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Potential Flows of Viscous and Viscoelastic Liquids

by Daniel Joseph , Toshio Funada , Jing Wang
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Current price ₹13,765.00
Original price ₹13,818.00
Original price ₹13,818.00
Original price ₹13,818.00
(-0%)
₹13,765.00
Current price ₹13,765.00

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Book cover type: Hardcover
  • ISBN13: 9780521873376
  • Binding: Hardcover
  • Subject: N/A
  • Publisher: Cambridge University Press
  • Publisher Imprint: Cambridge University Press
  • Publication Date:
  • Pages: 516
  • Original Price: USD 141.0
  • Language: English
  • Edition: 1
  • Item Weight: 1039 grams
  • BISAC Subject(s): Mechanics / Fluids

The goal of this book is to show how potential flows enter into the general theory of motions of viscous and viscoelastic fluids. Traditionally, the theory of potential flows is thought to apply to idealized fluids without viscosity. Here we show how to apply this theory to real fluids that are viscous. The theory is applied to problems of the motion of bubbles; to the decay of waves on interfaces between fluids; to capillary, Rayleigh-Taylor, and Kelvin-Hemholtz instabilities; to viscous effects in acoustics; to boundary layers on solids at finite Reynolds numbers; to problems of stress-induced cavitation; and to the creation of microstructures in the flow of viscous and viscoelastic liquids.

Funada, Toshio: - Toshio Funada is a professor of Digital Engineering at the Numazu College of Technology in Japan. He has studied at Shinshu University and Osaka University in Japan.

Joseph, Daniel: - Daniel Joseph is a professor of Aerospace Engineering and Mechanics at the University of Minnesota. He is the holder of patents on the wave-speed meter, the spinning rod interfacial tensiometer, and the spinning drop tensiometer, among others. Dr Joseph is the editor of the International Journal of Multiphase Flow and has authored five books and more than 300 articles.

Wang, Jing: - Jing Wang earned his B.S. from Tsinghua University in China in 2000 and his Ph.D. in Aerospace Engineering from the University of Minnesota in 2005. He received the 'Best Dissertation Award' in Physical Sciences and Engineering for 2006 at the University of Minnesota.

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