Results 1 to 10 of about 250 (167)
Embedded Trefftz discontinuous Galerkin methods
Abstract In Trefftz discontinuous Galerkin methods a partial differential equation is discretized using discontinuous shape functions that are chosen to be elementwise in the kernel of the corresponding differential operator. We propose a new variant, the embedded Trefftz discontinuous Galerkin method, which is the Galerkin projection of an underlying ...
Christoph Lehrenfeld, Paul Stocker
wiley +5 more sources
Trefftz Method of Solving a 1D Coupled Thermoelasticity Problem for One- and Two-Layered Media
This paper discusses a 1D one-dimensional mathematical model for the thermoelasticity problem in a two-layer plate. Basic equations in dimensionless form contain both temperature and displacement.
Artur Maciąg, Krzysztof Grysa
doaj +3 more sources
Nobody likes to sleep alone: aspiring to kinship futures in post‐Soviet Cuba
Abstract In post‐Soviet Cuba, instead of the political future envisioned by Revolutionary authorities, poor residents of Havana aspire to create kinship futures where there is no need to ‘sleep alone’. Here, the idea of ‘sleeping together’ represents a trustworthy social bond that shelters a person from loneliness over time. For these habaneros, sexual
Heidi Härkönen
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Summary A general technique to develop arbitrary‐sided polygonal elements based on the scaled boundary finite element method is presented. Shape functions are derived from the solution of the Poisson's equation in contrast to the well‐known Laplace shape functions that are only linearly complete.
B Xiao +5 more
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A mixed finite element formulation for elastoplasticity
Abstract The present article, provides a novel mixed finite element formulation for elastoplasticity which is suitable for the discretization of thin‐walled structures using highly anisotropic volume elements. We present a thermodynamically consistent framework for the modeling of elastoplastic stress response, where dissipative effects are considered ...
Michaela Nagler +2 more
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Localized MFS for three‐dimensional acoustic inverse problems on complicated domains
Abstract This paper proposes a semi‐analytical and local meshless collocation method, the localized method of fundamental solutions (LMFS), to address three‐dimensional (3D) acoustic inverse problems in complex domains. The proposed approach is a recently developed numerical scheme with the potential of being mathematically simple, numerically accurate,
Zengtao Chen +3 more
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Energy‐Based Aerodynamic Analysis on the Blended‐Wing‐Body Aircraft with Boundary Layer Ingestion
This study is aimed at evaluating the energy saving benefit and its limitation of the boundary layer ingestion (BLI) applied to a transonic blended‐wing‐body (BWB) aircraft. The power balance method is adopted in the aerodynamic performance analysis of the aircraft.
Wenyuan Zhao +3 more
wiley +1 more source
For Most Frequencies, Strong Trapping Has a Weak Effect in Frequency‐Domain Scattering
It is well‐known that when the geometry and/or coefficients allow stable trapped rays, the outgoing solution operator of the Helmholtz equation grows exponentially through a sequence of real frequencies tending to infinity. In this paper we show that, even in the presence of the strongest possible trapping, if a set of frequencies of arbitrarily small ...
David Lafontaine +2 more
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The intensification of heat transfer using two-phase boiling flow in mini-channels is widely used to dissipate the high heat fluxes in miniaturized electronic devices.
Magdalena Piasecka +3 more
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A new mixed four‐node quadrilateral element (MiQ4) is established in this paper to investigate functionally graded material (FGM) plates with variable thickness. The proposed element is developed based on the first‐order shear deformation and mixed finite element technique, so the new element does not need any selective or reduced numerical integration.
Pham Van Vinh, Francisco J. Martos
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