar Boundary Layer Equations of Axisymmetrical Flow; 4.2.3 Turbulent Boundary Layer Equations; 4.2.4 Boundary Conditions of Solution; 4.3 Numerical Solution of the Boundary Layer Differential Equations for a Cascade on the Stream Surface of Revolution; 4.3.1 Boundary Layer Equations of S1 Stream Surface Flow of Revolution and Their Solution; 4.3.2 Turbulence Modeling 4.4 Calculation Results and Validations4.4.1 Laminar Boundary Layer Calculation Example; 4.4.2 Turbulent Boundary Layer with Favorable Pressure Gradient; 4.4.3 Turbulent Boundary Layer with Adverse Pressure Gradient (Ludweig and Tillmann); 4.4.4 Turbulent Boundary Layer with Favorable Pressure Gradient (Bell); 4.4.5 Turbulent Boundary Layer with Adverse Pressure Gradient (Schubauer and Spangenberg); 4.5 Application to Analysis of the Performance of Turbomachinery Blade Cascades; 4.5.1 Boundary Layer Momentum Thickness (Bammert's Experiment) 4.5.2 Laminar Boundary Layer Prediction (Turbine and Compressor Blade Profiles) |
Record Nr. | UNINA-9910133597603321 |
Chen Naixing <1933->
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Singapore ; ; Hoboken, NJ, : John Wiley & Sons, c2010 | ||
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Lo trovi qui: Univ. Federico II | ||
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Aerothermodynamics of turbomachinery [[electronic resource] ] : analysis and design / / Naixing Chen |
Autore | Chen Naixing <1933-> |
Pubbl/distr/stampa | Singapore ; ; Hoboken, NJ, : John Wiley & Sons, c2010 |
Descrizione fisica | 1 online resource (475 p.) |
Disciplina | 621.406 |
Soggetto topico |
Turbomachines - Aerodynamics
Turbomachines - Design and construction |
ISBN |
1-299-18952-0
0-470-82501-4 0-470-82502-2 |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
AEROTHERMODYNAMICS OF TURBOMACHINERY: ANALYSIS AND DESIGN; Contents; Foreword; Preface; Acknowledgments; Nomenclature; 1 Introduction; 1.1 Introduction to the Study of the Aerothermodynamics of Turbomachinery; 1.2 Brief Description of the Development of the Numerical Study of the Aerothermodynamics of Turbomachinery; 1.3 Summary; Further Reading; 2 Governing Equations Expressed in Non-Orthogonal Curvilinear Coordinates to Calculate 3D Viscous Fluid Flow in Turbomachinery; 2.1 Introduction; 2.2 Aerothermodynamics Governing Equations (Navier-Stokes Equations) of Turbomachinery
2.3 Viscous and Heat Transfer Terms of Equations2.3.1 Viscous Stress Tensor; 2.3.2 Strain Tensor; 2.3.3 Viscous Force; 2.3.4 Rates of Work Done by the Viscous Stresses and Dissipation Function; 2.3.5 Heat Transfer Term; 2.4 Examples of Simplification of Viscous and Heat Transfer Terms; 2.4.1 Three-Dimensional Flow in Turbomachinery Expressed by Using Arbitrary Non-Orthogonal Coordinates; 2.4.2 S1 Stream-Surface Flow; 2.4.3 S2 Stream-Surface Flow; 2.4.4 Annulus Wall Boundary Layer; 2.4.5 Three-Dimensional Boundary Layer on Rotating Blade Surface; 2.5 Tensor Form of Governing Equations 2.5.1 Continuity Equation2.5.2 Momentum Equation; 2.5.3 Energy Equation; 2.5.4 Entropy Equation; 2.6 Integral Form of Governing Equations; 2.6.1 Continuity Equation; 2.6.2 Momentum Equation; 2.6.3 Energy Equation; 2.7 A Collection of the Basic Relationships for Non-Orthogonal Coordinates; 2.8 Summary; 3 