Reprint

Mathematical Modeling and Simulation in Mechanics and Dynamic Systems, 2nd Edition

Edited by
March 2024
224 pages
  • ISBN978-3-7258-0209-8 (Hardback)
  • ISBN978-3-7258-0210-4 (PDF)

This is a Reprint of the Special Issue Mathematical Modeling and Simulation in Mechanics and Dynamic Systems, 2nd Edition that was published in

Computer Science & Mathematics
Engineering
Physical Sciences
Public Health & Healthcare
Summary

Although it is considerably infeasible to make further contributions to the field of mechanics, the spectacular evolution of technology and numerical calculation techniques has played a significant role in the reconsideration of this opinion and in the development of an increasing number of sophisticated models. In turn, the outcomes of these state-of-the-art methodologies have surprised scholars due to the phenomena that occur in dynamic systems. Hence, researchers began studying mechanical systems with complicated behaviors, which can be observed by carrying out experiments and using computer models.

The impetus in mechanics and dynamical systems has come from many sources: computer simulation, experimental science, mathematics, and modeling. Moreover, the key requirement for a successful observation is a nonlinearity, which the system must involve. However, it is vital to acknowledge that there is a wide range of influences that affect these systems, and computer experiments change the way in which we analyze them.

Thus, this Special Issue includes topics such as modeling mechanical systems, new methods in dynamic systems, behavior simulations of mechanical systems, nonlinear systems, multibody systems with elastic elements, multi-degrees of freedom, mechanical systems, experimental modal analysis, and mechanics of materials.

Format
  • Hardback
License and Copyright
© 2022 by the authors; CC BY-NC-ND license
Keywords
Maggi’s equations; Lagrange method; Gibbs–Appell equations; Hamilton formalism; analytical mechanics; modelling; fault detection; cavitation damage; discharge pressure; axial piston pump; Sutterby nanofluid; Riga plate; entropy analysis; bioconvection; microorganisms; HAM; Lie symmetries; invariants; fourth-order Schrödinger equation; anisotropic porous media; ADINA system; a priori estimate error; Brinkman equation; mini-element; stability; vibration; friction; effective friction coefficient; negative gradient; dust dispersion; driven dog heading; CFD model; underground mining; dynamic absorber; multi degree of freedom; vibration; mechanical system; Burgers’ fluids; isothermal MHD motions; porous medium; steady-state solutions; steady or permanent state; screw theory; geometric algebra; Hamilton’s equations; sliding mode control; Lyapunov theory; experimentally obtained temperature distribution law; relative temperature curves; m parameter’s variation laws; 2D steel structural elements; testing bench; reduced-scale models; a posteriori error estimation; FEM; Laplacian operator; quasi-Newtonian flows problem; T-S fuzzy model; time-varying delay; singular systems; sensor fault; FE; FTC; n/a

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