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On the Potential Change in Surface Water Vapor Deposition over the Continental United States due to Increases in Atmospheric Greenhouse Gases

机译:由于大气温室气体的增加,美国大陆上地表水蒸气沉积的潜在变化

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摘要

Characteristics of surface water vapor deposition (WVD) over the continental United States under the present climate and a future climate scenario reflecting the mid-twenty-first-century increased greenhouse gas concentrations were evaluated by using a regional climate model forced by initial and lateral boundary conditions generated by a GCM. Simulated seasonal WVD frequency and daily amounts are presented and elaboration on their relation to potential surface dew/frost is also provided. The climate scenario showed in winter a noticeable decline in WVD frequency over snow-covered areas in the Midwest and over most of the elevated terrain in the western United States, contrasted by an overall increase in the eastern United States. In summer, a decline in frequency was simulated for most of the United States, particularly over the mountains in the west. A spatially mixed trend of change in the frequency was indicated in spring and fall. The trend of change in WVD amount resembled that of the frequency in summer, whereas a largely reversed relation was shown in winter. Quantitatively, changes in frequency and amount of WVD in the range of -30% to +30% generally were indicated for all locations and seasons, except for the western half of the United States, where the change was larger in summer. While areas passing a local statistical test on WVD changes ranged from 11% to 36% of land domain, the WVD differences as a whole field between present climate and future scenarios are significant.
机译:通过使用初始和横向边界强迫的区域气候模型,评估了当前气候和反映二十一世纪中叶温室气体浓度增加的未来气候情景下美国大陆上的地表水汽沉积(WVD)的特征GCM生成的条件。给出了模拟的季节性WVD频率和每日数量,并详细说明了它们与潜在表面露水/霜冻的关系。冬季的气候情景表明,中西部冰雪覆盖地区和美国西部大部分高地上空的WVD频率明显下降,而美国东部地区总体上有所增加。夏季,美国大部分地区,特别是西部山区,出现频率下降的情况。在春季和秋季显示了频率变化的空间混合趋势。 WVD量的变化趋势与夏季的频率相似,而在冬季则显示出很大的反比关系。从数量上看,除美国西部以外,所有地区和季节的WVD频率和数量变化通常在-30%至+ 30%范围内,但夏季变化较大。虽然通过WVD变化的本地统计测试的区域范围为陆地面积的11%至36%,但从当前气候和未来情况来看,整个WVD差异很大。

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