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Playa Soil Moisture and Evaporation Dynamics During the MATERHORN Field Program

机译:MATERHORN田间试验过程中的Playa土壤水分和蒸发动力学

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We present an analysis of field data collected over a desert playa in western Utah, USA in May 2013, the most synoptically active month of the year, as part of the Mountain Terrain Atmospheric Modeling and Observations (MATERHORN) program. The results show that decreasing surface albedo, decreasing Bowen ratio and increasing net radiation with increasing soil moisture sustained a powerful positive feedback mechanism promoting large evaporation rates immediately following rain events. Additionally, it was found that, while nocturnal evaporation was negligible during dry periods, it was quite significant (up to 30 % of the daily cumulative flux) during nights following rain events. Our results further show that the highest spatial variability in surface soil moisture is found under dry conditions. Finally, we report strong spatial heterogeneities in evaporation rates following a rain event. The cumulative evaporation for the different sampling sites over a five-day period varied from 0.1 to 6.6 mm. Overall, this study allows us to better understand the mechanisms underlying soil moisture dynamics of desert playas as well as evaporation following occasional rain events.
机译:我们作为山地大气建模与观测(MATERHORN)计划的一部分,对2013年5月(一年中最活跃的月份)在美国犹他州西部的一个沙漠海滩采集的现场数据进行了分析。结果表明,随着土壤湿度的增加,地表反照率的降低,鲍文比的降低以及净辐射的增加,都保持了强有力的正反馈机制,从而在降雨后立即促进了大的蒸发速率。此外,还发现,尽管在干燥时期夜间的蒸发量可以忽略不计,但在降雨事件发生后的夜晚,夜间蒸发量却相当可观(达每日累积通量的30%)。我们的结果进一步表明,在干燥条件下,表层土壤水分的空间变异性最高。最后,我们报告降雨事件后蒸发速率存在强烈的空间异质性。在五天的时间内,不同采样点的累积蒸发量从0.1到6.6毫米不等。总的来说,这项研究使我们能够更好地了解沙漠普拉亚斯土壤水分动态以及偶尔降雨后蒸发的潜在机理。

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