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1

Boundary-layer theory. 8th ed. Springer, 2000.

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2

Schlichting, Herrmann, and Klaus Gersten. Boundary-Layer Theory. Springer Berlin Heidelberg, 2000. http://dx.doi.org/10.1007/978-3-642-85829-1.

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3

Schlichting, Hermann, and Klaus Gersten. Boundary-Layer Theory. Springer Berlin Heidelberg, 2017. http://dx.doi.org/10.1007/978-3-662-52919-5.

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4

N, Samokhin V., ed. Mathematical models in boundary layer theory. Chapman & Hall, 1999.

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5

Kluwick, Alfred, ed. Recent Advances in Boundary Layer Theory. Springer Vienna, 1998. http://dx.doi.org/10.1007/978-3-7091-2518-2.

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6

Sobey, I. J. Introduction to interactive boundary layer theory. Oxford University Press, 2000.

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7

Goldstein, M. E. The effect of small streamwise velocity distortion on the boundary layer flow over a thin flat plate with application to boundary layer stability theory. Lewis Research Center, 1990.

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8

Theory of laminar film condensation. Springer-Verlag, 1991.

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9

Tchen, C. M. Group-kinetic theory of turbulence. Marshall Space Flight Center, 1986.

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10

NATO Advanced Research Workshop "Atmospheric Boundary Layers: Modelling and Applications to Environmental Security" (2006 Dubrovnik, Croatia). Atmospheric boundary layers: Nature, theory, and application to environmental modelling and security. Edited by Baklanov Alexander and Grisogono B. Springer Science+Business Media, 2007.

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11

Dommelen, Leon Van. On the Lagrangian description of unsteady boundary layer separation.: I - General theory. Institute for Computational Mechanics in Propulsion, 1989.

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12

Haw, Richard C. The effects of forcing on a single stream shear layer and its parent boundary layer. College of Engineering, Michigan State University, 1990.

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13

Zondag, H. A. The dynamics of hairpin vortices in a laminar boundary layer theory. University of Eindhoven, 1997.

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14

Johnston, L. J. A calculation method for compressible three dimensional turbulent boundary layer flows. von Karman Institute for Fluid Dynamics, 1988.

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15

Mankbadi, R. R. Transition, turbulence, and noise: Theory and applications for scientists and engineers. Kluwer Academic Publishers, 1994.

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16

International Conference on Boundary and Interior Layers (5th 1988 Shanghai, China). BAIL V: Proceedings of the fifth International Conference on Boundary and Interior Layers : computational and asymptotic methods : 20-24 June, 1988, Shanghai, China. Boole, 1988.

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17

International Conference on Boundary and Interior Layers (4th 1986 Novosibirsk, R.S.F.S.R.). BAIL IV: Proceedings of the Fourth International Conference on Boundary and Interior Layers, Computational and Asymptotic Methods, 7-11 July, 1986, Novosibirsk, USSR. Boole Press, 1986.

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18

Akademii͡a︡ nauk SSSR. Sibirskoe otdelenie., ed. The Fourth International Conference on Boundary and Interior Layers: Computational and asymptotic methods : abstracts. USSR Academy of Sciences, Siberian Branch, 1986.

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19

Goldstein, Marvin E. The effect of small streamwise velocity distortion on the boundary layer flow over a thin flat plate with application to boundary layer stability theory. National Aeronautics and Space Administration, 1991.

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20

Hamilton, H. Harris. Finite-difference solution for laminar or turbulent boundary layer flow over axisymmetric bodies with ideal gas, CF4, or equilibrium air chemistry. Langley Research Center, 1992.

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21

NATO Advanced Research Workshop "Atmospheric Boundary Layers - Modelling and Applications to Environmental Security" (2006 Dubrovnik, Croatia). Atmospheric boundary layers: Nature, theory and applications to environmental modelling and security. Edited by Baklanov Alexander, Grisogono B. (Branko), and Zilitinkevich, S. S. (Sergei Sergeevich), 1936-. Springer, 2011.

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22

Krstić, Miroslav. Boundary control of PDEs: A course on backstepping designs. Society for Industrial and Applied Mathematics, 2008.

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23

Hyeonbae, Kang, and Lee Hyundae 1976-, eds. Layer potential techniques in spectral analysis. American Mathematical Society, 2009.

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24

Fujii, Tetsu. Theory of Laminar Film Condensation. Springer New York, 1991.

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25

F, Hegarty Alan, ed. BAIL 2008 - boundary and interior layers: Proceedings of the International Conference on Boundary and Interior Layers - Computational and Asymptotic Methods, Limerick, July 2008. Springer, 2009.

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26

Luis, Gracia José, Lisbona Francisco J, and SpringerLink (Online service), eds. BAIL 2010 - Boundary and Interior Layers, Computational and Asymptotic Methods. Springer-Verlag Berlin Heidelberg, 2011.

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27

Siegel, Robert. Transient heat transfer in a semitransparent radiating layer with boundary convection and surface reflections. National Aeronautics and Space Administration, 1996.

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28

Kaur, Inderjeet. Fundamentals of grain and interphase boundary diffusion. 2nd ed. Max-Planck-Institut für Metallforschung and Institut für Metallkunde, 1989.

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29

Kaur, Inderjeet. Fundamentals of grain and interphase boundary diffusion. 3rd ed. John Wiley, 1995.