Introduction to Boundary Layer Theory; 3.1 Introduction; 3.2 General Concepts of the Boundary Layer; 3.2.1 Nature of Boundary Layer Flow; 3.2.2 Boundary Layer Thicknesses; 3.2.3 Transition of the Boundary Layer Regime; 3.2.4 Boundary Layer Separation; 3.2.5 Thermal Boundary Layer; 3.3 Summary 4 Numerical Solutions of Boundary Layer Differential Equations4.1 Introduction; 4.2 Boundary Layer Equations Expressed in Partial Differential Form; 4.2.1 Two-Dimensional Laminar Boundary Layer Equations; 4.2.2 Laminar Boundary Layer Equations of Axisymmetrical Flow; 4.2.3 Turbulent Boundary Layer Equations; 4.2.4 Boundary Conditions of Solution; 4.3 Numerical Solution of the Boundary Layer Differential Equations for a Cascade on the Stream Surface of Revolution; 4.3.1 Boundary Layer Equations of S1 Stream Surface Flow of Revolution and Their Solution; 4.3.2 Turbulence Modeling 4.4 Calculation Results and Validations4.4.1 Laminar Boundary Layer Calculation Example; 4.4.2 Turbulent Boundary Layer with Favorable Pressure Gradient; 4.4.3 Turbulent Boundary Layer with Adverse Pressure Gradient (Ludweig and Tillmann); 4.4.4 Turbulent Boundary Layer with Favorable Pressure Gradient (Bell); 4.4.5 Turbulent Boundary Layer with Adverse Pressure Gradient (Schubauer and Spangenberg); 4.5 Application to Analysis of the Performance of Turbomachinery Blade Cascades; 4.5.1 Boundary Layer Momentum Thickness (Bammert's Experiment) 4.5.2 Laminar Boundary Layer Prediction (Turbine and Compressor Blade Profiles) |
Record Nr. | UNINA-9910829948503321 |
Chen Naixing <1933->
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Singapore ; ; Hoboken, NJ, : John Wiley & Sons, c2010 | ||
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Lo trovi qui: Univ. Federico II | ||
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Aerothermodynamics of turbomachinery : analysis and design / / Naixing Chen |
Autore | Chen Naixing <1933-> |
Pubbl/distr/stampa | Singapore ; ; Hoboken, NJ, : John Wiley & Sons, c2010 |
Descrizione fisica | 1 online resource (475 p.) |
Disciplina | 621.406 |
Soggetto topico |
Turbomachines - Aerodynamics
Turbomachines - Design and construction |
ISBN |
1-299-18952-0
0-470-82501-4 0-470-82502-2 |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
AEROTHERMODYNAMICS OF TURBOMACHINERY: ANALYSIS AND DESIGN; Contents; Foreword; Preface; Acknowledgments; Nomenclature; 1 Introduction; 1.1 Introduction to the Study of the Aerothermodynamics of Turbomachinery; 1.2 Brief Description of the Development of the Numerical Study of the Aerothermodynamics of Turbomachinery; 1.3 Summary; Further Reading; 2 Governing Equations Expressed in Non-Orthogonal Curvilinear Coordinates to Calculate 3D Viscous Fluid Flow in Turbomachinery; 2.1 Introduction; 2.2 Aerothermodynamics Governing Equations (Navier-Stokes Equations) of Turbomachinery
