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    1. Naturvetenskap och teknik
    2. Teknik och industri
    3. Transportteknik
    4. Motorfordon

    Acoustics of Ducts and Mufflers

    AvM. L. Munjal

    Inbunden, Engelska, 2014

    1 450 kr

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    E-bok

    1 688 kr

    E-bok

    1 688 kr

    Beskrivning

    Fully updated second edition of the premier reference book on muffler and lined duct acoustical performance Engine exhaust noise pollutes the street environment and ventilation fan noise enters dwellings along with fresh air. People have become conscious of their working environment. Governments of most countries have responded to popular demand with mandatory restrictions on sound emitted by automotive engines, and a thorough knowledge of acoustics of ducts and mufflers is needed for the design of efficient muffler configurations. This fully updated Second Edition of Acoustics of Ducts and Mufflers deals with propagation, reflection and dissipation/absorption of sound along ducts/pipes/tubes, area discontinuities, perforated elements and absorptive linings that constitute the present-day mufflers and silencers designed to control noise of exhaust and intake systems of automotive engines, diesel-generator sets, compressors and HVAC systems.It includes equations, figures, tables, references, and solved examples and unsolved exercises with answers, so it can be used as a text book as well as a reference book.  It also offers a complete presentation and analysis of the major topics in sound suppression and noise control for the analysis and design of acoustical mufflers, air conditioning and ventilation duct work. Both the fundamentals and the latest technology are discussed, with an emphasis on applications. Deals with reactive mufflers, dissipative silencers, the frequency-domain approach, and the time-domain approach. Fully updated second edition of the premier reference book on muffler and lined duct acoustical performance, in one complete volumePresents original new research on topics including baffle silencers and louvers, 3D analytical techniques, and flow-acoustic analysis of multiply-connected perforated-element mufflersIncludes a general design procedure to help muffler designers in the automotive industry, exhaust noise being a major component of automobile and traffic noise pollutionWritten by an expert with four decades’ experience in teaching to graduate students, publishing extensively in reputed international journals, and consulting with industry for noise control as well as designing for quietness

    Produktinformation

    • Utgivningsdatum:2014-03-12
    • Mått:178 x 254 x 25 mm
    • Vikt:803 g
    • Format:Inbunden
    • Språk:Engelska
    • Antal sidor:416
    • Upplaga:2
    • Förlag:John Wiley & Sons Inc
    • ISBN:9781118443125

    Utforska kategorier

    • Motorfordon inom Naturvetenskap och teknik

    Mer om författaren

    Dr. M. L. Munjal is a Mechanical Engineer specializing in Engineering Acoustics. Over a four-decade career at the Indian Institute of Science, he has published over 190 papers in refereed journals, carried out over 100 industrial consultancy projects, and has run graduate courses on ‘Industrial Noise Control’ and ‘Acoustics of Ducts and Mufflers’.  He is Chairman of the National Committee for Noise Pollution Control that advises on noise control measures and legislations in India. He is also a Distinguished International Member of the Institute of Noise Control Engineering, USA, and Honorary Fellow of the International Institute of Acoustics and Vibration. He has been a member of the Editorial Board of several journals including the International Journal of Acoustics and Vibration.

