Recent Developments in Anisotropic Heterogeneous Shell Theory (eBook)

Applications of Refined and Three-dimensional Theory-Volume IIA
eBook Download: PDF
2016 | 1st ed. 2016
VII, 42 Seiten
Springer Singapore (Verlag)
978-981-10-0645-6 (ISBN)

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Recent Developments in Anisotropic Heterogeneous Shell Theory -  Alexander Ya. Grigorenko,  Yaroslav M. Grigorenko,  Wolfgang H. Muller,  Georgii G. Vlaikov
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This brief book presents solutions of stress-strain problems for a wide class of anisotropic inhomogeneous shells obtained by the refined model. Studying these problems results in severe computational difficulties due to partial differential equations with variable coefficients resulting from the constitutive relations of the original model. To solve this problem the book uses spline-collocation and discrete-orthogonalization methods. It analyses the influence of geometrical and mechanical parameters, of various kinds of boundary conditions, and of the loading conditions on the distributions of stress and displacement fields in shallow, spherical, conical, and noncircular cylindrical shells. The dependence of the stress-strain pattern on shell thickness variations is studied. The authors solve the problem also for the case of the thickness varying in two directions. They study how a variation in shell thickness influences the stress-strain state and consider noncircular cylindrical shells with elliptical and corrugated sections are considered. The results obtained during numerous calculations support the efficiency of the discrete-orthogonalization approach proposed in the monograph for solving static problems for anisotropic inhomogeneous shells when using the refined model.


This brief book presents solutions of stress-strain problems for a wide class of anisotropic inhomogeneous shells obtained by the refined model. Studying these problems results in severe computational difficulties due to partial differential equations with variable coefficients resulting from the constitutive relations of the original model. To solve this problem the book uses spline-collocation and discrete-orthogonalization methods. It analyses the influence of geometrical and mechanical parameters, of various kinds of boundary conditions, and of the loading conditions on the distributions of stress and displacement fields in shallow, spherical, conical, and noncircular cylindrical shells. The dependence of the stress-strain pattern on shell thickness variations is studied. The authors solve the problem also for the case of the thickness varying in two directions. They study how a variation in shell thickness influences the stress-strain state and consider noncircular cylindrical shells with elliptical and corrugated sections are considered. The results obtained during numerous calculations support the efficiency of the discrete-orthogonalization approach proposed in the monograph for solving static problems for anisotropic inhomogeneous shells when using the refined model.

Solutions of static problems based on the refined model.- Solutions of dynamic problems based on the refined model.- Some solutions stationary problems based on 3-D theory.- Conclusions.

Erscheint lt. Verlag 2.6.2016
Reihe/Serie SpringerBriefs in Applied Sciences and Technology
SpringerBriefs in Applied Sciences and Technology
SpringerBriefs in Continuum Mechanics
SpringerBriefs in Continuum Mechanics
SpringerBriefs in Continuum Mechanics
Zusatzinfo VII, 42 p. 10 illus.
Verlagsort Singapore
Sprache englisch
Themenwelt Mathematik / Informatik Informatik Theorie / Studium
Mathematik / Informatik Mathematik Angewandte Mathematik
Mathematik / Informatik Mathematik Statistik
Mathematik / Informatik Mathematik Wahrscheinlichkeit / Kombinatorik
Technik Maschinenbau
Schlagworte 3D Elasticity Theory • Anisotropy • Conical Shells • Cylindrical Shells • Finite-Length Cylinders • Free Vibrations of Shells • Functionally Graded Shells • Noncircular Cylindrical Shells • Nonhomogeneity • Refined Shell Theory • Shallow Shells • Spherical Shells • Stress-strain State
ISBN-10 981-10-0645-8 / 9811006458
ISBN-13 978-981-10-0645-6 / 9789811006456
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