On the Diurnal Cycle of GPS-Derived Precipitable Water Vapor over Sumatra

Author:

Torri Giuseppe1,Adams David K.2,Wang Huiqun3,Kuang Zhiming4

Affiliation:

1. Department of Atmospheric Sciences, University of Hawai‘i at Mānoa, Honolulu, Hawaii

2. Centro de la Ciencias de la Atmósfera, Universidad Nacional Autónoma de México, Mexico City, Mexico

3. Smithsonian Astrophysical Observatory, Cambridge, Massachusetts

4. Department of Earth and Planetary Sciences, and John A. Paulson School of Engineering and Applied Sciences, Harvard University, Cambridge, Massachusetts

Abstract

AbstractConvective processes in the atmosphere over the Maritime Continent and their diurnal cycles have important repercussions for the circulations in the tropics and beyond. In this work, we present a new dataset of precipitable water vapor (PWV) obtained from the Sumatran GPS Array (SuGAr), a dense network of GPS stations principally for examining seismic and tectonic activity along the western coast of Sumatra and several offshore islands. The data provide an opportunity to examine the characteristics of convection over the area in greater detail than before. In particular, our results show that the diurnal cycle of PWV on Sumatra has a single late afternoon peak, while that offshore has both a midday and a nocturnal peak. The SuGAr data are in good agreement with GPS radio occultation data from the Constellation Observing System for Meteorology, Ionosphere, and Climate (COSMIC) mission, as well as with imaging spectrometer data from the Ozone Measuring Instrument (OMI). A comparison between SuGAr and the NASA Water Vapor Project (NVAP), however, shows significant differences, most likely due to discrepancies in the temporal and spatial resolutions. To further understand the diurnal cycle contained in the SuGAr data, we explore the impact of the Madden–Julian oscillation (MJO) on the diurnal cycle with the aid of the Weather Research and Forecasting (WRF) Model. Results show that the daily mean and the amplitude of the diurnal cycle appear smaller during the suppressed phase relative to the developing/active MJO phase. Furthermore, the evening/nighttime peaks of PWV offshore appear later during the suppressed phase of the MJO compared to the active phase.

Funder

National Oceanic and Atmospheric Administration

National Science Foundation

Universidad Nacional Autónoma de México

National Aeronautics and Space Administration

Publisher

American Meteorological Society

Subject

Atmospheric Science

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