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Influence of climate variability on water partitioning and effective energy and mass transfer in a semi-arid critical zone

机译:半干旱临界区气候变化对水分配及有效能量和质量传递的影响

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The critical zone (CZ) is the heterogeneous, near-surface layer of the planet that regulates life-sustaining resources. Previous research has demonstrated that a quantification of the influxes of effective energy and mass transfer (EEMT) to the CZ can predict its structure and function. In this study, we quantify how climate variability in the last 3 decades (1984–2012) has affected water availability and the temporal trends in EEMT. This study takes place in the 1200?kmsup2/sup upper Jemez River basin in northern New Mexico. The analysis of climate, water availability, and EEMT was based on records from two high-elevation SNOTEL stations, PRISM data, catchment-scale discharge, and satellite-derived net primary productivity (MODIS). Results from this study indicated a decreasing trend in water availability, a reduction in forest productivity (4?g?C?msup?2/sup per 10?mm of reduction in precipitation), and decreasing EEMT (1.2–1.3?MJ?msup2/sup?decadesup?1/sup). Although we do not know the timescales of CZ change, these results suggest an upward migration of CZ/ecosystem structure on the order of 100?m?decadesup?1/sup, and that decadal-scale differences in EEMT are similar to the differences between convergent/hydrologically subsidized and planar/divergent landscapes, which have been shown to be very different in vegetation and CZ structure.
机译:临界区(CZ)是行星的异质近地表层,可调节维持生命的资源。先前的研究表明,对CZ的有效能量和质量转移(EEMT)涌入的量化可以预测其结构和功能。在这项研究中,我们量化了过去3年(1984-2012年)的气候变化如何影响水的可利用性和EEMT的时间趋势。这项研究发生在新墨西哥州北部杰米斯河上游1200?km 2 盆地。对气候,水资源和EEMT的分析是基于两个高海拔SNOTEL站的记录,PRISM数据,集水规模流量和卫星衍生的净初级生产力(MODIS)。这项研究的结果表明,可用水量呈下降趋势,森林生产力下降(每减少10毫米降水量就会减少4微克g?C?m ?2 ),EEMT也会降低(1.2– 1.3?MJ?m 2 ?decade ?1 )。尽管我们不知道CZ变化的时间尺度,但这些结果表明CZ /生态系统结构向上迁移的数量级为100?m?decade ?1 ,并且EEMT的年代际尺度差异为类似于会聚/水文补贴和平面/分歧景观之间的差异,这在植被和CZ结构上已显示出很大差异。

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