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Coal Combustion and Gasification (Paperback, Softcover reprint of the original 1st ed. 1985): L.Douglas Smoot, Philip J. Smith Coal Combustion and Gasification (Paperback, Softcover reprint of the original 1st ed. 1985)
L.Douglas Smoot, Philip J. Smith
R8,604 Discovery Miles 86 040 Ships in 10 - 15 working days

The use of coal is required to help satisfy the world's energy needs. Yet coal is a difficult fossil fuel to consume efficiently and cleanly. We believe that its clean and efficient use can be increased through improved technology based on a thorough understanding of fundamental physical and chemical processes that occur during consumption. The principal objective of this book is to provide a current summary of this technology. The past technology for describing and analyzing coal furnaces and combus tors has relied largely on empirical inputs for the complex flow and chemical reactions that occur while more formally treating the heat-transfer effects. GrOWing concern over control of combustion-generated air pollutants revealed a lack of understanding of the relevant fundamental physical and chemical mechanisms. Recent technical advances in computer speed and storage capacity, and in numerical prediction of recirculating turbulent flows, two-phase flows, and flows with chemical reaction have opened new opportunities for describing and modeling such complex combustion systems in greater detail. We believe that most of the requisite component models to permit a more fundamental description of coal combustion processes are available. At the same time there is worldwide interest in the use of coal, and progress in modeling of coal reaction processes has been steady."

The Structure and Reaction Processes of Coal (Paperback, Softcover reprint of the original 1st ed. 1994): K.Lee Smith,... The Structure and Reaction Processes of Coal (Paperback, Softcover reprint of the original 1st ed. 1994)
K.Lee Smith, L.Douglas Smoot, Thomas H. Fletcher, Ronald J. Pugmire
R4,546 Discovery Miles 45 460 Ships in 10 - 15 working days

Founded on the work of the renowned Advanced Combustion Engineering Research Center, the authors document and integrate current knowledge of the organic and inorganic structure of coal and its reaction processes. With the urgent need for cleaner, more efficient use of this worldwide fuel, their work will set a clear course for future research.

The Structure and Reaction Processes of Coal (Hardcover, 1994 ed.): K.Lee Smith, L.Douglas Smoot, Thomas H. Fletcher, Ronald J.... The Structure and Reaction Processes of Coal (Hardcover, 1994 ed.)
K.Lee Smith, L.Douglas Smoot, Thomas H. Fletcher, Ronald J. Pugmire
R4,575 Discovery Miles 45 750 Ships in 10 - 15 working days

Founded on the work of the renowned Advanced Combustion Engineering Research Center, the authors document and integrate current knowledge of the organic and inorganic structure of coal and its reaction processes. With the urgent need for cleaner, more efficient use of this worldwide fuel, their work will set a clear course for future research.

Coal Combustion and Gasification (Hardcover, 1985 ed.): L.Douglas Smoot, Philip J. Smith Coal Combustion and Gasification (Hardcover, 1985 ed.)
L.Douglas Smoot, Philip J. Smith
R8,848 Discovery Miles 88 480 Ships in 10 - 15 working days

The use of coal is required to help satisfy the world's energy needs. Yet coal is a difficult fossil fuel to consume efficiently and cleanly. We believe that its clean and efficient use can be increased through improved technology based on a thorough understanding of fundamental physical and chemical processes that occur during consumption. The principal objective of this book is to provide a current summary of this technology. The past technology for describing and analyzing coal furnaces and combus tors has relied largely on empirical inputs for the complex flow and chemical reactions that occur while more formally treating the heat-transfer effects. GrOWing concern over control of combustion-generated air pollutants revealed a lack of understanding of the relevant fundamental physical and chemical mechanisms. Recent technical advances in computer speed and storage capacity, and in numerical prediction of recirculating turbulent flows, two-phase flows, and flows with chemical reaction have opened new opportunities for describing and modeling such complex combustion systems in greater detail. We believe that most of the requisite component models to permit a more fundamental description of coal combustion processes are available. At the same time there is worldwide interest in the use of coal, and progress in modeling of coal reaction processes has been steady."

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