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Computational Multiscale Methods

dc.date.accessioned2025-11-13T12:20:47Z
dc.date.available2025-11-13T12:20:47Z
dc.date.issued2025
dc.identifier.urihttp://publications.mfo.de/handle/mfo/4335
dc.description.abstractMany scientific and engineering problems exhibit complex interactions over a wide range of inseparable scales in space and time. Direct numerical simulations to solve such multiscale problems are often beyond current computational capabilities. The difficulties are exacerbated by the presence of uncertainty, randomness, and disorder and are hardly manageable for multiscale inverse problems. Therefore, the simulation of novel phenomena using multiscale models requires a new generation of multiscale computational methods. These must account for under-resolved scales, cross-scale couplings, and stochasticity in a hierarchical and adaptive manner and be able to integrate probabilistic, data-driven, and machine learning approaches. The workshop enhanced the development of a new generation of efficient multiscale computational methods and their rigorous mathematical and numerical analysis so that reliable and fast simulations of challenging multiscale problems from applications eventually become a reality.
dc.rights.urihttp://creativecommons.org/licenses/by-sa/4.0/*
dc.titleComputational Multiscale Methods
dc.rights.licenseUnless otherwise noted, the content of this report is licensed under Creative Commons Attribution-ShareAlike 4.0 International.*
dc.identifier.doi10.14760/OWR-2025-22
local.series.idOWR-2025-22
local.subject.msc76
local.subject.msc78
local.subject.msc65
local.subject.msc35
local.subject.msc70
local.subject.msc74
local.date-range27 Apr - 02 May 2025
local.workshopcode2518
local.workshoptitleComputational Multiscale Methods
local.organizersBjörn Engquist, Austin; Daniel Peterseim, Augsburg; Barbara Verfürth, Bonn; Yunan Yang, Ithaca
local.report-nameWorkshop Report 2025,22
local.opc-photo-id2518
local.publishers-doi10.4171/OWR/2025/22


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