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Pneumatic Conveying Design Guide.

Pneumatic Conveying Design Guide, 3rd Edition is divided into three essential parts, system and components, system design, and system operation, providing both essential foundational knowledge and practical information to help users understand, design, and build suitable systems. All aspects of the...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor principal: Mills, David
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Kent : Elsevier Science, 2015.
Edición:3rd ed.
Temas:
Acceso en línea:Texto completo

MARC

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505 0 |a Front Cover; Pneumatic Conveying Design Guide; Copyright; Contents; Preface to the Third Edition; A -- CONVEYING IN PIPELINES; 1 -- INTRODUCTION TO PNEUMATIC CONVEYING AND THE GUIDE; INTRODUCTION; PNEUMATIC CONVEYING; SYSTEM FLEXIBILITY; INDUSTRIES AND MATERIALS; Fly ash; MODE OF CONVEYING; DILUTE PHASE; DENSE PHASE; CONVEYING AIR VELOCITY; PARTICLE VELOCITY; SOLIDS LOADING RATIO; CONVEYING CAPABILITY; SYSTEM TYPES; SYSTEM CAPABILITIES; Pressure gradient influences; Material influences; HIGH-PRESSURE CONVEYING; LONG-DISTANCE CONVEYING; VERTICAL CONVEYING; Conveying vertically up. 
505 8 |a Conveying vertically downFLOW RATE CAPABILITY; INFORMATION PROVIDED; AVAILABILITY OF DESIGN DATA; SCOPE OF THE WORK; REVIEW OF CHAPTERS; CONVEYING IN PIPELINES; AIRFLOWS AND PARTICLE FLOWS; A REVIEW OF PNEUMATIC CONVEYING SYSTEMS; APPLICATIONS AND CAPABILITIES; CONVEYING SYSTEM COMPONENTS; Pipeline feeding devices; Air supply systems; Gas-solid separation devices; Pipelines and valves; GAS AND SOLID FLOWS; Airflow rate evaluation; Air-only relationships; Conveying characteristics; Conveying capability; Material property influences; Conveying systems that modify material properties. 
505 8 |a System selection considerationsCONVEYING SYSTEM DESIGN; Pipeline scaling parameters; Design procedures; Stepped pipelines; Case studies; First approximation design methods; Multiple use systems; CONVEYING SYSTEM OPERATION; Troubleshooting and material flow problems; Optimizing and up-rating of existing systems; Operating problems; Erosive wear; Particle degradation; Moisture and condensation; Health and safety; DEFINITIONS; CONVEYING AND SYSTEMS; Solids loading ratio; Dilute phase conveying; Dense phase conveying; Low-pressure and negative-pressure (vacuum) conveying; High-pressure conveying. 
505 8 |a Acceleration lengthNull point; Pulsating flow; Stepped pipeline; Transient; VELOCITY RELATED; Superficial air velocity; Free air velocity; Slip velocity; Slip ratio; Minimum conveying air velocity; Conveying line inlet air velocity; Conveying line exit air velocity; Saltation; Choking; PROPERTIES; Free air conditions; Specific humidity; Relative humidity; Stoichiometric value; Air retention; Permeability; Hardness; Brinell hardness; Vickers hardness; Mohs' scale; NOMENCLATURE; SYMBOLS; GREEK; NONDIMENSIONAL PARAMETERS; SUPERSCRIPTS; SUBSCRIPTS; REFERENCE POINTS; PREFIXES; REFERENCE. 
505 8 |a 2 -- AIRFLOW AND PARTICLE FLOW IN PIPELINESINTRODUCTION; CONVEYING AIR VELOCITY; EVALUATION OF VELOCITY; SINGLE PHASE FLOW; The darcy equation for pressure drop; The influence of conveyed solids on pressure drop; SLIP VELOCITY; PARTICLE FEEDING INTO PIPELINES; ACCELERATION PRESSURE DROP; CONVEYING AIR VELOCITY PROFILE; PARTICLE DEPOSITION ISSUES; Pipeline orientation influences; Horizontal conveying; Conveying vertically up; Inclined pipelines; Conveying vertically down; FLOW THROUGH PIPELINE BENDS; MODE OF FLOW THOUGH PIPELINES; SOLIDS LOADING RATIO; DILUTE PHASE FLOW; DENSE PHASE FLOW. 
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