Nektar++

Nektar++

Spectral/hp Element Framework
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Home / Development Team Photos / Page 3
Mar 02, 2018
Gianmarco Mengaldo
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DSCF0045

Stanisław Gepner
Warsaw University of Technology
(2016-Present)
Incompressible Flow

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Jan 26, 2018
Gianmarco Mengaldo
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dav

J. Davison de St. Germain
(2017 – 2022)

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Jan 26, 2018
Gianmarco Mengaldo
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13102717_10153516143066301_938479957485445327_n

Vidhi Zala
(2016 – 2023)

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Jan 26, 2018
Gianmarco Mengaldo
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AshokImg

Ashok Jallepalli
(2016 – 2023)

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Jul 15, 2017
Dave Moxey
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Julian Marcon

Julian Marcon
(2016 – 2021)

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Jun 13, 2017
Chris Cantwell
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Jan Eichstaedt

Jan Eichstaedt
(2016 – 2022)

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Apr 02, 2017
Chris Cantwell
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Mike Kirby

Mike Kirby
University of Utah, USA
Founder

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Apr 01, 2017
Administrator
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George Karniadakis

George Karniadakis
Brown University, USA

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Apr 01, 2017
Administrator
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Ashok Jallepalli

Ashok Jallepalli
(2014 – Present)

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Apr 01, 2017
Administrator
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Julian Marcon

Julian Marcon
(2016 – Present)

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  • Nektar++ Workshop 2025May 7, 2025
    The 9th annual Nektar++ Workshop will bring together developers and users of all experiences to hear about new and future developments in the Nektar++ spectral/hp element framework and the exciting science and engineering being undertaken with the code.
  • Synthetic turbulence generator in Nektar++November 12, 2024
    Advancements in modern hardware and numerical methods have significantly enhanced the feasibility of scale-resolving simulations, such as direct numerical simulation, for industrial applications. For effective application, these simulations require the generation of realistic incoming turbulence to ensure accurate predictions of the flow field.
  • Nektar++ 5.7.0 ReleasedNovember 6, 2024
    The latest version of Nektar++, v5.7.0, was released on the 30th October 2024.
  • Nektar++ on ARCHER2October 25, 2024
    The ARCHER2  national supercomputer is a world class advanced computing resource and is the successor to ARCHER. This guide is intended to provide basic instructions for compiling the Nektar++ stable release or master branch on the ARCHER2 system.
  • Setting up industrial simulations using Incompressible Navier-Stokes SolverOctober 22, 2024
    This blog explains how to set up industrial simulations using the Incompressible Navier-Stokes (IncNS) Solver in Nektar++. The geometry here is the Imperial Front Wing (IFW), an unraced front-wing configuration of the McLaren MP4-17D race car. Combined with a rolling wheel, it is a representative model for modern open-wheel motorsports, especially Formula 1 front-wing designs.
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