English

Mixing by microorganisms in stratified fluids

Fluid Dynamics 2014-06-16 v1

Abstract

We examine the vertical mixing induced by the swimming of microorganisms at low Reynolds and P\'eclet numbers in a stably stratified ocean, and show that the global contribution of oceanic microswimmers to vertical mixing is negligible. We propose two approaches to estimating the mixing efficiency, η\eta, or the ratio of the rate of potential energy creation to the total rate-of-working on the ocean by microswimmers. The first is based on scaling arguments and estimates η\eta in terms of the ratio between the typical organism size, aa, and an intrinsic length scale for the stratified flow, =(νκ/N2)1/4\ell = \left ( \nu \kappa / N^2 \right )^{1/4}, where ν\nu is the kinematic viscosity, κ\kappa the diffusivity, and NN the buoyancy frequency. In particular, for small organisms in the relevant oceanic limit, a/1a / \ell \ll 1, we predict the scaling η(a/)3\eta \sim (a / \ell)^3. The second estimate of η\eta is formed by solving the full coupled flow-stratification problem by modeling the swimmer as a regularized force dipole, and computing the efficiency numerically. Our computational results, which are examined for all ratios a/a/\ell, validate the scaling arguments in the limit a/1a / \ell \ll 1 and further predict η1.2(a/)3\eta \approx 1.2 \left ( a / \ell \right )^3 for vertical swimming and η0.15(a/)3\eta \approx 0.15 \left ( a / \ell \right )^3 for horizontal swimming. These results, relevant for any stratified fluid rich in biological activity, imply that the mixing efficiency of swimming microorganisms in the ocean is at very most 8\% and is likely smaller by at least two orders of magnitude.

Keywords

Cite

@article{arxiv.1406.3386,
  title  = {Mixing by microorganisms in stratified fluids},
  author = {Gregory L. Wagner and William R. Young and Eric Lauga},
  journal= {arXiv preprint arXiv:1406.3386},
  year   = {2014}
}

Comments

27 pages, 2 figures

R2 v1 2026-06-22T04:37:36.647Z