厄瓜多尔安提萨纳保护区内冰川和páramo集水区联合产生的径流

IF 4.6 Q2 ENVIRONMENTAL SCIENCES
V. Minaya, V. C. Camacho Suarez, J. Wenninger, A. Mynett
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引用次数: 3

摘要

安第斯地区冰川和páramo集水区的径流过程是人们感兴趣的,因为它们对满足周围社区的水需求至关重要。特别是在厄瓜多尔北部,由于降水、年轻火山灰土壤特性、土壤水分动态和其他当地因素的高度可变性,径流过程不太为人所知。先前的研究表明,冰川融化有助于产流,páramo生态系统在低降水时期对径流的调节中起着重要作用。在海拔4000 - 5700 m的15.2 km2流域进行数据收集和实验调查。环境示踪剂和水化学集水区表征用于确定径流来源及其在干湿条件下的各自贡献。干燥条件被定义为至少连续三天没有降水的时期,湿润条件意味着降雨事件。本研究强调了páramo在基流期间对总径流的贡献(占总径流的70%)的重要性,以及páramo在降雨条件下耗散溪流能量和缓冲峰值流量的能力。电导率和稳定同位素被确定为表征端元浓度的保守示踪剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Runoff generation from a combined glacier and páramo catchment within the Antisana Reserve in Ecuador
Abstract Runoff processes in glacier and páramo catchments in the Andean region are of interest as they are vitally important to serve the water needs of surrounding communities. Particularly in Northern Ecuador, the runoff processes are less well-known due to the high variability of precipitation, young volcanic ash soil properties, soil moisture dynamics and other local factors. Previous studies have shown that the melting of glaciers contributes to runoff generation and that the páramo ecosystem plays an important role in regulating runoff during periods of low precipitation. Data collection and experimental investigations were carried out in a catchment of 15.2 km2 and altitude ranging between 4000 and 5700 m above sea level. Environmental tracers and hydrochemical catchment characterization were used for identifying runoff sources and their respective contributions during dry and wet conditions. Dry conditions are defined as periods where precipitation was absent for at least three consecutive days and wet conditions imply rainfall events. This study highlights the importance of the páramo on contributing to total runoff during baseflow (70% of total runoff) and the capacity of the páramo to dissipate the stream energy and buffer the peak flow during rainfall conditions. Electrical conductivity together with stable isotopes were identified as conservative tracers that characterize the end-member concentrations.
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CiteScore
7.10
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