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· Explains operation and scientific fundamentals of circulating fluidized bed (CFB) boilers · Outlines practical issues in industrial use · Teaches how to optimize design for maximum reliability and efficiency · Discusses operating and maintenance issues and how to troubleshoot them This book provides practicing engineers and students with insight into the design and operation of circulating fluidized bed boilers through a combination of theoretical concepts and practical instruction. Numerous examples from actual operating plants illustrate key concepts in combustion, hydrodynamics, heat transfer, and materials. The relevance of feed-stock parameters to the operation of CFB boilers is examined, including impacts on the design of mechanical components, such as cyclones, air distributor grids, and solid recycle systems. This versatile resource explains how CFB boilers work, and how the basic principles of thermodynamics and fluid mechanics influence design, while providing advice on planning new projects, troubleshooting existing equipment, and appreciating the capabilities and limitations of the process. From hydrodynamics to construction and maintenance, the author covers all the essential information needed to understand, design, operate, and maintain a complete fluidized bed system. Understanding how to leverage this technology is a must for clean coal operations as well as for biomass power generation.
Energy. --- Renewable and Green Energy. --- Renewable energy sources. --- Energies renouvelables --- Mechanical Engineering --- Engineering & Applied Sciences --- Mechanical Engineering - General --- Steam-boilers. --- Fluidized-bed furnaces. --- Steam generators --- Furnaces, Fluidized-bed --- Renewable energy resources. --- Alternate energy sources. --- Green energy industries. --- Boilers --- Engines --- Pressure vessels --- Fluidization --- Fluidized-bed combustion --- Furnaces --- Alternate energy sources --- Alternative energy sources --- Energy sources, Renewable --- Sustainable energy sources --- Power resources --- Renewable natural resources --- Agriculture and energy
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Thermo-Hydrodynamic Design of Fluidized Bed Combustors: Estimating Metal Wastage is a unique volume that finds that the most sensitive parameters affecting metal wastage are superficial fluidizing velocity, particle diameter, and particle sphericity. Gross consistencies between disparate data sources using different techniques were found when the erosion rates are compared on the same basis using the concept of renormalization. The simplified mechanistic models and correlations, when validated, can be used to renormalize any experimental data so they can be compared on a consistent basis using a master equation.
Fluidized-bed combustion. --- Fluidized-bed furnaces. --- Fossil fuels -- Combustion. --- Fluidized-bed combustion --- Fluidized-bed furnaces --- Metal wastes --- Mechanical Engineering --- Physics --- Engineering & Applied Sciences --- Physical Sciences & Mathematics --- Mechanical Engineering - General --- Thermodynamics --- Metal wastes. --- Metal-containing wastes --- Metallurgical wastes --- Waste metals --- Wastes, Metal --- Wastes, Metallurgical --- Furnaces, Fluidized-bed --- Engineering. --- Thermodynamics. --- Heat engineering. --- Heat transfer. --- Mass transfer. --- Environmental pollution. --- Materials science. --- Engineering Thermodynamics, Heat and Mass Transfer. --- Terrestrial Pollution. --- Characterization and Evaluation of Materials. --- Factory and trade waste --- Fluidization --- Furnaces --- Combustion --- Surfaces (Physics). --- Surface chemistry --- Surfaces (Technology) --- Chemical pollution --- Chemicals --- Contamination of environment --- Environmental pollution --- Pollution --- Contamination (Technology) --- Asbestos abatement --- Bioremediation --- Environmental engineering --- Environmental quality --- Hazardous waste site remediation --- Hazardous wastes --- In situ remediation --- Lead abatement --- Pollutants --- Refuse and refuse disposal --- Construction --- Industrial arts --- Technology --- Environmental aspects --- Heat --- Mechanical engineering --- Chemistry, Physical and theoretical --- Dynamics --- Mechanics --- Heat-engines --- Quantum theory --- Material science --- Physical sciences --- Mass transport (Physics) --- Transport theory --- Heat transfer --- Thermal transfer --- Transmission of heat --- Energy transfer
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