Alternative expression for the maximum potential intensity of tropical cyclones
Anastassia M. Makarieva, Andrei V. Nefiodov

TL;DR
This paper presents an alternative formulation of Emanuel's maximum potential intensity for tropical cyclones, revealing conditions under which the classical estimate underestimates maximum wind speeds and explaining superintensity phenomena.
Contribution
It derives a new relationship based on gradient-wind balance and entropy, showing when E-PI underestimates maximum winds and how superintensity can be explained by temperature gradients and supergradient winds.
Findings
The alternative relationship depends on the radial temperature gradient.
E-PI underestimates maximum wind speeds when the outflow temperature is a function of the radial temperature gradient.
Superintensity is less likely at higher temperatures and can be explained by supergradient winds.
Abstract
Emanuel's concept of maximum potential intensity (E-PI) estimates the maximum velocity of tropical cyclones from environmental parameters. At the point of maximum wind, E-PI's key equation relates proportionally the centrifugal acceleration (squared maximum velocity divided by radius) to the radial gradient of saturated moist entropy. The proportionality coefficient depends on the outflow temperature. Here it is shown that a different relationship between the same quantities derives straightforwardly from the gradient-wind balance and the definition of entropy, with the proportionality coefficient depending on the radial gradient of local air temperature. The robust alternative reveals a previously unexplored constraint: for E-PI to be valid, the outflow temperature should be a function of the radial temperature gradient at the point of maximum wind. When the air is horizontally…
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Taxonomy
TopicsTropical and Extratropical Cyclones Research · Climate variability and models · Meteorological Phenomena and Simulations
