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    Investigation of non-equilibrium turbulence decay in the atmospheric boundary layer using Doppler lidar measurements by M. Karasewicz, M. Wacławczyk, P. Ortiz-Amezcua, Ł. Janicka, P. Poczta, P. Poczta, C. Kassar Borges, I. S. Stachlewska

    Published 2024-11-01
    “…These findings contrast with a classical model of equilibrium decay of isotropic turbulence, which predicts that the scaling exponent should remain constant and equal to <span class="inline-formula"><math xmlns="http://www.w3.org/1998/Math/MathML" id="M2" display="inline" overflow="scroll" dspmath="mathml"><mrow><mo>-</mo><mn mathvariant="normal">5</mn><mo>/</mo><mn mathvariant="normal">3</mn></mrow></math><span><svg:svg xmlns:svg="http://www.w3.org/2000/svg" width="28pt" height="14pt" class="svg-formula" dspmath="mathimg" md5hash="fa0e74ec8cb07aa6650e6f2d65de63f0"><svg:image xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="acp-24-13231-2024-ie00002.svg" width="28pt" height="14pt" src="acp-24-13231-2024-ie00002.png"/></svg:svg></span></span> and the integral length scale should increase in time. …”
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