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Interfacial flows--the power and beauty of asymptotic methods
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Interfacial flows--the power and beauty of asymptotic methods/ edited by Bernhard Scheichl.
其他作者:
Scheichl, Bernhard.
出版者:
Cham :Springer Nature Switzerland : : 2025.,
面頁冊數:
xi, 238 p. :ill. (some col.), digital ; : 24 cm.;
Contained By:
Springer Nature eBook
標題:
Classical and Continuum Physics. -
電子資源:
https://doi.org/10.1007/978-3-031-78764-5
ISBN:
9783031787645
Interfacial flows--the power and beauty of asymptotic methods
Interfacial flows--the power and beauty of asymptotic methods
[electronic resource] /edited by Bernhard Scheichl. - Cham :Springer Nature Switzerland :2025. - xi, 238 p. :ill. (some col.), digital ;24 cm. - CISM International Centre for Mechanical Sciences, Courses and lectures,v. 6152309-3706 ;. - Courses and lectures ;no. 505..
Introduction Applying Perturbation and Related Methods to Rationally Describe the Teapot Effect Under Capillary and Weak Viscous Action -- Understanding Sloshing as a Complex Asymptotically Reduced Dynamical System -- Thin film Flows Classical Examples, Surfactants, and Viscous Membranes -- Free Surface Singularities From Singular Points to Spatio Temporal Complexity -- Viscoelastic Lubrication Using the Second Order Fluid -- Coating and Rimming Flow, Rivulet Flow and the Evaporation of a Sessile Droplet.
This book presents the state of the art of asymptotic and related mathematical methods, and how to apply them, as the means of choice, to representative building blocks of interfacial-flow phenomena. After an introduction which exemplifies the application of perturbation techniques in describing the well-known teapot effect, chapter 2 covers the status quo of the theory of inviscid sloshing and the associated modal analysis of free-surface waves; and chapter 3 envisages the intersection between dimensional analysis, scaling laws and the reduction of the governing partial differential equations to ordinary ones. The other chapters focus on, respectively, the singularity formation in free surfaces as a self-similar phenomenon in thin-film dynamics, the elastohydrodynamic lubrication by weakly viscoelastic fluids, and the inertia-free film flows under gravity with contact lines. It addresses graduate students and early-career researchers interested in theoretical fluid mechanics and its mathematical foundations, but also experienced scientists, actively employing perturbation analysis for long, who want to broaden their horizon.
ISBN: 9783031787645
Standard No.: 10.1007/978-3-031-78764-5doiSubjects--Topical Terms:
1141497
Classical and Continuum Physics.
LC Class. No.: TA357.5.M84
Dewey Class. No.: 620.1064
Interfacial flows--the power and beauty of asymptotic methods
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Introduction Applying Perturbation and Related Methods to Rationally Describe the Teapot Effect Under Capillary and Weak Viscous Action -- Understanding Sloshing as a Complex Asymptotically Reduced Dynamical System -- Thin film Flows Classical Examples, Surfactants, and Viscous Membranes -- Free Surface Singularities From Singular Points to Spatio Temporal Complexity -- Viscoelastic Lubrication Using the Second Order Fluid -- Coating and Rimming Flow, Rivulet Flow and the Evaporation of a Sessile Droplet.
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This book presents the state of the art of asymptotic and related mathematical methods, and how to apply them, as the means of choice, to representative building blocks of interfacial-flow phenomena. After an introduction which exemplifies the application of perturbation techniques in describing the well-known teapot effect, chapter 2 covers the status quo of the theory of inviscid sloshing and the associated modal analysis of free-surface waves; and chapter 3 envisages the intersection between dimensional analysis, scaling laws and the reduction of the governing partial differential equations to ordinary ones. The other chapters focus on, respectively, the singularity formation in free surfaces as a self-similar phenomenon in thin-film dynamics, the elastohydrodynamic lubrication by weakly viscoelastic fluids, and the inertia-free film flows under gravity with contact lines. It addresses graduate students and early-career researchers interested in theoretical fluid mechanics and its mathematical foundations, but also experienced scientists, actively employing perturbation analysis for long, who want to broaden their horizon.
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