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SFPE Handbook of Fire Protection Engineering
Published 2016Table of Contents: “…Introduction to Fluid Mechanics -- Conduction of Heat in Solids -- Convection Heat Transfer -- Radiation Heat Transfer -- Thermochemistry -- Chemical Equilibrium -- Thermal Decomposition of Polymeric Materials -- Structural Mechanics -- Properties of Building Materials -- Chemical Kinetics and Fire -- Diffusion Flames -- Fundamentals of Premixed Flames -- Fire Plumes, Flame Height, and Air Entrainment -- Ceiling Jet Flows -- Vent Flows -- Effect of Combustion Conditions on Species Production -- Flammability Limits of Premixed and Diffusion Flames -- Ignition of Liquids -- Smoldering Combustion -- Spontaneous Combustion and Self-Heating -- Flaming Ignition of Solid Fuels -- Electrical Fires -- Surface Flame Spread -- Smoke Characterization and Damage Potential -- Heat Fluxes from Fires to Surfaces -- Heat Release Rates -- Calorimetry -- The Cone Calorimeter -- Compartment Fire Modeling -- Estimating Temperatures in Compartment Fires -- Zone Computer Fire Models for Enclosures -- Modeling Fires Using Computational Fluid Dynamics (CFD) -- Enclosure Smoke Filling and Fire-Generated Environmental Conditions -- Methods for Predicting Temperatures in Fire Exposed Structures -- Fire Load Density -- Combustion Characteristics of Materials and Generation of Fire Products -- Performance-Based Design -- Fire Scenarios -- Engineering Considerations for Fire Protection System Selection -- Design of Detection Systems -- Hydraulics -- Automatic Sprinkler System Calculations -- Halon Design Calculations -- Clean Agent Total Flooding Fire Extinguishing Systems -- Carbon Dioxide Systems -- Water Mist Fire Suppression Systems -- Foam Agents and AFFF System Design Considerations -- Foam System Calculations- Considerations for Coordinating and Interfacing Fire Protection and Life Safety Systems -- Smoke Control -- Smoke Management by Mechanical Exhaust or Natural Venting -- Structural Fire Engineering of Building Assemblies and Frames -- Analytical Methods for Determining Fire Resistance of Steel Members -- Analytical Methods for Determining Fire Resistance of Concrete Members -- Analytical Methods for Determining Fire Resistance of Timber Members -- Egress Concepts and Design Approaches -- Selecting Scenarios for Deterministic Fire Safety Engineering Analysis - Life Safety for Occupants -- Human Behavior in Fire -- Employing the Hydraulic Model in Assessing Emergency Movement -- Computer Evacuation Models for Buildings -- Visibility and Human Behavior in Fire Smoke -- Combustion Toxicity -- Assessment of Hazards to Occupants from Smoke, Toxic Gases, and Heat -- Engineering Data -- Liquid Fuel Fires -- Fire Hazard Calculations for Large, Open Hydrocarbon Fires -- Vapor Clouds -- Effects of Thermal Radiation to People Predicting 1st and 2nd Degree Skin Burns -- Flammable Gas and Vapor Explosions -- Dust Explosions -- BLEVEs and Fireballs -- Introduction to Fire Risk Analysis -- Probability & Statistics -- Reliability, Availability, and Maintainability -- Building Fire Risk Analysis -- Uncertainty -- Decision Analysis -- Data For Engineering Analysis -- Measuring Fire Consequences in Economic Terms -- Computer Simulation for Fire Risk Analysis -- Engineering Economics -- Fire Risk Indexing -- Risk-Informed Industrial Fire Protection Engineering -- Product Fire Risk Analysis -- Health Care Application of Quantitative Fire Risk Analysis -- The Building Envelope - Fire Spread, Construction Features and Loss Examples -- Wildland fires -- Fires in Vehicle Tunnels -- Fire Risk Assessment for Nuclear Power Plants -- Fire Risk in Mass Transportation -- Appendix A: Conversion Factors -- Appendix B: Thermophysical Property Data -- Appendix C: Fuel Properties and Combustion Data -- Appendix D: Configuration Factors -- Appendix E: Piping Properties.…”
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Microbiologically Influenced Corrosion An Engineering Insight /
Published 2017Full-text access
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Advanced textile engineering materials /
Published 2018Table of Contents: “…Intro; Title page; Copyright page; Preface; Part 1: Chemical Aspects; Chapter 1: Application of Stimuli-Sensitive Materials in Smart Textiles; 1.1 Introduction; 1.2 Phase Change Materials; 1.3 Shape Memory Materials; 1.4 Chromic Materials; 1.5 Conjugated Polymers; 1.6 Conductive Polymers; 1.7 Piezoelectricity; 1.8 Optical Fibers; 1.9 Hydrogels; 1.10 Smart Textiles and Nanotechnology; 1.11 Future Trends; References; Chapter 2: Functional Finishing of Textile Materials and Its Psychological Aspects; 2.1 Introduction; 2.2 Softeners; 2.3 Oil- and Water-Repellent Finishes; 2.4 Fire Retardants…”
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Modeling and Design of Flexible Pavements and Materials
Published 2018Full-text access
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Mechanics of viscoelastic materials and wave dispersion /
Published 2010Subjects: “…Viscoelastic materials Mechanical properties Mathematical models.…”
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Manufacturing Engineering Select Proceedings of CPIE 2018 /
Published 2019Full-text access
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Applied Mechanics, Behavior of Materials, and Engineering Systems Selected contributions to the 5th Algerian Congress of Mechanics, CAM2015, El-Oued, Algeria, October 25 - 29 /
Published 2017Table of Contents: “…-Mixed Mode Static and Dynamic Modeling in Fracture Mechanics for Plane Composite Materials by X-FEM.…”
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Modelling of Concrete Behaviour at High Temperature State-of-the-Art Report of the RILEM Technical Committee 227-HPB /
Published 2019Table of Contents: “…1 Scope -- 1.1 General comments -- 1.2 Context and objectives -- 2 Introduction -- 2.1 Physical aspects of heated concrete -- 2.2 Modelling -- 2.3 References -- 3 Engineering Modelling -- 3.1 General approach -- 3.2 Eurocode -- 3.3 Thermal analysis -- 3.4 Mechanical analysis -- 3.5 Spalling -- 3.6 Examples of national guidelines -- 3.7 Discussion, limits -- 3.8 References -- 4 Advanced Modelling -- 4.1 Concrete as multiphase porous material -- 4.2 Heat and mass transfer -- 4.3 Key points for modelling cement-based materials at high temperature -- 4.4 Numerical approach -- 4.5 Simplified one-fluid model -- 4.6 Simplified thermo-mechanical approach -- 4.7 Mechanical modelling -- 4.8 References -- 5 Constitutive Parameters -- 5.1 Hygral Parameters -- 5.2 Thermal Parameters -- 5.3 Mechanical Parameters -- 5.4 References -- 6 Conclusion.…”
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