Observations of Surface Forcing from the Subduction Experiment: A Comparison with Global Model Products and Climatological Datasets*
作者:Kerry A. Moyer, Robert A. Weller · 发表于:Journal of Climate · 年份:1997 · DOI:10.1175/1520-0442(1997)010<2725:oosfft>2.0.co;2 · 被引用次数:63 · 研究领域:Oceanographic and Atmospheric Processes、Climate variability and models、Ocean Waves and Remote Sensing
Reliable estimates of the exchange of heat, moisture, and momentum across the air–sea interface are essential in assessing the local “representativeness” of the surface forcing fields depicted by global model and climatological datasets. The reliability and extended length of the in situ data collected by a large-scale array of buoys deployed during the Subduction Experiment make this dataset particularly well suited to providing such an assessment. The Subduction Experiment was designed to explore the process by which the mixed layer waters of the eastern subtropical North Atlantic are incorporated into the top of the main thermocline. To this end, an array of five buoys was maintained between 18°–33°N and 22°–34°W from June 1991 to June 1993. In situ dynamic, thermodynamic, and radiometric measurements are utilized along with a state-of-the-art bulk flux algorithm to estimate the time-dependent surface forcing at each of the buoys. The resulting air–sea fluxes are compared to similar quantities offered by the Isemer and Hasse (Bunker) and the Wright–Oberhuber Comprehensive Ocean–Atmosphere Data Set climatological datasets, and global model forecasts from the European Centre for Medium-Range Weather Forecasts and the National Centers for Environmental Prediction. Some substantial differences are exhibited between the surface forcing components garnered from the Subduction Experiment buoys and those of the climatological and model products. The mean net heat flux from the Sub...