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Peter Szabo

Researcher at Technical University of Denmark

Publications -  67
Citations -  1749

Peter Szabo is an academic researcher from Technical University of Denmark. The author has contributed to research in topics: Finite element method & Chemistry. The author has an hindex of 23, co-authored 61 publications receiving 1494 citations. Previous affiliations of Peter Szabo include University of Cambridge.

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Computational modeling of concrete flow: General overview

TL;DR: A general overview of computational modeling of the flow of fresh concrete can be found in this paper, which can be divided into three main families: single fluid simulations, numerical modeling of discrete particle flow, and numerical techniques allowing the modeling of particles suspended in a fluid.
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Fabrication of scalable and structured tissue engineering scaffolds using water dissolvable sacrificial 3D printed moulds

TL;DR: In this article, the authors explore 3D printed polyvinyl alcohol (PVA) as a sacrificial mold in a polymer casting process and achieve 80% porosity corresponding to about 150 cm(2)/cm(3) surface to volume ratio.
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Hybrid poly(lactic acid)/nanocellulose/nanoclay composites with synergistically enhanced barrier properties and improved thermomechanical resistance

TL;DR: In this article, a hybrid poly(lactic acid)/nanocellulose/nanoclay composites with synergistically enhanced barrier properties and improved thermomechanical resistance is presented.
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A split Lagrangian-Eulerian method for simulating transient viscoelastic flows

TL;DR: In this paper, a numerical method for simulating time-dependent flow of viscoelastic fluids derived from dumbbell models is described, where the constitutive equation is solved in a co-deforming frame, and mesh reconnection is achieved using a variant of Delaunay triangulation.
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Flow of viscoplastic fluids in eccentric annular geometries

TL;DR: A classification of flowfields for the flow of a Bingham fluid in general eccentric annular geometries is presented in this paper, where simple arguments show that a singularity can exist in the stress gradient on boundaries between zones with yielded and unyielded fluid respectively.