    Innehållsförteckning

    • Preface xiii1 Propagation of Waves in Ducts 11.1 Plane Waves in an Inviscid Stationary Medium 21.2 Three-Dimensional Waves in an Inviscid Stationary Medium 51.3 Waves in a Viscous Stationary Medium 121.4 Plane Waves in an Inviscid Moving Medium 161.5 Three-Dimensional Waves in an Inviscid Moving Medium 181.6 One-Dimensional Waves in a Viscous Moving Medium 201.7 Waves in Ducts with Compliant Walls (Dissipative Ducts) 231.8 Three-Dimensional Waves along Elliptical Ducts 342 Theory of Acoustic Filters 412.1 Units for the Measurement of Sound 412.2 Uniform Tube 432.3 Radiation Impedance 462.4 Reflection Coefficient at an Open End 482.5 A Lumped Inertance 492.6 A Lumped Compliance 502.7 End Correction 512.8 Electroacoustic Analogies 512.9 Electrical Circuit Representation of an Acoustic System 522.10 Acoustical Filter Performance Parameters 532.11 Lumped-Element Representations of a Tube 582.12 Simple Area Discontinuities 602.13 Gradual Area Changes 622.14 Extended-Tube Resonators 672.15 Helmholtz Resonator 692.16 Concentric Hole-Cavity Resonator 702.17 An Illustration of the Classical Method of Filter Evaluation 712.18 The Transfer Matrix Method 742.19 TL of a Simple Expansion Chamber Muffler 852.20 An Algebraic Algorithm for Tubular Mufflers 882.21 Synthesis Criteria for Low-Pass Acoustic Filters 913 Flow-Acoustic Analysis of Cascaded-Element Mufflers 973.1 The Exhaust Process 973.2 Finite Amplitude Wave Effects 1013.3 Mean Flow and Acoustic Energy Flux 1023.4 Aeroacoustic State Variables 1053.5 Aeroacoustic Radiation 1083.6 Insertion Loss 1113.7 Transfer Matrices for Tubular Elements 1123.8 Perforated Elements with Two Interacting Ducts 1193.9 Acoustic Impedance of Perforates 1263.10 Matrizant Approach 1293.11 Perforated Elements with Three Interacting Ducts 1313.12 Other Elements Constituting Cascaded-Element Mufflers 1374 Flow-Acoustic Analysis of Multiply-Connected Perforated Element Mufflers 1474.1 Herschel-Quincke Tube Phenomenon 1474.2 Perforated Element with Several Interacting Ducts 1514.3 Three-Pass Double-Reversal Muffler 1544.4 Flow-Reversal End Chambers 1584.5 Meanflow Lumped Resistance Network Theory 1634.6 Meanflow Distribution and Back Pressure Estimation 1694.7 Integrated Transfer Matrix Approach 1755 Flow-Acoustic Measurements 1875.1 Impedance of a Passive Subsystem or Termination 1875.2 Four-Pole Parameters of a Flow-Acoustic Element or Subsystem 2035.3 An Active Termination – Aeroacoustic Characteristics of a Source 2106 Dissipative Ducts and Parallel Baffle Mufflers 2336.1 Acoustically Lined Rectangular Duct with Moving Medium 2346.2 Acoustically Lined Circular Duct with Moving Medium 2396.3 Transfer Matrix Relation for a Dissipative Duct 2416.4 Transverse Wave Numbers for a Stationary Medium 2446.5 Normal Impedance of the Lining 2456.6 Transmission Loss 2496.7 Effect of Protective Layer 2516.8 Parallel Baffle Muffler 2576.9 The Effect of Mean Flow 2596.10 The Effect of Terminations on the Performance of Dissipative Ducts 2606.11 Lined Bends 2616.12 Plenum Chambers 2616.13 Flow-Generated Noise 2626.14 Insertion Loss of Parallel Baffle Mufflers 2637 Three-Dimensional Analysis of Mufflers 2677.1 Collocation Method for Simple Expansion Chambers 2687.2 Finite Element Methods for Mufflers 2757.3 Green's Function Method for a Rectangular Cavity 2927.4 Green's Function Method for Circular Cylindrical Chambers 3017.5 Green's Function Method for Elliptical Cylindrical Chambers 3037.6 Breakout Noise 3068 Design of Mufflers 3218.1 Requirements of an Engine Exhaust Muffler 3218.2 Simple Expansion Chamber 3228.3 Double-Tuned Extended-Tube Expansion Chamber 3248.4 Tuned Concentric Tube Resonator 3268.5 Plug Mufflers 3278.6 Side-Inlet Side-Outlet Mufflers 3298.7 Designing for Insertion Loss 3318.8 Three-Pass Double-Reversal Chamber Mufflers 3388.9 Perforated Baffle Muffler 3478.10 Forked Dual Muffler System 3498.11 Design of Short Elliptical and Circular Chambers 3538.12 Back-Pressure Considerations 3628.13 Practical Considerations 3658.14 Design of Mufflers for Ventilation Systems 3678.15 Active Sound Attenuation 369References 375Appendix A: Bessel Functions and Some of Their Properties 377Appendix B: Entropy Changes in Adiabatic Flows 381B.1 Stagnation Pressure and Entropy 381B.2 Pressure, Density, and Entropy 382Appendix C: Nomenclature 385Index 389