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Decline in Terrestrial Moisture Sources of the Mississippi River Basin in a Future Climate

机译:未来气候中密西西比河流域的地面水分源的下降

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Assessment of the impact of climate change on water resources over land requires knowledge on the origin of the precipitation and changes therein toward the future. We determine the origin of precipitation over the Mississippi River basin (MRB) using high-resolution (similar to 25 km) climate model simulations for present and future climate (RCP4.5). Moisture resulting in precipitation over the MRB is tracked back in time using Eulerian offline moisture tracking, in order to find out from where this water originally evaporated (i.e., the moisture sources). We find that the most important continental moisture sources are the MRB itself and the area southwest of the basin. The two most relevant oceanic sources are the Gulf of Mexico/Caribbean and the Pacific. The distribution of sources varies per season, with more recycling of moisture within the basin during summer and more transport of moisture from the ocean toward the basin in winter. In future winters, we find an increase in moisture source from the oceans (related to higher sea surface temperatures), resulting in more precipitation over the MRB. In future summers, we find an approximately 5% decrease in moisture source from the basin itself, while the decrease in precipitation is smaller (i.e., lower recycling ratios). The results here are based on one climate model, and we do not study low-frequency climate variability. We conclude that Mississippi's moisture sources will become less local in a future climate, with more water originating from the oceans.
机译:评估气候变化对土地水资源的影响需要了解降水的起源和其中的变化。我们使用高分辨率(类似于25 km)气候模型模拟的密西西比河流域(MRB)对当前和未来的气候(RCP4.5)来确定沉淀的起源。使用欧拉离线水分跟踪及时跟踪导致MRB上沉淀的水分,以便从最初蒸发的那种水蒸发的地方(即,水分源)。我们发现最重要的大陆水分源是MRB本身和盆地西南地区。两个最相关的海洋来源是墨西哥/加勒比地区和太平洋的海湾。来源的分布每季都有各种各样的,随着盆地内部水分的再循环,冬季冬季朝向盆地的水分。在未来的冬季中,我们发现来自海洋的水分源(与较高海面温度相关)的增加,导致MRB的降水量更多。在未来的夏季中,我们发现从盆地本身的水分源减少约5%,而沉淀的降低较小(即,较低的回收率)。这里的结果基于一个气候模型,我们不研究低频气候变化。我们得出结论,密西西比州的水分源将在未来的气候中变得不那么局部,源于海洋的水域。

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