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Distinct stores and the routing of water in the deep critical zone of a snow-dominated volcanic catchment

机译:不同的商店和雪花占火山集水区深临界区的水路

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This study combines major ion and isotope chemistry, age tracers, fracture density characterizations, and physical hydrology measurements to understand how the structure of the critical zone (CZ) influences its function, including water routing, storage, mean water residence times, and hydrologic response. In a high elevation rhyolitic tuff catchment in the Jemez River Basin Critical Zone Observatory (JRB-CZO) within the Valles Caldera National Preserve (VCNP) of northern New Mexico, a periodic precipitation pattern creates different hydrologic flow regimes during spring snowmelt, summer monsoon rain, and fall storms. Hydrometric, geochemical, and isotopic analyses of surface water and groundwater from distinct stores, most notably shallow groundwater that is likely a perched aquifer in consolidated collapse breccia and deeper groundwater in a fractured tuff aquifer system, enabled us to untangle the interactions of these groundwater stores and their contribution to streamflow across 1 complete water year (WY).
机译:本研究结合了主要的离子和同位素化学,年龄示踪剂,断裂密度表征和物理水文测量,以了解临界区(CZ)的结构如何影响其功能,包括水路,储存,平均水停留时间和水文反应。在Jemez River河流域临界区观测所(JRB-CZO)的高海拔Rhyolitic Tuff集水区内,在新墨西哥北部的Valles Caldera National Preserve(VCNP)内,夏季冬季雨水剧中的周期性降水模式会产生不同的水文流动制度和暴风雨。从不同的商店的表面水和地下水的水测量,地球化学和同位素分析,最值得注意的是浅层地下水,可能在综合折叠Breccia和较深地下水中的骨折污染患者系统,使我们能够解开这些地下水商店的相互作用以及他们对1个完整的水年度(WY)的流出的贡献。

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