Mixed-layer capping inversion: Difference between revisions

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The statically stable layer of air at the top of the [[atmospheric boundary layer|atmospheric  boundary layer]].<br/> Because the [[troposphere]] is statically stable on the average (i.e., [[potential temperature]] increases  with height), and because [[turbulence]] in the [[boundary layer]] causes potential temperatures to  become somewhat well mixed there, conservation of [[heat]] requires that there be a potential temperature  increase (i.e., a temperature step or [[inversion]]) at the top of the boundary layer. It is this  inversion that separates the boundary layer from the rest of the troposphere by limiting the domain  of turbulence. It is also responsible for trapping [[pollutants]] near the ground during [[fair]] weather.
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== mixed-layer capping inversion ==
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<div class="definition"><div class="short_definition">The statically stable layer of air at the top of the [[atmospheric boundary layer|atmospheric  boundary layer]].</div><br/> <div class="paragraph">Because the [[troposphere]] is statically stable on the average (i.e., [[potential temperature]] increases  with height), and because [[turbulence]] in the [[boundary layer]] causes potential temperatures to  become somewhat well mixed there, conservation of [[heat]] requires that there be a potential temperature  increase (i.e., a temperature step or [[inversion]]) at the top of the boundary layer. It is this  inversion that separates the boundary layer from the rest of the troposphere by limiting the domain  of turbulence. It is also responsible for trapping [[pollutants]] near the ground during [[fair]] weather.</div><br/> </div>
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Latest revision as of 11:50, 29 March 2024

The statically stable layer of air at the top of the atmospheric boundary layer.
Because the troposphere is statically stable on the average (i.e., potential temperature increases with height), and because turbulence in the boundary layer causes potential temperatures to become somewhat well mixed there, conservation of heat requires that there be a potential temperature increase (i.e., a temperature step or inversion) at the top of the boundary layer. It is this inversion that separates the boundary layer from the rest of the troposphere by limiting the domain of turbulence. It is also responsible for trapping pollutants near the ground during fair weather.

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