2.3 Viscous and Heat Transfer Terms of Equations2.3.1 Viscous Stress Tensor; 2.3.2 Strain Tensor; 2.3.3 Viscous Force; 2.3.4 Rates of Work Done by the Viscous Stresses and Dissipation Function; 2.3.5 Heat Transfer Term; 2.4 Examples of Simplification of Viscous and Heat Transfer Terms; 2.4.1 Three-Dimensional Flow in Turbomachinery Expressed by Using Arbitrary Non-Orthogonal Coordinates; 2.4.2 S1 Stream-Surface Flow; 2.4.3 S2 Stream-Surface Flow; 2.4.4 Annulus Wall Boundary Layer; 2.4.5 Three-Dimensional Boundary Layer on Rotating Blade Surface; 2.5 Tensor Form of Governing Equations 2.5.1 Continuity Equation2.5.2 Momentum Equation; 2.5.3 Energy Equation; 2.5.4 Entropy Equation; 2.6 Integral Form of Governing Equations; 2.6.1 Continuity Equation; 2.6.2 Momentum Equation; 2.6.3 Energy Equation; 2.7 A Collection of the Basic Relationships for Non-Orthogonal Coordinates; 2.8 Summary; 3 Introduction to Boundary Layer Theory; 3.1 Introduction; 3.2 General Concepts of the Boundary Layer; 3.2.1 Nature of Boundary Layer Flow; 3.2.2 Boundary Layer Thicknesses; 3.2.3 Transition of the Boundary Layer Regime; 3.2.4 Boundary Layer Separation; 3.2.5 Thermal Boundary Layer; 3.3 Summary 4 Numerical Solutions of Boundary Layer Differential Equations4.1 Introduction; 4.2 Boundary Layer Equations Expressed in Partial Differential Form; 4.2.1 Two-Dimensional Laminar Boundary Layer Equations; 4.2.2 Laminar Boundary Layer Equations of Axisymmetrical Flow; 4.2.3 Turbulent Boundary Layer Equations; 4.2.4 Boundary Conditions of Solution; 4.3 Numerical Solution of the Boundary Layer Differential Equations for a Cascade on the Stream Surface of Revolution; 4.3.1 Boundary Layer Equations of S1 Stream Surface Flow of Revolution and Their Solution; 4.3.2 Turbulence Modeling 4.4 Calculation Results and Validations4.4.1 Laminar Boundary Layer Calculation Example; 4.4.2 Turbulent Boundary Layer with Favorable Pressure Gradient; 4.4.3 Turbulent Boundary Layer with Adverse Pressure Gradient (Ludweig and Tillmann); 4.4.4 Turbulent Boundary Layer with Favorable Pressure Gradient (Bell); 4.4.5 Turbulent Boundary Layer with Adverse Pressure Gradient (Schubauer and Spangenberg); 4.5 Application to Analysis of the Performance of Turbomachinery Blade Cascades; 4.5.1 Boundary Layer Momentum Thickness (Bammert's Experiment) 4.5.2 Laminar Boundary Layer Prediction (Turbine and Compressor Blade Profiles) |
Record Nr. | UNINA-9910876596703321 |
Chen Naixing <1933->
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Singapore ; ; Hoboken, NJ, : John Wiley & Sons, c2010 | ||
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Lo trovi qui: Univ. Federico II | ||
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Axial flow turbines : fluid mechanics and thermodynamics / J. H. Horlock |
Autore | Horlock, J. H. |
Pubbl/distr/stampa | Malabar (FL) : Krieger, 1966 |
Descrizione fisica | X, 275 p., [2] c. di tav. : ill. ; 24 cm. |
Disciplina | 621.406 |
Soggetto topico | Turbine |
ISBN | 0-88275-097-6 |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Record Nr. | UNIBAS-000009440 |
Horlock, J. H.
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Malabar (FL) : Krieger, 1966 | ||
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Lo trovi qui: Univ. della Basilicata | ||
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Axial flow turbines : fluid mechanics and thermodynamics / J.H. Horlock |
Autore | Horlock, J.H. |
Pubbl/distr/stampa | Malabar (Fla) : Krieger, copyr. 1966 |
Disciplina | 621.406 |
Soggetto non controllato | turbine |
ISBN | 0-88275-097-6 |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Record Nr. | UNISA-990000140270203316 |
Horlock, J.H.
