ScholarGate
Ассистент

Сравнение методов

Просматривайте выбранные методы рядом; строки с различиями подсвечены.

Квазигеострофическое уравнение омега×Инверсия потенциального вихря×Термический ветер×
ОбластьМетеорологияМетеорологияМетеорология
СемействоProcess / pipelineProcess / pipelineProcess / pipeline
Год появления1970s19851920s
Автор методаTrenberth, OmagaHaynes, McIntyre, HoskinsJacobbian insights from geostrophic flow
ТипDiagnostic equation for vertical motionDiagnostic inversion methodWind-temperature relationship
Основополагающий источникHolton, J. R. (2004). An Introduction to Dynamic Meteorology (4th ed.). Academic Press. link ↗Haynes, P., & McIntyre, M. E. (1987). On the evolution of vorticity and potential vorticity in the atmosphere. Journal of the Atmospheric Sciences, 44(5), 828-841. link ↗Holton, J. R. (2004). An Introduction to Dynamic Meteorology (4th ed.). Academic Press. link ↗
Другие названияQG omega equation, Quasi-geostrophic dynamics, Vertical motion predictionPV inversion, Potential vorticity, PV thinkingThermal wind, Vertical wind shear, Barotropic
Связанные333
СводкаThe quasi-geostrophic (QG) omega equation is a fundamental diagnostic equation in synoptic meteorology that relates vertical motion (omega = dP/dt) to horizontal temperature and vorticity fields. It predicts where air rises and sinks based on the geostrophic flow structure without explicitly solving for vertical velocity.Potential vorticity (PV) inversion is a diagnostic technique that reconstructs atmospheric wind and pressure fields from the spatial distribution of potential vorticity. This method assumes that, in a geostrophically balanced atmosphere, the PV field uniquely determines the balanced circulation around anomalies.The thermal wind relationship is a fundamental meteorological principle that links vertical wind shear to horizontal temperature gradients. It states that wind speed increases with height in the direction of warming—a direct consequence of hydrostatic and geostrophic balance combined with the ideal gas law.
ScholarGateНабор данных
  1. v1
  2. 2 Источники
  3. PUBLISHED
  1. v1
  2. 2 Источники
  3. PUBLISHED
  1. v1
  2. 2 Источники
  3. PUBLISHED

Перейти к поиску Скачать слайды

ScholarGateСравнение методов: Quasi-Geostrophic Omega Equation · Potential Vorticity Inversion · Thermal Wind. Получено 2026-06-20 из https://scholargate.app/ru/compare