Yayın: Primary instability of a shear-thinning film flow down an incline: experimental study
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item.page.editor
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Yayıncı
CAMBRIDGE UNIV PRESS
DOI
10.1017/jfm.2017.276
Türü
Özet
The main objective of this work is to study experimentally the primary instability of non-Newtonian film flows down an inclined plane. We focus on low-concentration shear-thinning aqueous solutions obeying the Carreau law. The experimental study essentially consists of measuring wavelengths in marginal conditions, which yields the primary stability threshold for a given slope. The experimental results for neutral curves presented in the (Re, f(c)) and (Re, k) planes (where f(c) is the driving frequency, k is the wavenumber and Re is the Reynolds number) are in good agreement with the numerical results obtained by a resolution of the generalized Orr-Sommerfeld equation. The long-wave asymptotic extension of our results is consistent with former theoretical predictions of the critical Reynolds number. This is the first experimental evidence of the destabilizing effect of the shear-thinning behaviour in comparison with the Newtonian case: the critical Reynolds number is smaller, and the ratio between the critical wave celerity and the flow velocity at the free surface is larger.
Tanım
Dergi veya Seri
JOURNAL OF FLUID MECHANICS
ISSN
0022-1120
ISBN
Haklar
Anahtar Kelimeler
instability , non-Newtonian flows , thin films , POWER-LAW FLUID , WAVE INSTABILITY , PLANE , STABILITY , RHEOLOGY , DYNAMICS , LAMINAR , STEADY , REGIME , Mechanics , Physics