Dòng Nội dung
1
Engineering flow and heat exchange /Octave Levenspiel.
New York : Springer, 2014
409 p. : illustrations
Ký hiệu phân loại (DDC): 620.1064
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2
Engineering thermodynamics with Heat transfer /William L. Haberman, james E. A. John
Boston :Allyn and Bacon series in engineering,1980
705 p. ;21 cm.
Ký hiệu phân loại (DDC): 621.402
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3
Fundamentals of heat and mass transfer / Theodore L. Bergman ...[et al]
Hoboken, NJ : Wiley, 2011
xxiii, 1048 pages. : illustrations ; 26 cm.
Ký hiệu phân loại (DDC): 621.4
Fundamentals of Heat and Mass Transfer, 7th Edition is the gold standard of heat transfer pedagogy for more than 30 years, with a commitment to continuous improvement by four authors having more than 150 years of combined experience in heat transfer education, research and practice. Using a rigorous and systematic problem-solving methodology pioneered by this text, it is abundantly filled with examples and problems that reveal the richness and beauty of the discipline. This edition maintains its foundation in the four central learning objectives for students and also makes heat and mass transfer more approachable with an additional emphasis on the fundamental concepts, as well as highlighting the relevance of those ideas with exciting applications to the most critical issues of today and the coming decades: energy and the environment. An updated version of Interactive Heat Transfer (IHT) software makes it even easier to efficiently and accurately solve problems.
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4
Fundamentals of momentum, heat and mass transfer /James R. Welty
Hoboken, NJ :Wiley,[2015]
x, 758 pages :illustrations ;26 cm
Ký hiệu phân loại (DDC): 620.106
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5
Fundamentals of momentum, heat, and mass transfer / James R Welty; Gregory L Rorrer; David G Foster
Hoboken, NJ : John Wiley & Sons, Inc., 2019
x, 583, P-118, A-54, I-5 pages. : illustrations ; 26 cm.
Ký hiệu phân loại (DDC): 620.1
"Momentum transfer in a fluid involves the study of the motion of fluids and the forces that produce these motions. From Newton's second law of motion it is known that force is directly related to the time rate of change of momentum of a system. Excluding action-at-a-distance forces, such as gravity, the forces acting on a fuid, such as those resulting from pressure and shear stress, may be shown to be the result of microscopic (molecular) transfer of momentum. Thus, the subject under consideration, which is historically fluid mechanics, may equally be termed momentum transfer. The history of fluid mechanics shows the skillful blending of the nineteenth- and twentieth-century analytical work in hydrodynamics with the empirical knowledge in hydraulics that man has collected over the ages. The mating of these separately developed disciplines was started by Ludwig Prandtl in 1904 with his boundary-layer theory, which was verifed by experiment. Modern fluid mechanics, or momentum transfer, is both analytical and experimental"
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