Dynamic state of low-Reynolds-number turbulent channel flow.

Mamori, Hiroya; Nabae, Yusuke; Fukuda, Shingo; Gotoda, Hiroshi · Phys Rev E · 2023

basic_science · Level V

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Abstract

We numerically study the dynamic state of a low-Reynolds-number turbulent channel flow from the viewpoints of symbolic dynamics and nonlinear forecasting. A low-dimensionally (high-dimensionally) chaotic state of the streamwise velocity fluctuations emerges at a viscous sublayer (logarithmic layer). The possible presence of the chaotic states is clearly identified by orbital instability-based nonlinear forecasting and ordinal partition transition network entropy in combination with the surrogate data method.