Fibre-induced drag reduction

We use direct numerical simulation to study turbulent drag reduction by rigid polymer additives, referred to as fibres. The simulations agree with experimental data from the literature in terms of friction factor dependence on Reynolds number and fibre concentration. An expression for drag reduction...

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Published inJournal of fluid mechanics Vol. 602; pp. 209 - 218
Main Authors GILLISSEN, J. J. J., BOERSMA, B. J., MORTENSEN, P. H., ANDERSSON, H. I.
Format Journal Article
LanguageEnglish
Published Cambridge, UK Cambridge University Press 10.05.2008
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Abstract We use direct numerical simulation to study turbulent drag reduction by rigid polymer additives, referred to as fibres. The simulations agree with experimental data from the literature in terms of friction factor dependence on Reynolds number and fibre concentration. An expression for drag reduction is derived by adopting the concept of the elastic layer.
AbstractList We use direct numerical simulation to study turbulent drag reduction by rigid polymer additives, referred to as fibres. The simulations agree with experimental data from the literature in terms of friction factor dependence on Reynolds number and fibre concentration. An expression for drag reduction is derived by adopting the concept of the elastic layer.
We use direct numerical simulation to study turbulent drag reduction by rigid polymer additives, referred to as fibres. The simulations agree with experimental data from the literature in terms of friction factor dependence on Reynolds number and fibre concentration. An expression for drag reduction is derived by adopting the concept of the elastic layer. [PUBLICATION ABSTRACT]
Author MORTENSEN, P. H.
BOERSMA, B. J.
GILLISSEN, J. J. J.
ANDERSSON, H. I.
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  fullname: ANDERSSON, H. I.
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Cites_doi 10.1103/PhysRevLett.59.2059
10.1016/S0377-0257(03)00105-8
10.1017/S0022112099005066
10.1002/aic.690431214
10.1017/S0022112071000120
10.1016/j.jnnfm.2005.12.012
10.1063/1.2437824
10.1017/S0022112099007818
10.1007/978-94-017-1295-8
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10.1143/JPSJ.60.868
10.1103/PhysRevLett.95.194502
10.1143/JPSJ.60.2613
10.1007/BF01337457
10.1038/253109a0
10.1063/1.2800041
10.1002/bip.1969.360080514
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Keywords Additives
Turbulent flow
Pipe flow
Drag reduction
Digital simulation
Modelling
Velocity distribution
Fibers
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References Lumley (S0022112008000967_ref10) 1973; 7
Flory (S0022112008000967_ref4) 1969
S0022112008000967_ref8
S0022112008000967_ref7
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Doi (S0022112008000967_ref3) 1986
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Tennekes (S0022112008000967_ref17) 1973
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References_xml – ident: S0022112008000967_ref13
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  doi: 10.1016/S0377-0257(03)00105-8
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– volume-title: The Theory of Polymer Dynamics
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    fullname: Doi
– ident: S0022112008000967_ref18
  doi: 10.1017/S0022112071000120
– ident: S0022112008000967_ref9
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– ident: S0022112008000967_ref12
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– ident: S0022112008000967_ref14
  doi: 10.1143/JPSJ.60.868
– ident: S0022112008000967_ref1
  doi: 10.1103/PhysRevLett.95.194502
– volume: 7
  start-page: 263
  year: 1973
  ident: S0022112008000967_ref10
  article-title: Drag reduction in turbulent flow by polymer additives
  publication-title: J. Polym. Sci.
  contributor:
    fullname: Lumley
– ident: S0022112008000967_ref15
  doi: 10.1143/JPSJ.60.2613
– ident: S0022112008000967_ref2
  doi: 10.1007/BF01337457
– ident: S0022112008000967_ref19
  doi: 10.1038/253109a0
– ident: S0022112008000967_ref6
  doi: 10.1063/1.2800041
– volume-title: A First Course in Turbulence
  year: 1973
  ident: S0022112008000967_ref17
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    fullname: Tennekes
– volume-title: Statistical Mechanics of Chain Molecules
  year: 1969
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  doi: 10.1002/bip.1969.360080514
  contributor:
    fullname: Flory
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SubjectTerms Exact sciences and technology
Fibers
Flows in ducts, channels, nozzles, and conduits
Fluid dynamics
Fluid mechanics
Fundamental areas of phenomenology (including applications)
Physics
Polymers
Reynolds number
Simulation
Turbulence
Turbulence control
Turbulent flows, convection, and heat transfer
Title Fibre-induced drag reduction
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