arXiv · cond-mat/0309472
Aspect ratio dependence of charge transport in turbulent electroconvection
Abstract
We present measurements of the normalized charge transport or Nusselt number $\rm Nu$ as a function of the aspect ratio $Γ$ for turbulent convection in an electrically driven film. In analogy with turbulent Rayleigh-B{é}nard convection, we develop the relevant theoretical framework in which we discuss the local-power-law-scaling of $\rm Nu$ with a dimensionless electrical forcing parameter $\cal R$. For these experiments where $10^4 \lesssim {\cal R} \lesssim 2 \times 10^5$ we find that ${\rm Nu} \sim {\rm F}(Γ){\cal R}^γ$ with $γ$ either $ = 0.26 (\pm 0.02)$ or $0.20 (\pm 0.03)$, in excellent agreement with the theoretical predictions of $γ= 1/4$ and 1/5. Our measurements of the aspect ratio-dependence of ${\rm Nu}$ for $0.3 \leq Γ\leq 17$ compares favorably with the function ${\rm F}(Γ)$ from the scaling theory.
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Peichun Tsai, Zahir A. Daya, Stephen W. Morris. 2003-09-19. Aspect ratio dependence of charge transport in turbulent electroconvection. https://doi.org/10.1103/physrevlett.92.084503
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