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Effects of Air Temperature and Precipitation on Soil Moisture on the Qinghai-Tibet Plateau during the 2015 Growing Season

机译:2015年生长季节青藏高原土壤水分对土壤水分的影响

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The Qinghai-Tibet Plateau (QTP) holds massive freshwater resources and is one of the most active regions in the world with respect to the hydrological cycle. Soil moisture (SM) plays a critical role in hydrological processes and is important for plant growth and ecosystem stability. To investigate the relationship between climatic factors (air temperature and precipitation) and SM during the growing season in various climate zones on the QTP, data from three observational stations were analyzed. The results showed that the daily average (Tave) and minimum air temperatures (Tmin) significantly influenced SM levels at all depths analyzed (i.e., 10, 20, 30, 40, and 50?cm deep) at the three stations, and Tmin had a stronger effect on SM than did Tave. However, the daily maximum air temperature (Tmax) generally had little effect on SM, although it had showed some effects on SM in the middle and deeper layers at the Jiali station. Precipitation was an important factor that significantly influenced the SM at all depths at the three stations, but the influence on SM in the middle and deep layers lagged the direct effect on near-surface SM by 5–7 days. These results suggest that environment characterized by lower temperatures and higher precipitation may promote SM conservation during the growing season and in turn support ecosystem stability on the QTP.
机译:青藏高原(QTP)拥有巨大的淡水资源,是世界上最活跃的水文循环中最活跃的地区之一。土壤水分(SM)在水文过程中起着关键作用,对植物生长和生态系统稳定性很重要。为了调查QTP上各种气候区生长季节期间气候因子(空气温度和降水)和SM之间的关系,分析了来自三个观测站的数据。结果表明,每日平均(助理)和最小空气温度(Tmin)在三个站点分析的所有深度(即10,20,30,40和50厘米)的所有深度下显着影响SM水平,并且Tmin具有对SM的效果比追求更强。然而,每日最大空气温度(Tmax)通常对SM没有几乎没有影响,尽管它对Jiali站的中间层和深层的SM显示了一些影响。沉淀是三个站的所有深度都显着影响SM的重要因素,但中间层和深层SM的影响落后于5-7天的接近表面SM的直接效果。这些结果表明,由于温度较低和较高降水量的环境可能会促进生长季节期间的SM保护,而且支持QTP上的生态系统稳定性。

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