Theory And Calculation Of Heat Transfer In Furnaces by Yanguo ZhangTheory And Calculation Of Heat Transfer In Furnaces by Yanguo Zhang

Theory And Calculation Of Heat Transfer In Furnaces

byYanguo Zhang, Qinghai Li

Hardcover | April 7, 2016

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Theory and Calculation of Heat Transfer in Furnacescovers the heat transfer process in furnaces, how it is related to energy exchange, the characteristics of efficiency, and the cleaning of combustion, providing readers with a comprehensive understanding of the simultaneous physical and chemical processes that occur in boiler combustion, flow, heat transfer, and mass transfer.

  • Covers all the typical boilers with most fuels, as well as the effects of ash deposition and slagging on heat transfer
  • Combines mature and advanced technologies that are easy to understand and apply
  • Describes basic theory with real design that is based on meaningful experimental data
He has experience both in teaching and industry application in the field of combustion engineering for more than 15 years. His researching fields include:1. Municipal Solid Waste (MSW) Incineration and its pollution control.2. Biomass combustion and generate electricity power.3. Wood coal pyrolysis and gasification.4. Waste Heat Recove...
Title:Theory And Calculation Of Heat Transfer In FurnacesFormat:HardcoverDimensions:350 pages, 9.41 × 7.24 × 0.98 inPublished:April 7, 2016Publisher:Academic PressLanguage:English

The following ISBNs are associated with this title:

ISBN - 10:0128009667

ISBN - 13:9780128009666


Table of Contents

Symbols 1 Theoretical foundation and basic properties of thermal radiation 2 Emission and absorption of thermal radiation 3 Radiation heat exchange between isothermal surfaces 4 Heat transfer in fluidized bed 5 Heat transfer calculation in furnaces 6 Effects of ash deposition and slagging on heat transfer 7 Measuring heat transfer in the furnaceAppendices: A. Common physical constants of heat radiation B. Common configuration factor calculation formulas C. Example of thermal calculation of 113.89kg/s (410t/h) high parameter coal-fired boiler D. Supplementary materials References