---
res:
  bibo_abstract:
  - Flows through pipes and channels are, in practice, almost always turbulent, and
    the multiscale eddying motion is responsible for a major part of the encountered
    friction losses and pumping costs1. Conversely, for pulsatile flows, in particular
    for aortic blood flow, turbulence levels remain low despite relatively large peak
    velocities. For aortic blood flow, high turbulence levels are intolerable as they
    would damage the shear-sensitive endothelial cell layer2,3,4,5. Here we show that
    turbulence in ordinary pipe flow is diminished if the flow is driven in a pulsatile
    mode that incorporates all the key features of the cardiac waveform. At Reynolds
    numbers comparable to those of aortic blood flow, turbulence is largely inhibited,
    whereas at much higher speeds, the turbulent drag is reduced by more than 25%.
    This specific operation mode is more efficient when compared with steady driving,
    which is the present situation for virtually all fluid transport processes ranging
    from heating circuits to water, gas and oil pipelines.@eng
  bibo_authorlist:
  - foaf_Person:
      foaf_givenName: Davide
      foaf_name: Scarselli, Davide
      foaf_surname: Scarselli
      foaf_workInfoHomepage: http://www.librecat.org/personId=40315C30-F248-11E8-B48F-1D18A9856A87
    orcid: 0000-0001-5227-4271
  - foaf_Person:
      foaf_givenName: Jose M
      foaf_name: Lopez Alonso, Jose M
      foaf_surname: Lopez Alonso
      foaf_workInfoHomepage: http://www.librecat.org/personId=40770848-F248-11E8-B48F-1D18A9856A87
    orcid: 0000-0002-0384-2022
  - foaf_Person:
      foaf_givenName: Atul
      foaf_name: Varshney, Atul
      foaf_surname: Varshney
      foaf_workInfoHomepage: http://www.librecat.org/personId=2A2006B2-F248-11E8-B48F-1D18A9856A87
    orcid: 0000-0002-3072-5999
  - foaf_Person:
      foaf_givenName: Björn
      foaf_name: Hof, Björn
      foaf_surname: Hof
      foaf_workInfoHomepage: http://www.librecat.org/personId=3A374330-F248-11E8-B48F-1D18A9856A87
    orcid: 0000-0003-2057-2754
  bibo_doi: 10.1038/s41586-023-06399-5
  bibo_issue: '7977'
  bibo_volume: 621
  dct_date: 2023^xs_gYear
  dct_identifier:
  - UT:001168947700009
  dct_isPartOf:
  - http://id.crossref.org/issn/0028-0836
  - http://id.crossref.org/issn/1476-4687
  dct_language: eng
  dct_publisher: Springer Nature@
  dct_title: Turbulence suppression by cardiac-cycle-inspired driving of pipe flow@
  fabio_hasPubmedId: '37673988'
...
