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Convectively Coupled Equatorial Waves: Analysis of Clouds and Temperature in the Wavenumber–Frequency Domain

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TLDR
In this article, a wavenumber-frequency spectrum analysis is performed for all longitudes in the domain 158S−158N using a long (;18 years) twice-daily record of satellite-observed outgoing longwave radiation (OLR), a good proxy for deep tropical convection.
Abstract
A wavenumber-frequency spectrum analysis is performed for all longitudes in the domain 158S‐158N using a long (;18 years) twice-daily record of satellite-observed outgoing longwave radiation (OLR), a good proxy for deep tropical convection. The broad nature of the spectrum is red in both zonal wavenumber and frequency. By removing an estimated background spectrum, numerous statistically significant spectral peaks are isolated. Some of the peaks correspond quite well to the dispersion relations of the equatorially trapped wave modes of shallow water theory with implied equivalent depths in the range of 12‐50 m. Cross-spectrum analysis with the satellite-based microwave sounding unit deep-layer temperature data shows that these spectral peaks in the OLR are ‘‘coupled’’ with this dynamical field. The equivalent depths of the convectively coupled waves are shallower than those typical of equatorial waves uncoupled with convection. Such a small equivalent depth is thought to be a result of the interaction between convection and the dynamics. The convectively coupled equatorial waves identified correspond to the Kelvin, n 5 1 equatorial Rossby, mixed Rossby-gravity, n 5 0 eastward inertiogravity, n 5 1 westward inertio-gravity (WIG), and n 5 2 WIG waves. Additionally, the Madden‐Julian oscillation and tropical depression-type disturbances are present in the OLR spectra. These latter two features are unlike the convectively coupled equatorial waves due to their location away from the equatorial wave dispersion curves in the wavenumber-frequency domain. Extraction of the different convectively coupled disturbances in the time‐longitude domain is performed by filtering the OLR dataset for very specific zonal wavenumbers and frequencies. The geographical distribution of the variance of these filtered data gives further evidence that some of the spectral peaks correspond to particular equatorial wave modes. The results have implications for the cumulus parameterization problem, for the excitation of equatorial waves in the lower stratosphere, and for extended-range forecasting in the Tropics.

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Effects of time step size on the simulation of tropical climate in NCAR-CAM3

TL;DR: In this article, the effects of time step on the simulation of tropical climate in the NCAR-Community Atmosphere Model version 3 (CAM3) are described, and a set of multi-year integrations are carried out in a real-planet framework using actual land-ocean distribution and observed sea surface temperature.
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Influence of Intraseasonal-Interannual Oscillations on Tropical Cyclone Genesis in the Western North Pacific

TL;DR: In this article, the authors evaluated the influence of intraseasonal and interannual oscillations on tropical cyclone genesis by productivity of TC genesis (PTCG) from the developing (TCd) and nondeveloping (TCn) pr...
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A 20-Year Climatology of Madden-Julian Oscillation Convection: Large-Scale Precipitation Tracking From TRMM-GPM Rainfall

TL;DR: A 20-year climatology of the Madden-Julian Oscillation (MJO) convection based on large-scale precipitation tracking (LPT) using TRMM-GPM Multisatellite Precipitation Analysis (TMPA) data from 1998-2018 over the global tropics midlatitudes (50°S−50°N) is presented in this paper.
Journal ArticleDOI

On the Wavelength of the Rossby Waves Radiated by Tropical Cyclones

TL;DR: In this article, the authors present a theory for the zonal wavelength of tropical depression-type disturbances, which occur as a result of Rossby wave radiation from a preexisting tropical cyclone (TC).
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Breaking of balanced and unbalanced equatorial waves.

TL;DR: This paper shows that breaking scenario of equatorial waves in the beta-plane shallow water model is determined by the degree of balance between the zonal component of the Coriolis force and the pressure gradient, and provides examples of different breaking mechanisms.
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Journal ArticleDOI

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Journal ArticleDOI

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