International Journal of Climatology · 2012 · 334 citations · 26 references
EngineeringSaudi ArabiaClimate ModelingGridded DatasetsEarth SciencePrecipitation ProcessesRegional Climate ResponseAtmospheric ScienceArabian PeninsulaMeteorological MeasurementHydroclimate ModelingArid EnvironmentClimate ChangeHydrometeorologyMeteorologyClimate SciencesGeographyEarth's ClimateClimate DynamicsClimatic ImpactClimatologyDroughtDrylandsGlobal ClimateRecent Climate Change
Abstract The rainfall and temperature climatology over the Arabian Peninsula are analysed on an annual basis using various gridded datasets. For Saudi Arabia, the area of which represents almost 80% of the Peninsula, the climatic datasets from its 27 ground observations are analysed for the period 1978–2009, with additional gridded datasets used to describe the observed state and change of the present climate. The gridded datasets represent well the very dry (40–80 mm) area over the world's largest sand desert (Rub Al‐Khali), the dry (80–150 mm) area over middle‐to‐north of Saudi Arabia, and the wettest (>150 mm) region in the southwest of the Peninsula. The annual temperature is relatively high (24–27 °C) in the middle‐to‐south of the Peninsula and low (<21 °C) in the northwest and southwest. The highest temperature (>27 °C) is obtained over the Rub Al‐Khali. Over Saudi Arabia, the observed annual rainfall showed a significant decreasing trend (47.8 mm per decade) in the last half of the analysis period, with a relatively large interannual variability, while the maximum, mean and minimum temperatures have increased significantly at a rate of 0.71, 0.60, and 0.48 °C per decade, respectively. This information is invaluable to consider in any climate impact assessment studies in Saudi Arabia. Copyright © 2012 Royal Meteorological Society
26
Statistical Methods in the Atmospheric Sciences
Philip H. Ramsey, Daniel S. Wilks · Technometrics · 1996 · 7.7K citations
Pingping Xie, Phillip A. Arkin · Bulletin of the American Meteorological Society · 1997 · 4.4K citations · Full text
Engineering, Global Monthly Precipitation, Weather Forecasting +23