2011Cambridge University Press eBooksRequires access

Vorticity and potential vorticity dynamics

Mankin Mak

Open publisher page 0 citations

Abstract

This chapter discusses the fundamental concepts (vorticity, circulation and potential vorticity) used for quantifying the rotational property of a flow and analyzing its evolution. The mathematical and physical characteristics of vorticity and circulation are elaborated in Sections 3.1 through 3.6. Those of potential vorticity are elaborated in Sections 3.8.2, 3.8.4 and 3.8.6. We elaborate on how the various mechanisms could change these different measures of the rotational property. We illustrate circulation with sea-breeze in Section 3.4 and potential vorticity with an eddy-driven jet in Section 3.8.5 and hurricane in Section 3.8.7. The emphasis of most discussions is on large-scale flows. To get a feel for the large-scale potential vorticity in the atmosphere, we show several instantaneous as well as statistical distributions of it in Section 3.8.3. Section 3.9 shows how we can succinctly represent the effects of diabatic heating and friction at the boundaries on the potential vorticity dynamics. It is done with the use of additional notions of generalized potential vorticity and generalized potential vorticity flux. Vorticity and circulation of a three-dimensional flow There are two complementary concepts that quantify the rotational property of a flow: vorticity and circulation . Vorticity is a local measure, whereas circulation is a bulk (integral) measure. Each can be defined either in the Lagrangian sense or in the Eulerian sense.

About this research paper

What this paper is about

This chapter discusses the fundamental concepts (vorticity, circulation and potential vorticity) used for quantifying the rotational property of a flow and analyzing its evolution. The mathematical and physical characteristics of vorticity and circulation are elaborated in Sections 3.1 through 3.6. Those of potential vorticity are elaborated in Sections 3.8.2, 3.8.4 and 3.8.6. We elaborate on how the various mechanisms could change these different measures of the rotational property. We illustrate circulation with sea-breeze in Section 3.4 and potential vorticity with an eddy-driven jet in Section 3.8.5 and hurricane in Section 3.8.7. The emphasis of most discussions is on large-scale flows. To get a feel for the large-scale potential vorticity in the atmosphere, we show several instantaneous as well as statistical distributions of it in Section 3.8.3. Section 3.9 shows how we can succinctly represent the effects of diabatic heating and friction at the boundaries on the potential vorticity dynamics. It is done with the use of additional notions of generalized potential vorticity and generalized potential vorticity flux. Vorticity and circulation of a three-dimensional flow There are two complementary concepts that quantify the rotational property of a flow: vorticity and circulation . Vorticity is a local measure, whereas circulation is a bulk (integral) measure. Each can be defined either in the Lagrangian sense or in the Eulerian sense.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

This chapter discusses the fundamental concepts (vorticity, circulation and potential vorticity) used for quantifying the rotational property of a flow and analyzing its evolution. The mathematical and physical characteristics of vorticity and circulation are elaborated in Sections 3.1 through 3.6. Those of potential vorticity are elaborated in Sections 3.8.2, 3.8.4 and 3.8.6. We elaborate on how the various mechanisms could change these different measures of the rotational property. We illustrate circulation with sea-breeze in Section 3.4 and potential vorticity with an eddy-driven jet in Section 3.8.5 and hurricane in Section 3.8.7. The emphasis of most discussions is on large-scale flows. To get a feel for the large-scale potential vorticity in the atmosphere, we show several instantaneous as well as statistical distributions of it in Section 3.8.3. Section 3.9 shows how we can succinctly represent the effects of diabatic heating and friction at the boundaries on the potential vorticity dynamics. It is done with the use of additional notions of generalized potential vorticity and generalized potential vorticity flux. Vorticity and circulation of a three-dimensional flow There are two complementary concepts that quantify the rotational property of a flow: vorticity and circulation . Vorticity is a local measure, whereas circulation is a bulk (integral) measure. Each can be defined either in the Lagrangian sense or in the Eulerian sense.

Key concepts: Vorticity, Potential vorticity, Positive vorticity advection, Vorticity equation, Vortex stretching, Circulation (fluid dynamics), Burgers vortex, Diabatic

Related papers

Back to paper searchBrowse research topicsOriginal source
Vorticity and potential vorticity dynamics — Research Paper | ScholarLens