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Malabar (Fla) : Krieger, copyr. 1966 | ||
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Lo trovi qui: Univ. di Salerno | ||
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Design and analysis of centrifugal compressors / / Rene Van den Braembussche |
Autore | Braembussche R. van den |
Edizione | [1st edition] |
Pubbl/distr/stampa | [Place of publication not identified] : , : John Wiley & Sons Ltd : , : ASME Press, , 2019 |
Descrizione fisica | 1 online resource (411 pages) |
Disciplina | 621.406 |
Collana | THEi Wiley ebooks |
Soggetto topico | Centrifugal compressors - Design and construction |
ISBN |
1-119-42410-0
1-5231-2800-3 1-119-42408-9 1-119-42411-9 |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Record Nr. | UNINA-9910555007003321 |
Braembussche R. van den
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[Place of publication not identified] : , : John Wiley & Sons Ltd : , : ASME Press, , 2019 | ||
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Lo trovi qui: Univ. Federico II | ||
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Design and analysis of centrifugal compressors / / Rene Van den Braembussche |
Autore | Braembussche R. van den |
Edizione | [1st edition] |
Pubbl/distr/stampa | [Place of publication not identified] : , : John Wiley & Sons Ltd : , : ASME Press, , 2019 |
Descrizione fisica | 1 online resource (411 pages) |
Disciplina | 621.406 |
Collana | THEi Wiley ebooks |
Soggetto topico | Centrifugal compressors - Design and construction |
ISBN |
1-119-42410-0
1-5231-2800-3 1-119-42408-9 1-119-42411-9 |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Record Nr. | UNINA-9910814740403321 |
Braembussche R. van den
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[Place of publication not identified] : , : John Wiley & Sons Ltd : , : ASME Press, , 2019 | ||
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Lo trovi qui: Univ. Federico II | ||
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Developments in turbomachinery flow : forward curved centrifugal fan / / Nader Montazerin, Ghashem Akbari, Moastafa Madmoodi |
Autore | Montazerin Nader |
Pubbl/distr/stampa | Amsterdam, [Netherlands] : , : Woodhead Publishing, , 2015 |
Descrizione fisica | 1 online resource (155 p.) |
Disciplina | 621.406 |
Collana | Woodhead Publishing in Mechanical Engineering |
Soggetto topico | Turbomachines - Fluid dynamics |
ISBN |
1-78242-193-9
1-78242-192-0 |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
Front Cover; Related titles; Developments in Turbomachinery Flow: Forward Curved Centrifugal Fans; Copyright; Dedication; Contents; List of figures; List of tables; About the authors; Preface; 1 - General introduction of forward-curved squirrel-cage fan; 1.1 Introduction; 1.2 Fan geometry; 1.3 Flow field; 1.4 Fan performance and noise measurements; 1.5 Fluid-flow simulation in centrifugal fans; 1.6 Velocity measurement techniques and their considerations; 1.7 Final remarks; Further reading; 2 - Inlet configuration; 2.1 Why the inlet is important?; 2.2 Bell-mouth inlet; 2.3 Outward inlet
2.4 Final remarksFurther reading; 3 - Rotor; 3.1 Half-cone rotors; 3.2 Lean angle in rotor blades; Further reading; 4 - Volute; 4.1 Volute flow; 4.2 Slip factor; 4.3 Volute optimization; 4.4 Volute width; 4.5 Double-outlet volute; 4.6 Final remarks; Further reading; 5 - Noise in forward-curved centrifugal fans; 5.1 Sound parameters; 5.2 Different types of noise; 5.3 Modelling of sound generation in fans; 5.4 Effect of fan components on sound generation; 5.5 Sound generation of double-outlet squirrel-cage fans; 5.6 Final remarks; Further reading 6 - Contribution of jet-wake-volute interactions to flow characteristics and turbulence models6.1 Role of nonintrusive measurements on examination of complicated turbulent flows; 6.2 Jet-wake interactions with the volute flow; 6.3 Geometrical characteristics of tensorial-flow quantities; 6.4 Challenges in turbulence modelling; 6.5 Final remarks; References; Index |
Record Nr. | UNINA-9910797501203321 |
Montazerin Nader
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Amsterdam, [Netherlands] : , : Woodhead Publishing, , 2015 | ||
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Lo trovi qui: Univ. Federico II | ||
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