Meshless Methods for Potential Flow Past a Circular Cylinder

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OriginalsprogEngelsk
TitelProceedings of NSCM 30 : The 30th Nordic Seminar on Computational Mechanics 25-27 October 2017
RedaktørerJan Høgsberg, Niels L. Pedersen
Udgivelses stedLyngby
ForlagDTU Mechanical Engineering
Publikationsdato2017
Sider137 -140
StatusUdgivet - 2017
Begivenhed30th Nordic Seminar on Computational Mechanics - Technical University of Denmark Anker Engelunds Vej 1, Bygning 101A 2800 Kgs. , Lyngby, Danmark
Varighed: 25 okt. 201727 okt. 2017
Konferencens nummer: 30

Konference

Konference30th Nordic Seminar on Computational Mechanics
Nummer30
LokationTechnical University of Denmark Anker Engelunds Vej 1, Bygning 101A 2800 Kgs.
LandDanmark
ByLyngby
Periode25/10/201727/10/2017
NavnProceedings of the Nordic Seminar on Computational Mechanics, (NSCM)
Vol/bind2017
ISSN1652-8549

Bibliografisk note

Copyright © 2017 by Department of Mechanical Engineering

Emneord

  • Computational methods
  • Meshless
  • Radial basis functions
  • RBF-FD
  • Potential flow

Citer dette

Nielsen, M. E., & Damkilde, L. (2017). Meshless Methods for Potential Flow Past a Circular Cylinder. I J. Høgsberg, & N. L. Pedersen (red.), Proceedings of NSCM 30: The 30th Nordic Seminar on Computational Mechanics 25-27 October 2017 (s. 137 -140). Lyngby: DTU Mechanical Engineering . Proceedings of the Nordic Seminar on Computational Mechanics, (NSCM), Bind. 2017
Nielsen, Morten Eggert ; Damkilde, Lars. / Meshless Methods for Potential Flow Past a Circular Cylinder. Proceedings of NSCM 30: The 30th Nordic Seminar on Computational Mechanics 25-27 October 2017. red. / Jan Høgsberg ; Niels L. Pedersen. Lyngby : DTU Mechanical Engineering , 2017. s. 137 -140 (Proceedings of the Nordic Seminar on Computational Mechanics, (NSCM), Bind 2017).
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title = "Meshless Methods for Potential Flow Past a Circular Cylinder",
keywords = "Computational methods, Meshless, Radial basis functions, RBF-FD, Potential flow, Computational methods, Meshless, Radial basis functions, RBF-FD, Potential flow",
author = "Nielsen, {Morten Eggert} and Lars Damkilde",
note = "Copyright {\circledC} 2017 by Department of Mechanical Engineering",
year = "2017",
language = "English",
pages = "137 --140",
editor = "Jan H{\o}gsberg and Pedersen, {Niels L.}",
booktitle = "Proceedings of NSCM 30",
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Nielsen, ME & Damkilde, L 2017, Meshless Methods for Potential Flow Past a Circular Cylinder. i J Høgsberg & NL Pedersen (red), Proceedings of NSCM 30: The 30th Nordic Seminar on Computational Mechanics 25-27 October 2017. DTU Mechanical Engineering , Lyngby, Proceedings of the Nordic Seminar on Computational Mechanics, (NSCM), bind 2017, s. 137 -140, Lyngby, Danmark, 25/10/2017.

Meshless Methods for Potential Flow Past a Circular Cylinder. / Nielsen, Morten Eggert; Damkilde, Lars.

Proceedings of NSCM 30: The 30th Nordic Seminar on Computational Mechanics 25-27 October 2017. red. / Jan Høgsberg; Niels L. Pedersen. Lyngby : DTU Mechanical Engineering , 2017. s. 137 -140 (Proceedings of the Nordic Seminar on Computational Mechanics, (NSCM), Bind 2017).

Publikation: Bidrag til bog/antologi/rapport/konference proceedingKonferenceartikel i proceedingForskningpeer review

TY - GEN

T1 - Meshless Methods for Potential Flow Past a Circular Cylinder

AU - Nielsen, Morten Eggert

AU - Damkilde, Lars

N1 - Copyright © 2017 by Department of Mechanical Engineering

PY - 2017

Y1 - 2017

KW - Computational methods

KW - Meshless

KW - Radial basis functions

KW - RBF-FD

KW - Potential flow

KW - Computational methods

KW - Meshless

KW - Radial basis functions

KW - RBF-FD

KW - Potential flow

M3 - Article in proceeding

SP - 137

EP - 140

BT - Proceedings of NSCM 30

A2 - Høgsberg, Jan

A2 - Pedersen, Niels L.

PB - DTU Mechanical Engineering

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ER -

Nielsen ME, Damkilde L. Meshless Methods for Potential Flow Past a Circular Cylinder. I Høgsberg J, Pedersen NL, red., Proceedings of NSCM 30: The 30th Nordic Seminar on Computational Mechanics 25-27 October 2017. Lyngby: DTU Mechanical Engineering . 2017. s. 137 -140. (Proceedings of the Nordic Seminar on Computational Mechanics, (NSCM), Bind 2017).