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Parallel-in-Time integration methods...
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Parallel-in-Time Workshop (2020 :)
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Parallel-in-Time integration methods = 9th Parallel-in-Time Workshop, June 8-12, 2020 /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Parallel-in-Time integration methods/ edited by Benjamin Ong ... [et al.].
Reminder of title:
9th Parallel-in-Time Workshop, June 8-12, 2020 /
other author:
Ong, Benjamin.
corporate name:
Parallel-in-Time Workshop
Published:
Cham :Springer International Publishing : : 2021.,
Description:
ix, 127 p. :ill., digital ;24 cm.
[NT 15003449]:
Tight two-level convergence of linear Parareal and MGRIT: Extensions and implications in practice (Southworth et al.) -- A Parallel algorithm for solving linear parabolic evolution equations (van Venetie et al.) -- Using performance analysis tools for a parallel-in-time integrator (Speck et al.) -- Twelve Ways to Fool the Masses When Giving Parallel-In-Time Results (Gotschel et al.) -- IMEX Runge-Kutta Parareal for Non-Diffusive Equations (Buvoli et al.)
Contained By:
Springer Nature eBook
Subject:
Parallel algorithms - Congresses. -
Online resource:
https://doi.org/10.1007/978-3-030-75933-9
ISBN:
9783030759339
Parallel-in-Time integration methods = 9th Parallel-in-Time Workshop, June 8-12, 2020 /
Parallel-in-Time integration methods
9th Parallel-in-Time Workshop, June 8-12, 2020 /[electronic resource] :edited by Benjamin Ong ... [et al.]. - Cham :Springer International Publishing :2021. - ix, 127 p. :ill., digital ;24 cm. - Springer proceedings in mathematics & statistics,v.3562194-1017 ;. - Springer proceedings in mathematics & statistics ;v.356..
Tight two-level convergence of linear Parareal and MGRIT: Extensions and implications in practice (Southworth et al.) -- A Parallel algorithm for solving linear parabolic evolution equations (van Venetie et al.) -- Using performance analysis tools for a parallel-in-time integrator (Speck et al.) -- Twelve Ways to Fool the Masses When Giving Parallel-In-Time Results (Gotschel et al.) -- IMEX Runge-Kutta Parareal for Non-Diffusive Equations (Buvoli et al.)
This volume includes contributions from the 9th Parallel-in-Time (PinT) workshop, an annual gathering devoted to the field of time-parallel methods, aiming to adapt existing computer models to next-generation machines by adding a new dimension of scalability. As the latest supercomputers advance in microprocessing ability, they require new mathematical algorithms in order to fully realize their potential for complex systems. The use of parallel-in-time methods will provide dramatically faster simulations in many important areas, including biomedical (e.g., heart modeling), computational fluid dynamics (e.g., aerodynamics and weather prediction), and machine learning applications. Computational and applied mathematics is crucial to this progress, as it requires advanced methodologies from the theory of partial differential equations in a functional analytic setting, numerical discretization and integration, convergence analyses of iterative methods, and the development and implementation of new parallel algorithms. Therefore, the workshop seeks to bring together an interdisciplinary group of experts across these fields to disseminate cutting-edge research and facilitate discussions on parallel time integration methods.
ISBN: 9783030759339
Standard No.: 10.1007/978-3-030-75933-9doiSubjects--Topical Terms:
878289
Parallel algorithms
--Congresses.
LC Class. No.: QA76.5
Dewey Class. No.: 005.13
Parallel-in-Time integration methods = 9th Parallel-in-Time Workshop, June 8-12, 2020 /
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Tight two-level convergence of linear Parareal and MGRIT: Extensions and implications in practice (Southworth et al.) -- A Parallel algorithm for solving linear parabolic evolution equations (van Venetie et al.) -- Using performance analysis tools for a parallel-in-time integrator (Speck et al.) -- Twelve Ways to Fool the Masses When Giving Parallel-In-Time Results (Gotschel et al.) -- IMEX Runge-Kutta Parareal for Non-Diffusive Equations (Buvoli et al.)
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This volume includes contributions from the 9th Parallel-in-Time (PinT) workshop, an annual gathering devoted to the field of time-parallel methods, aiming to adapt existing computer models to next-generation machines by adding a new dimension of scalability. As the latest supercomputers advance in microprocessing ability, they require new mathematical algorithms in order to fully realize their potential for complex systems. The use of parallel-in-time methods will provide dramatically faster simulations in many important areas, including biomedical (e.g., heart modeling), computational fluid dynamics (e.g., aerodynamics and weather prediction), and machine learning applications. Computational and applied mathematics is crucial to this progress, as it requires advanced methodologies from the theory of partial differential equations in a functional analytic setting, numerical discretization and integration, convergence analyses of iterative methods, and the development and implementation of new parallel algorithms. Therefore, the workshop seeks to bring together an interdisciplinary group of experts across these fields to disseminate cutting-edge research and facilitate discussions on parallel time integration methods.
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based on 0 review(s)
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