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30

Menter, Florian. Numerische Untersuchung des reibungsbehafteten Stromungsfeldes um ein Rotationsellipsoid. DFVLR, 1989.

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31

Conley, J. M. A modified mixing length turbulence model for zero and adverse pressure gradients. National Aeronautics and Space Administration, 1994.

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32

Manfrida, Roberto, and Daniele Contini, eds. Proceedings of Physmod 2003 International Workshop on Physical Modelling of Flow and Dispersion Phenomena. Firenze University Press, 2003. http://dx.doi.org/10.36253/88-8453-095-4.

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The various articles which make up this book concern both modelling (numerical and analytical) and experimental activities in relation to aspects of environmental fluid dynamics. Issues dealt with include the dispersion of pollutants in both urban and extra-urban areas, the effect of obstacles on the flow and dispersion in the turbulent boundary layer, and the simulation of the planetary boundary layer in proximity with the earth's surface. There is also a discussion of advanced issues which are also of interest in the sphere of urban planning, such as "wind comfort" and the effects of the shelter belt.
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33

Gersten, Klaus, and Hermann Schlichting (Deceased). Boundary-Layer Theory. Springer, 2018.

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34

Boundary Layer Theory. Springer (India) Private Limited, 2004.

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35

Gersten, Klaus, and Herrmann Schlichting. Boundary-Layer Theory. 8th ed. Springer, 2004.

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36

Ruban, Anatoly I. Classical Boundary-Layer Theory. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780199681754.003.0002.

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Chapter 1 discusses the flows that can be described in the framework of Prandtl’s 1904 classical boundary-layer theory, including the Blasius boundary layer on a flat plate and the Falkner–Skan solutions for the boundary layer on a wedge surface. It presents Schlichting’s solution for the laminar jet and Tollmien’s solution for the viscous wake. These are followed by analysis of Chapman’s shear layer performed with the help of Prandtl’s transposition theorem. It also considers the boundary layer on the surface of a fast rotating cylinder with the purpose of linking the circulation around the cylinder with the speed of its rotation. It concludes discussion of the classical boundary-layer theory with analysis of compressible boundary layers, including the interactive boundary layers in hypersonic flows.
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37

A, Kluwick, and Schneider, Wilhelm, Dipl.-Ing. Dr. techn., eds. Recent advances in boundary layer theory. Springer, 1998.

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38

Kluwick, Alfred. Recent Advances in Boundary Layer Theory. Springer, 1998.

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39

Ruban, Anatoly I. Boundary-Layer Separation. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780199681754.003.0003.

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Chapter 2 discusses the experimental observations of the boundary-layer separation in subsonic and supersonic flows that lead to a formulation of the concept of viscous-inviscid interaction. It then turns to the so-called ‘self-induced separation’ of the boundary layer in supersonic flows. This theory is formulated based on the asymptotic analysis of the Navier–Stokes equations at large values of the Reynolds number. As a part of the flow analysis, this chapter also introduces the ‘triple-deck model’. It then shows how this model may be used to describe the classical problem of the boundary-layer separation in an incompressible fluid flow past a circular cylinder.
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40

Ramachandra Prasad, Vallampati, ed. Boundary Layer Flows - Theory, Applications and Numerical Methods. IntechOpen, 2020. http://dx.doi.org/10.5772/intechopen.78474.

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41

J, Holmes Bruce, and United States. National Aeronautics and Space Administration. Scientific and Technical Information Branch., eds. Flight-measured laminar boundary-layer transition phenomena including stability theory analysis. National Aeronautics and Space Administration, Scientific and Technical Information Branch, 1985.

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42

Flight-measured laminar boundary-layer transition phenomena including stability theory analysis. National Aeronautics and Space Administration, Scientific and Technical Information Branch, 1985.

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43

Flight-measured laminar boundary-layer transition phenomena including stability theory analysis. National Aeronautics and Space Administration, Scientific and Technical Information Branch, 1985.

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44

The effect of small streamwise velocity distortion on the boundary layer flow over a thin flat plate with application to boundary layer stability theory. National Aeronautics and Space Administration, 1991.

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45

Mankbadi, Reda R. Transition, Turbulence, and Noise: Theory and Applications for Scientists and Engineers. Springer, 2011.

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46

Small Viscosity and Boundary Layer Methods: Theory, Stability Analysis, and Applications. Birkhäuser, 2012.

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47

Mankbadi, Reda R. Transition, Turbulence, and Noise: Theory And Applications For Scientists And Engineers. Springer, 2014.

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48

Experiments to verify nonparallel stability theory at Virginia Polytechnic Institute and State University, Blacksburg, Virginia: Final report. Dept. of Mechanical and Aerospace Engineering, Arizona State University, 1988.

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49

United States. National Aeronautics and Space Administration. Scientific and Technical Information Branch. and George C. Marshall Space Flight Center., eds. Group-kinetic theory of turbulence. National Aeronautics and Space Administration, Scientific and Technical Information Branch, 1986.

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50

United States. National Aeronautics and Space Administration. Scientific and Technical Information Branch. and George C. Marshall Space Flight Center., eds. Group-kinetic theory of turbulence. National Aeronautics and Space Administration, Scientific and Technical Information Branch, 1986.

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