Water Vapor Tracers as Diagnostics of the Regional Hydrologic Cycle
作者:Michael G. Bosilovich, Siegfried D. Schubert · 发表于:Journal of Hydrometeorology · 年份:2002 · DOI:10.1175/1525-7541(2002)003<0149:wvtado>2.0.co;2 · 被引用次数:230 · 研究领域:Climate variability and models、Meteorological Phenomena and Simulations、Tropical and Extratropical Cyclones Research
Numerous studies suggest that local feedback of surface evaporation on precipitation, known recycling, is a significant source of water for precipitation. Quantitative results on the exact amount of recycling have been difficult to obtain in view of the inherent limitations of diagnostic recycling calculations. The current study describes a calculation of the amount of local and remote geographic sources of surface evaporation for precipitation, based on the implementation of three-dimensional constituent tracers of regional water vapor sources [termed “water vapor tracers” (WVTs)] in a general circulation model. The major limitation on the accuracy of the recycling estimates is the veracity of the numerically simulated hydrological cycle, though it is noted that this approach also can be implemented within the context of a data assimilation system. In the WVT approach, each tracer is associated with an evaporative source region for a prognostic three-dimensional variable that represents a partial amount of the total atmospheric water vapor. The physical processes that act on a WVT are determined in proportion to those that act on the model's prognostic water vapor. In this way, the local and remote sources of water for precipitation can be predicted within the model simulation and validated against the model's prognostic water vapor. As a demonstration of the method, the regional hydrologic cycles for North America and India are evaluated for six summers (June, July, and Aug...