Muutke küpsiste eelistusi

E-raamat: Nonlinear Structures & Systems, Volume 1: Proceedings of the 40th IMAC, A Conference and Exposition on Structural Dynamics 2022

Edited by , Edited by , Edited by , Edited by
  • Formaat - PDF+DRM
  • Hind: 308,13 €*
  • * hind on lõplik, st. muud allahindlused enam ei rakendu
  • Lisa ostukorvi
  • Lisa soovinimekirja
  • See e-raamat on mõeldud ainult isiklikuks kasutamiseks. E-raamatuid ei saa tagastada.
  • Raamatukogudele

DRM piirangud

  • Kopeerimine (copy/paste):

    ei ole lubatud

  • Printimine:

    ei ole lubatud

  • Kasutamine:

    Digitaalõiguste kaitse (DRM)
    Kirjastus on väljastanud selle e-raamatu krüpteeritud kujul, mis tähendab, et selle lugemiseks peate installeerima spetsiaalse tarkvara. Samuti peate looma endale  Adobe ID Rohkem infot siin. E-raamatut saab lugeda 1 kasutaja ning alla laadida kuni 6'de seadmesse (kõik autoriseeritud sama Adobe ID-ga).

    Vajalik tarkvara
    Mobiilsetes seadmetes (telefon või tahvelarvuti) lugemiseks peate installeerima selle tasuta rakenduse: PocketBook Reader (iOS / Android)

    PC või Mac seadmes lugemiseks peate installima Adobe Digital Editionsi (Seeon tasuta rakendus spetsiaalselt e-raamatute lugemiseks. Seda ei tohi segamini ajada Adober Reader'iga, mis tõenäoliselt on juba teie arvutisse installeeritud )

    Seda e-raamatut ei saa lugeda Amazon Kindle's. 

Nonlinear Structures & Systems, Volume 1: Proceedings of the 40th IMAC, A Conference and Exposition on Structural Dynamics, 2022, the first volume of nine from the Conference brings together contributions to this important area of research and engineering.  The collection presents early findings and case studies on fundamental and applied aspects of Nonlinear Dynamics, including papers on:

  • Experimental Nonlinear Dynamics
  • Jointed Structures: Identification, Mechanics, Dynamics
  • Nonlinear Damping
  • Nonlinear Modeling and Simulation
  • Nonlinear Reduced-Order Modeling
  • Nonlinearity and System Identification 
Chapter
1. Scattering from a Bi-stable Elastica Arm.
Chapter
2. An Investigation of Complex Mode Shapes.
Chapter
3. Investigating the Potential of Electrical Connection Chatter Induced by Structural Dynamics.
Chapter
4. Ensemble of Numerics-Informed Neural Networks with Embedded Hamiltonian Constraints for Modeling Nonlinear Structural Dynamics.
Chapter
5. System Identification of Geometrically Nonlinear Structures Using Reduced-Order Models.
Chapter
6. Indirect Reduced-Order Modelling of Nonconservative Nonlinear Structures.
Chapter
7. Hyper-Reduced Computation of Nonlinear and Distributed Surface Loads on Finite Element Structures based on Stress Trial Vectors.
Chapter
8. Nonlinear Modelling of an F16 Benchmark Measurement.
Chapter
9. Mathematical Model Identification of Self-excited Systems Using Experimental Bifurcation Analysis Data.
Chapter
10. Shape Optimisation for Friction Dampers with Stress Constraint.
Chapter
11. Design of Flap-Nonlinear Energy Sinks for Post-Flutter Mitigation using Data-Driven Forecasting.
Chapter
12. TriboMechaDynamics Challenge 2021: A Multi Harmonic Balance Analysis from Imperial College London.
Chapter
13. Experimental Proof-of-Concept of Contact Pressure Distribution Control in Frictional Interfaces with Piezoelectric Actuators.
Chapter
14. Experimental Observations of Nonlinear Damping of Additively Manufactured Components with Internal Particle Dampers.
Chapter
15. Data-Driven Reduced-Order Model for Turbomachinery Blisks with Friction Nonlinearity.
Chapter
16. Determination of Flutter Speed of 2D Nonlinear Wing by using Describing Function Method and State Space Formulation.
Chapter
17. Application of Geometrically Nonlinear Metamaterial Device for Structural Vibration Mitigation.
Chapter
18. Nonlinear Vibration Analysis of Uniform and Functionally Graded Beams with Spectral Chebyshev Technique and Harmonic Balance Method.
Chapter
19. Experimental Characterization of Superharmonic Resonances Using Phase-Lock Loop and Control-Based Continuation.
Chapter
20. On Modelling Statistically-independent Nonlinear Normal Modes with Gaussian-process NARX Models.
Chapter
21. Non-Linear Kinematic Damping in Phononic Crystals with Inertia Ampflification.
Chapter
22. Mitigation of Nonlinear Structural Vibrations by Duffing Type Oscillators using Real-Time Hybrid Simulation.
Chapter
23. Approximate Bayesian Inference for Piecewise-Linear Stiffness Systems.
Chapter
24. Experimental Model Update for Single Lap Joints.
Chapter
25. Data-Driven Identification of Multiple Local Nonlinear Attachments Installed on a Single Primary Structure.
Chapter
26. Supervised Learning for Abrupt Change Detection in a Driven Eccentric Wheel.
Chapter
27. Bolt-Jointed Structural Modelling by Including Uncertainty in Contact Interface Parameters.
Chapter
28. Parameter Estimation of Jointed Structures using Alternating Frequency-Time Harmonic-Balance.
Chapter
29. A Novel Test Rig for the Validation of Nonlinear FrictionContact Parameters of Turbine Blade Root Joints.
Chapter
30. Data-driven Identification and Modeling of Nonlinear Dynamic Systems with a Deep Learning Approach: Koopman Operators and Nonlinear Normal Modes.
Chapter
31. Data-driven Nonlinear Modal Analysis: A Deep Learning Approach.
Chapter
32. Higher Order Invariant Manifolds Parametrisation of Geometrically Nonlinear Structures Modelled with Large Finite Element Models.
Chapter
33. Application of Black-Box NIXO to Experimental Measurements.
Chapter
34. Reliable Damage Tracking in Nonlinear Systems via Phase Space Warping: A Case Study.
Chapter
35. Nonlinear Modes of Cantilever Beams at Extreme Amplitudes: Numerical Computation and Experiments.
Chapter
36. Stability and Convergence Analysis of the Harmonic Balance Method for a Duffing Oscillator with Freeplay.
Chapter
37. A Physics-based Modeling Approach for the Dynamics of Bolted Joints: Deterministic and Stochastic Perspectives.
Chapter
38. A Review of Critical Parameters Required for Accurate Model Updating of Geometrically Nonlinear Dynamic Systems.
Chapter
39. Magnetic Excitation System for Experimental Nonlinear Vibration Analysis.
Chapter
40. Predicting Nonlinearity in the TMD Benchmark Structure using QSMA and SICE.
Chapter
41. Evolution of the Dynamics of Jointed Structures over pro-longed Testing.
Chapter
42. On the use of Variational Autoencoders for Nonlinear Modal Analysis.
Dr. Matthew Brake, Rice Universiity, USA; Ludovic Renson, Imperial College London, UK; Robert Kuether, Sandia National Laboratories, USA; and Paolo Tiso, ETH Zurich, Switzerland.