Quantitative measurement of the life time of turbulence in pipe flow

D. Kuik, C. Poelma, B. Hof, J. Westerweel, in:, Springer, 2009, pp. 145–148.

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Series Title
Springer Proceedings in Physics
Abstract
In pipe flow at low Reynolds number, decay of localized disturbances is observed. As the Reynolds number is increased, the question emerges whether the life time of these disturbances diverges at a finite Reynolds number or remains transient. In the current investigation we determine their life time quantitatively from pressure measurements, while in previous investigations the distance over which a structure survives has been determined. The obtained results confirm that the life time of localized disturbances does not diverge in the range of Reynolds numbers covered in the current experiment.
Publishing Year
Date Published
2009-09-01
Volume
132
Page
145 - 148
Conference
EETC11: European Turbulence Conference
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Kuik D, Poelma C, Hof B, Westerweel J. Quantitative measurement of the life time of turbulence in pipe flow. In: Vol 132. Springer; 2009:145-148. doi:10.1007/978-3-642-03085-7_36
Kuik, D., Poelma, C., Hof, B., & Westerweel, J. (2009). Quantitative measurement of the life time of turbulence in pipe flow (Vol. 132, pp. 145–148). Presented at the EETC11: European Turbulence Conference, Springer. https://doi.org/10.1007/978-3-642-03085-7_36
Kuik, Dirk, Christian Poelma, Björn Hof, and Jerry Westerweel. “Quantitative Measurement of the Life Time of Turbulence in Pipe Flow,” 132:145–48. Springer, 2009. https://doi.org/10.1007/978-3-642-03085-7_36.
D. Kuik, C. Poelma, B. Hof, and J. Westerweel, “Quantitative measurement of the life time of turbulence in pipe flow,” presented at the EETC11: European Turbulence Conference, 2009, vol. 132, pp. 145–148.
Kuik D, Poelma C, Hof B, Westerweel J. 2009. Quantitative measurement of the life time of turbulence in pipe flow. EETC11: European Turbulence Conference, Springer Proceedings in Physics, vol. 132. 145–148.
Kuik, Dirk, et al. Quantitative Measurement of the Life Time of Turbulence in Pipe Flow. Vol. 132, Springer, 2009, pp. 145–48, doi:10.1007/978-3-642-03085-7_36.

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