Advanced problem in mechanics II : proceedings of the XLVIII International Summer School-Conference "Advanced Problems in Mechanics", 2020, St. Petersburg, Russia / D.A. Indeitsev, A.M. Krivtsov, editors.
2022
QA801
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Title
Advanced problem in mechanics II : proceedings of the XLVIII International Summer School-Conference "Advanced Problems in Mechanics", 2020, St. Petersburg, Russia / D.A. Indeitsev, A.M. Krivtsov, editors.
ISBN
9783030921446 (electronic bk.)
3030921441 (electronic bk.)
9783030921439 (print)
3030921433 (print)
3030921441 (electronic bk.)
9783030921439 (print)
3030921433 (print)
Published
Cham, Switzerland : Springer, 2022.
Language
English
Description
1 online resource (1 volume) : illustrations (black and white).
Item Number
10.1007/978-3-030-92144-6 doi
Call Number
QA801
Dewey Decimal Classification
620.105
Summary
This book focuses on original theories and approaches in the field of mechanics. It reports on both theoretical and applied researches, with a special emphasis on problems and solutions at the interfaces of mechanics and other research areas. The respective chapters highlight cutting-edge works fostering development in fields such as micro- and nanomechanics, material science, physics of solid states, molecular physics, astrophysics, and many others. Special attention has been given to outstanding research conducted by young scientists from all over the world. This book is based on the 48th edition of the international conference "Advanced Problems in Mechanics," which was held in 2020, in St. Petersburg, Russia, and co-organized by The Peter the Great St. Petersburg Polytechnic University and the Institute for Problems in Mechanical Engineering of the Russian Academy of Sciences, under the patronage of the Russian Academy of Sciences. It provides researchers and graduate students with an extensive overview of the latest research and a source of inspiration for future developments and collaborations in mechanics and related fields.
Note
Includes author index.
Bibliography, etc. Note
References -- Fluid Mechanics -- Viscoplastic Fluid Flow in a T-shaped Channel Under Given Pressure Boundary Conditions -- 1 Introduction -- 2 Problem Formulation -- 3 Numerical Method and Verification -- 4 Results and Discussion -- 5 Conclusion -- References -- Mathematical Modeling of the Flow of Viscous Incompressible Fluid with Suspended Particles in Flat Inclined Channel -- 1 Introduction -- 2 Numerical Research -- 2.1 Problem Statement -- 2.2 Mathematical Model -- 3 Results -- 4 Conclusion -- References -- Heat Transfer and Wave Motion.
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Lecture notes in mechanical engineering.
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Table of Contents
On the Issue of Analytical Derivation of Stress State in a Cylindrical Shell with a Circular Hole under Axial Tension
Acoustoelastic Effect during Plastic Deformation of Anisotropic Metals
Representative elementary volume via averaged scalar Minkowski functionals.
Acoustoelastic Effect during Plastic Deformation of Anisotropic Metals
Representative elementary volume via averaged scalar Minkowski functionals.