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cyclogenesis

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thumb|upright=1.35|This collage of GOES 13 satellite images shows the development of a [[nor'easter over two days.]] Cyclogenesis is the development or strengthening of cyclonic circulation in the atmosphere (a low-pressure area). Cyclogenesis is an umbrella term for at least three different processes, all of which result in the development of some sort of cyclone, and at any size from the microscale to the synoptic scale.

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Cyclogenesis
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15 sections
Contents
  • Meteorological scales
  • Extratropical cyclones
  • Norwegian cyclone model
  • Precursors for development
  • Vertical motion affecting development
  • Modes of development
  • Maturity
  • Tropical cyclones
  • Mesocyclones
  • Tornadoes
  • Waterspouts
  • Related terms
  • See also
  • Notes
  • References

thumb|upright=1.35|This collage of GOES 13 satellite images shows the development of a [[nor'easter over two days.]] Cyclogenesis is the development or strengthening of cyclonic circulation in the atmosphere (a low-pressure area). Cyclogenesis is an umbrella term for at least three different processes, all of which result in the development of some sort of cyclone, and at any size from the microscale to the synoptic scale. Tropical cyclones form due to latent heat driven by significant thunderstorm activity, developing a warm core. Extratropical cyclones form as waves along weather fronts before occluding later in their life cycle as cold core cyclones. Mesocyclones form as warm core cyclones over land, and can lead to tornado formation. Waterspouts can also form from mesocyclones, but more often develop from environments of high instability and low vertical wind shear.

The process in which an extratropical cyclone undergoes a rapid drop in atmospheric pressure (24 millibars or more) in a 24-hour period is referred to as explosive cyclogenesis, and is usually present during the formation of a nor'easter. Similarly, a tropical cyclone can undergo rapid intensification.

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