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From mountains to cities: a novel isotope hydrological assessment of a tropical water distribution system

机译:从山到城市:一种新型同位素水文评估热带水分配系统

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Water use by anthropogenic activities in the face of climate change invokes a better understanding of headwater sources and lowland urban water allocations. Here, we constrained a Bayesian mixing model with stable isotope data (2018-2019) in rainfall (N = 704), spring water (N = 96), and surface water (N = 94) with seasonal isotope sampling (wet and dry seasons) of an urban aqueduct (N = 215) in the Central Valley of Costa Rica. Low delta O-18 rainfall compositions corresponded to the western boundary of the study area, whereas high values were reported to the northeastern limit, reflecting the influence of moisture transport from the Caribbean domain coupled with strong orographic effects over the Pacific slope. The latter is well-depicted in the relative rainfall contributions (west versus east) in two headwater systems: (a) spring (68.7 +/- 3.4 %, west domain) and (b) stream (55.8 +/- 3.9 %, east domain). The aqueduct exhibited a spatial predominance of spring water and surface water during a normal wet season (78.7 %), whereas deep groundwater and spring water were fundamental sources for the aqueduct in the dry season (69.4 %). Our tracer-based methodology can help improve aqueduct management practices in changing climate, including optimal water allocation and reduced evaporative losses in the dry season.
机译:面对气候变化面临的人为活动的用水援引了对散热器来源和低地城市水分配的更好理解。在这里,我们将贝叶斯混合模型限制在降雨(n = 704),弹簧水(n = 96)和季节性同位素采样(湿季和干燥季节)的降雨(n = 704),水痘(n = 96)和地表水(n = 94)中进行贝叶斯混合模型)在哥斯达黎加中央谷的城市渡槽(n = 215)。低δO-18降雨组合物与研究区域的西部边界相对应,而高值据报道,东北极限报告,反映了来自加勒比领域的水分运输的影响与太平洋坡面的强烈地相作用。后者在两种下线系统中的相对降雨贡献(西与东方)中所示:(a)弹簧(68.7 +/- 3.4%,西部域)和(b)流(55.8 +/- 3.9%,东方领域)。在普通湿季节(78.7%)期间,渡槽在泉水和地表水处表现出泉水和地表水的空间优势,而深层地下水和泉水是干燥季节(69.4%)的基本源。我们的追踪方法有助于改善变化气候的渡槽管理实践,包括最佳水分配和旱季蒸发损失。

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