On Estimating the Convective Mixing‑Layer Height from Near‑Surface Horizontal Wind Spectra: A Comment on Liu & Otaki (1997) with New Proposals

Abstract Estimating and monitoring the mixing‑layer height remains a crucial but difficult task, as it cannot be measured directly by routine surface observations and is typically inferred from remote-sensing measurements with limited spatial coverage. In this context, the inversion of near-surface turbulence measurements from relatively simple, low‑cost sonic anemometer offers a complementary solution. This paper reassesses the spectral approach proposed by Liu and Ohtaki in 1997 for determining the mixing-layer height, showing that its underlying assumptions are not physically justified, and presents a more consistent, although more complex, derivation. In addition, it presents two alternative methods, based on total and partial spectral integration, which yield comparatively simpler formulations.

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Publication Details

Journal
Boundary-Layer Meteorology
Published
2026-09-19
DOI
https://doi.org/10.1007/s10546-026-00997-2
Primary Topic
Wind and Air Flow Studies
Type
article
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On Estimating the Convective Mixing‑Layer Height from Near‑Surface Horizontal Wind Spectra: A Comment on Liu & Otaki (1997) with New Proposals

Andrea Cecilia, Roberto Sozzi, Giampietro Casasanta, Lorenzo Marinelli et al.
Boundary-Layer Meteorology
Wind and Air Flow Studies
article

On Estimating the Convective Mixing‑Layer Height from Near‑Surface Horizontal Wind Spectra: A Comment on Liu & Otaki (1997) with New Proposals

Andrea Cecilia, Roberto Sozzi, Giampietro Casasanta, Lorenzo Marinelli, Stefania Argentini, Igor Petenko
article en

Abstract

Abstract Estimating and monitoring the mixing‑layer height remains a crucial but difficult task, as it cannot be measured directly by routine surface observations and is typically inferred from remote-sensing measurements with limited spatial coverage. In this context, the inversion of near-surface turbulence measurements from relatively simple, low‑cost sonic anemometer offers a complementary solution. This paper reassesses the spectral approach proposed by Liu and Ohtaki in 1997 for determining the mixing-layer height, showing that its underlying assumptions are not physically justified, and presents a more consistent, although more complex, derivation. In addition, it presents two alternative methods, based on total and partial spectral integration, which yield comparatively simpler formulations.

Boundary-Layer MeteorologyVol. 192(10)
Institute of Atmospheric Sciences and Climate (IT), Trasporti e Territorio (IT)
Affordable and clean energy
Openalex Percentile: Top 18%
Wind and Air Flow Studies
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