Industrial and Process Furnaces

- Principles, Design and Operation

  • Format
  • Bog, hardback
  • Engelsk

Beskrivelse

Furnaces sit at the core of all branches of manufacture and industry, so it is vital that these are designed and operated safely and effi-ciently. This reference provides all of the furnace theory needed to ensure that this can be executed successfully on an industrial scale. Industrial and Process Furnaces: Principles, 2nd Edition provides comprehensive coverage of all aspects of furnace operation and design, including topics essential for process engineers and operators to better understand furnaces. This includes: the combustion process and its control, furnace fuels, efficiency, burner design and selection, aerodynamics, heat release profiles, furnace atmosphere, safety and emissions. These elements and more are brought together to illustrate how to achieve optimum design and operation, with real-world case studies to showcase their application.

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Detaljer
Størrelse og vægt
  • Vægt1070 g
  • coffee cup img
    10 cm
    book img
    15,2 cm
    22,9 cm

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    Profit Classification Efficiency Turbulence Cost accounting Dioxins Risk factors Energy conversion Safety Pilot plants Capital costs Oil burners Jets Aerodynamics Pollutants Viscosity Emissivity Gas-burners Heat recovery Exergy Stainless steel Financial, Ratios Soot PLC Furans Ash Fuel properties Regenerators Heat transfer Reaction kinetics Fault tree analysis Payback Computational Fluid Dynamics (CFD) Heterogeneous Reactions Physical Modelling Fail-safe Volatile Organic Compounds (VOCs) Mass and Energy Balance Flames SIL Entrainment Discounting Design Constraints Fuel Cost absorptivity Atomisation and pulverisation Burner selection Burning particles Coal-firing system failure Coal-firing system safety Coal-firing system upgrade combustion system scaling CFD modelling combustion chemistry Choice of fuel Capital revenue Castable refractory Cost scaling Dispersion modelling Critical time Coal storage Combustion air distribution Burner modifications Design validation Ceramic fibre Electrical heating Ensuring furnace safety Fuel change Fourier equation Furnace instrumentation Furnace noise Coal feeding Coal fineness Gas valve trains Combustion-driven oscillations Furnace process design Convective heat transfer coefficients Firebrick Fired heater tube failure Fuel changes Furnace definition Furnace sizing Flame detectors Fuel types Furnace applications Furnace construction Furnace efficiency Direct and indirect coal firing systems drivers for improved efficiency Homogeneous reaction emission monitoring Intergranular corrosion Long furnace model Mean beam length Lang factor flame stabilisation flammable limits Flue gas analysis Fuel choice Furnace aerodynamics Furnace materials Mass and Energy Balances Fuel flow measurement New furnace applications Oil valve trains operating costs oil storage HC ratio Function of a burner High-temperature convection Primary secondary and excess air definitions Process function Products of incomplete combustion (PICs) Project costing Process control strategies Pinch point Pulverised coal burners Performance charts Process investigation Grey gases Pulverised coal conveying Safety shut-off Premixed Polyaromatic hydrocarbons (PAHs) In situ sampling Reformer design Similarity Parameters Stoichiometric air requirement Steady-state Conduction Turbulent jet flames Zone model Waste fuels Oil heating and pumping Passive oxide layer Pulverised coal grinding mills Raw coal bunkers Reducing atmospheres Polychlorinated Biphenyls (PCBs) Trends in emission limits Trends in materials View factors Recuperators Waste fuel handling Well-stirred furnace model Two-phase flow models Trends in furnace control

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