Erdogan Madenci Atila Barut Mehmet Dorduncu Madenci Peridynamic Differential Operator for Numerical Analysis

Peridynamic Differential Operator for Numerical Analysis

von Erdogan Madenci Atila Barut Mehmet Dorduncu

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Beschreibung

This book introduces the peridynamic (PD) differential operator, which enables the nonlocal form of local differentiation.  PD is a bridge between differentiation and integration.  It provides the computational solution of complex field equations and evaluation of derivatives of smooth or scattered data in the presence of discontinuities.  PD also serves as a natural filter to smooth noisy data and to recover missing data.

This book starts with an overview of the PD concept, the derivation of the PD differential operator, its numerical implementation for the spatial and temporal derivatives, and the description of sources of error.  The applications concern interpolation, regression, and smoothing of data, solutions to nonlinear ordinary differential equations, single- and multi-field partial differential equations and integro-differential equations.  It describes the derivation of the weak form of PD Poisson’s and Navier’s equationsfor direct imposition of essential and natural boundary conditions.  It also presents an alternative approach for the PD differential operator based on the least squares minimization.

Peridynamic  Differential Operator for Numerical Analysis is suitable for both advanced-level student and researchers, demonstrating how to construct solutions to all of the applications.  Provided as supplementary material, solution algorithms for a set of selected applications are available for more details in the numerical implementation.



This book introduces the peridynamic (PD) differential operator, which enables the nonlocal form of local differentiation.  PD is a bridge between differentiation and integration.  It provides the computational solution of complex field equations and evaluation of derivatives of smooth or scattered data in the presence of discontinuities.  PD also serves as a natural filter to smooth noisy data and to recover missing data.

This book starts with an overview of the PD concept, the derivation of the PD differential operator, its numerical implementation for the spatial and temporal derivatives, and the description of sources of error.  The applications concern interpolation, regression, and smoothing of data, solutions to nonlinear ordinary differential equations, single- and multi-field partial differential equations and integro-differential equations.  It describes the derivation of the weak form of PD Poisson’s and Navier’s equations for direct imposition of essential and natural boundary conditions.  It also presents an alternative approach for the PD differential operator based on the least squares minimization.

Peridynamic  Differential Operator for Numerical Analysis is suitable for both advanced-level student and researchers, demonstrating how to construct solutions to all of the applications.  Provided as supplementary material, solution algorithms for a set of selected applications are available for more details in the numerical implementation.


Introduces a new computational method to advance the analysis of discrete data and the solutions to field equations of many physical phenomena Provides access to sample algorithms for researchers and student to self-study and discover their own solutions to problems Offers a comprehensive introduction to this emerging method suitable for graduate courses

Autor*in

Erdogan Madenci

Themen in »Peridynamic Differential Operator for Numerical Analysis«

Peridynamic Differentiation nonlocal transient nonlinear discrete data recovery ordinary differential equations partial integral equations multi-field equations Integro-differential equations Coupled multi-field equations

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Details

ISBN: 9783030026462
Verlag: Springer International Publishing
Erscheinung: 04.03.2019

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