Analysis of a space-time phase-field fracture complementarity model and its optimal control formulation

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Autoren

  • Denis Khimin
  • Johannes Lankeit
  • Marc C. Steinbach
  • Thomas Wick

Organisationseinheiten

Externe Organisationen

  • Universität Paris-Saclay
Forschungs-netzwerk anzeigen

Details

OriginalspracheEnglisch
Seiten (von - bis)6192-6212
Seitenumfang21
FachzeitschriftSIAM Journal on Mathematical Analysis
Jahrgang56
Ausgabenummer5
Frühes Online-Datum5 Sept. 2024
PublikationsstatusVeröffentlicht - Okt. 2024

Abstract

The purpose of this work is the formulation of optimality conditions for phase-field optimal control problems. The forward problem is first stated as an abstract nonlinear optimization problem, and then the necessary optimality conditions are derived. The sufficient optimality conditions are also examined. The choice of suitable function spaces to ensure the regularity of the nonlinear optimization problem is a true challenge here. Afterwards the optimal control problem with a tracking type cost functional is formulated. The constraints are given by the previously derived first order optimality conditions of the forward problem. Herein regularity is proven under certain conditions and first order optimality conditions are formulated.

ASJC Scopus Sachgebiete

Zitieren

Analysis of a space-time phase-field fracture complementarity model and its optimal control formulation. / Khimin, Denis; Lankeit, Johannes; Steinbach, Marc C. et al.
in: SIAM Journal on Mathematical Analysis, Jahrgang 56, Nr. 5, 10.2024, S. 6192-6212.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Khimin D, Lankeit J, Steinbach MC, Wick T. Analysis of a space-time phase-field fracture complementarity model and its optimal control formulation. SIAM Journal on Mathematical Analysis. 2024 Okt;56(5):6192-6212. Epub 2024 Sep 5. doi: 10.48550/arXiv.2310.03168, 10.1137/23M1605314
Khimin, Denis ; Lankeit, Johannes ; Steinbach, Marc C. et al. / Analysis of a space-time phase-field fracture complementarity model and its optimal control formulation. in: SIAM Journal on Mathematical Analysis. 2024 ; Jahrgang 56, Nr. 5. S. 6192-6212.
Download
@article{5528f9a2a9b242a1a9bbc8ee9e5169a8,
title = "Analysis of a space-time phase-field fracture complementarity model and its optimal control formulation",
abstract = "The purpose of this work is the formulation of optimality conditions for phase-field optimal control problems. The forward problem is first stated as an abstract nonlinear optimization problem, and then the necessary optimality conditions are derived. The sufficient optimality conditions are also examined. The choice of suitable function spaces to ensure the regularity of the nonlinear optimization problem is a true challenge here. Afterwards the optimal control problem with a tracking type cost functional is formulated. The constraints are given by the previously derived first order optimality conditions of the forward problem. Herein regularity is proven under certain conditions and first order optimality conditions are formulated.",
keywords = "complementarity system, necessary optimality conditions, optimal control, phase-field fracture propagation",
author = "Denis Khimin and Johannes Lankeit and Steinbach, {Marc C.} and Thomas Wick",
note = "Publisher Copyright: Copyright {\textcopyright} by SIAM.",
year = "2024",
month = oct,
doi = "10.48550/arXiv.2310.03168",
language = "English",
volume = "56",
pages = "6192--6212",
journal = "SIAM Journal on Mathematical Analysis",
issn = "0036-1410",
publisher = "Society for Industrial and Applied Mathematics Publications",
number = "5",

}

Download

TY - JOUR

T1 - Analysis of a space-time phase-field fracture complementarity model and its optimal control formulation

AU - Khimin, Denis

AU - Lankeit, Johannes

AU - Steinbach, Marc C.

AU - Wick, Thomas

N1 - Publisher Copyright: Copyright © by SIAM.

PY - 2024/10

Y1 - 2024/10

N2 - The purpose of this work is the formulation of optimality conditions for phase-field optimal control problems. The forward problem is first stated as an abstract nonlinear optimization problem, and then the necessary optimality conditions are derived. The sufficient optimality conditions are also examined. The choice of suitable function spaces to ensure the regularity of the nonlinear optimization problem is a true challenge here. Afterwards the optimal control problem with a tracking type cost functional is formulated. The constraints are given by the previously derived first order optimality conditions of the forward problem. Herein regularity is proven under certain conditions and first order optimality conditions are formulated.

AB - The purpose of this work is the formulation of optimality conditions for phase-field optimal control problems. The forward problem is first stated as an abstract nonlinear optimization problem, and then the necessary optimality conditions are derived. The sufficient optimality conditions are also examined. The choice of suitable function spaces to ensure the regularity of the nonlinear optimization problem is a true challenge here. Afterwards the optimal control problem with a tracking type cost functional is formulated. The constraints are given by the previously derived first order optimality conditions of the forward problem. Herein regularity is proven under certain conditions and first order optimality conditions are formulated.

KW - complementarity system

KW - necessary optimality conditions

KW - optimal control

KW - phase-field fracture propagation

UR - http://www.scopus.com/inward/record.url?scp=85203860312&partnerID=8YFLogxK

U2 - 10.48550/arXiv.2310.03168

DO - 10.48550/arXiv.2310.03168

M3 - Article

VL - 56

SP - 6192

EP - 6212

JO - SIAM Journal on Mathematical Analysis

JF - SIAM Journal on Mathematical Analysis

SN - 0036-1410

IS - 5

ER -