1995Journal of applied meteorologyRequires access

Toward Evaluation of Heat Fluxes in the Convective Boundary Layer

Zbigniew Sorbjan

Open publisher page 23 citations

Abstract

This article demonstrates that vertical profiles of the heat flux in the convective boundary layer can be diagnosed through an integration over height of the time change rates of observed potential temperature profiles. Moreover, the basic characteristics of the convective boundary layer, such as the mixed-layer height zi, the depth of the interfacial (entrainment) layer, and the beat flux zero-crossing height h0 can be uniquely evaluated based on a time evolution of potential temperature profiles in the lower atmosphere.

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What this paper is about

This article demonstrates that vertical profiles of the heat flux in the convective boundary layer can be diagnosed through an integration over height of the time change rates of observed potential temperature profiles. Moreover, the basic characteristics of the convective boundary layer, such as the mixed-layer height zi, the depth of the interfacial (entrainment) layer, and the beat flux zero-crossing height h0 can be uniquely evaluated based on a time evolution of potential temperature profiles in the lower atmosphere.

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OpenAlex reports 23 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This article demonstrates that vertical profiles of the heat flux in the convective boundary layer can be diagnosed through an integration over height of the time change rates of observed potential temperature profiles. Moreover, the basic characteristics of the convective boundary layer, such as the mixed-layer height zi, the depth of the interfacial (entrainment) layer, and the beat flux zero-crossing height h0 can be uniquely evaluated based on a time evolution of potential temperature profiles in the lower atmosphere.

Key concepts: Convective Boundary Layer, Entrainment (biomusicology), Convection, Boundary layer, Free convective layer, Atmospheric sciences, Mechanics, Potential temperature

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