arXiv Open Access 2022

Irreversiblity in Bacterial Turbulence: Insights from the Mean-Bacterial-Velocity Model

Kolluru Venkata Kiran Anupam Gupta Akhilesh Kumar Verma and Rahul Pandit
Lihat Sumber

Abstrak

We use the mean-bacterial-velocity model to investigate the \textit{irreversibility} of two-dimensional (2D) \textit{bacterial turbulence} and to compare it with its 2D fluid-turbulence counterpart. We carry out extensive direct numerical simulations of Lagrangian tracer particles that are advected by the velocity field in this model. Our work uncovers an important, qualitative way in which irreversibility in bacterial turbulence is different from its fluid-turbulence counterpart: For large positive (or large but negative) values of the \textit{friction} (or \textit{activity}) parameter, the probability distribution functions of energy increments, along tracer trajectories, or the power are \textit{positively} skewed; so irreversibility in bacterial turbulence can lead, on average, to \textit{particles gaining energy faster than they lose it}, which is the exact opposite of what is observed for tracers in 2D fluid turbulence.

Penulis (4)

K

Kolluru Venkata Kiran

A

Anupam Gupta

A

Akhilesh Kumar Verma and

R

Rahul Pandit

Format Sitasi

Kiran, K.V., Gupta, A., and, A.K.V., Pandit, R. (2022). Irreversiblity in Bacterial Turbulence: Insights from the Mean-Bacterial-Velocity Model. https://arxiv.org/abs/2201.12722

Akses Cepat

Lihat di Sumber
Informasi Jurnal
Tahun Terbit
2022
Bahasa
en
Sumber Database
arXiv
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Open Access ✓