English

Perturbed potential temperature distribution in atmospheric boundary layers

Fluid Dynamics 2021-11-01 v1 Atmospheric and Oceanic Physics

Abstract

This article discusses the modeling of perturbed potential temperature in an atmospheric boundary layer. We adopt a convection-diffusion model with specified initial and boundary conditions that resulted from simplifying the linearized equation of the standard continuity equation for potential temperature field in the state of weak turbulent fluxes. By implementing the method of separation of variables to the non-steady-state perturbed potential temperature, we obtain a regular Sturm-Liouville problem for the spatial-dependent, vertical distribution component of the perturbed potential temperature. By transforming the canonical problem into the Liouville normal form, we provide asymptotic solutions for the corresponding second-order boundary value problem using the WKB theory. Furthermore, by solving the problem numerically, we observe a remarkable qualitative agreement between the asymptotic solutions and numerical simulations. As other convection-diffusion models typically perform, the perturbed potential temperature diminishes and approaches the steady-state condition over time.

Keywords

Cite

@article{arxiv.2110.15524,
  title  = {Perturbed potential temperature distribution in atmospheric boundary layers},
  author = {N. Karjanto},
  journal= {arXiv preprint arXiv:2110.15524},
  year   = {2021}
}

Comments

15 pages, 4 figures, 14 references

R2 v1 2026-06-24T07:17:05.638Z