首页> 外文期刊>Water resources research >Tracer-Aided Modeling in the Low-Relief, Wet-Dry Tropics Suggests Water Ages and DOC Export Are Driven by Seasonal Wetlands and Deep Groundwater
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Tracer-Aided Modeling in the Low-Relief, Wet-Dry Tropics Suggests Water Ages and DOC Export Are Driven by Seasonal Wetlands and Deep Groundwater

机译:低浮雕湿润的热带地区的示踪辅助建模表明,季节性湿地和深层地下水驱动的水时效和DOC导出

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摘要

Our understanding of how wet-dry tropical catchments process water and solutes remains limited. In this study, we attempt to gain understanding of water and dissolved organic carbon (DOC) transport, storage, and mixing in a 126 km(2) catchment of northern Australia. We developed a coupled, tracer-aided, conceptual rainfall-runoff model (SAVTAM) that simultaneously calculates water, isotope, and DOC-based processes at a daily time step. The semidistributed model can account for the marked hydrological distinction between savanna woodlands and adjacent seasonal wetlands. Using the calibrated model, we tracked the fluxes and derived the age of water in fluxes and storages. Model output matched the seasonal variability, controlled by seasonal rainfall, which switched on and off water and carbon flow pathways from the savanna to seasonal wetlands and ultimately to the perennial river. Such hydrological connectivity is modulated by the karst aquifer system that continuously contributes older waters (decades to century old) to maintain relatively stable and older streamflow during the dry season (average stream water age = 9.7 to 16.2 years). Such older waters occur despite a rapid, monsoon-driven streamflow response. The DOC fluxes were largely sourced from the wetland and riparian forest that transported DOC in the order of 1.9 t C km(-2) year(-1) to the stream, which was on average 90% of the total simulated DOC exports of 2 t C.km(-2).year(-1). We conclude that coupled simulation of water and biogeochemistry is necessary to generate a more complete picture of catchment functioning, particularly in the tropics.Key PointsWe present the first model to simultaneously and successfully predict flows, isotopic composition, and DOC in a complex tropical catchment Seasonal wetlands contribute on average 90% of total DOC export and extreme events up to 10% per day Deep dolomite aquifer modulates stream water ages
机译:我们理解湿干热带地区的处理水和溶质仍然有限。在这项研究中,我们试图在澳大利亚北部126公里(2)个集水区中,了解水和溶解的有机碳(DOC)运输,储存和混合。我们开发了一种耦合,示踪的辅助概念降雨 - 径流模型(SAVTAM),同时计算日常时间步长计算水,同位素和基于DOC的过程。半分布式模型可以考虑大草原林地与邻近季节性湿地之间的明显水文区别。使用校准模型,我们跟踪了助焊剂,并在助条和储存中衍生出水的年龄。模型输出符合季节性降雨量控制的季节性变异性,其从大草原到季节性湿地的水和碳流途径接通和碳流动途径,最终沿着多年生河流。这种水文连接由喀斯特含水层系统调节,该系统连续贡献较旧的水域(数十年到Century Ord),在干燥季节(平均流水时代= 9.7至16.2岁)保持相对稳定和较旧的流流。尽管快速,季风驱动的流流响应,这种较旧的水域也会发生这种较旧的水域。 DOC助焊剂主要来自湿地和河岸森林,以1.9 T C KM(-2)年(-1)的顺序运送DOC,平均占模拟DOC出口总量的90% T C.KM(-2).Year(-1)。我们得出结论,需要耦合的水和生物地球化学模拟,以产生更完整的集水功能,特别是在热带地区.Key Pointswe在复杂的热带集水区季节性中呈现第一种模型,并成功地预测流动,同位素组成和文档湿地平均贡献了10%的Doc出口和极端事件每天10%深度白云石含水层调制流水年龄

著录项

  • 来源
    《Water resources research》 |2020年第4期|e2019WR026175.1-e2019WR026175.20|共20页
  • 作者单位

    Univ Costa Rica Dept Geog San Jose Costa Rica|Univ Costa Rica Water & Global Change Observ San Jose Costa Rica|Univ Aberdeen Northern Rivers Inst Aberdeen Scotland;

    Charles Darwin Univ Res Inst Environm & Livelihoods Darwin NT Australia;

    Univ Costa Rica Dept Geog San Jose Costa Rica|Univ Costa Rica Water & Global Change Observ San Jose Costa Rica;

    James Cook Univ Coll Sci Technol & Engn Cairns Qld Australia;

    Southern Cross Univ Southern Cross Geosci Lismore NSW Australia;

    Charles Darwin Univ Res Inst Environm & Livelihoods Darwin NT Australia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    wet-dry tropics; tracer-aided models; water age; DOC; savanna woodland; wetland;

    机译:湿干燥的热带地带;示踪件辅助模型;水时代;DOC;犹大林地;湿地;

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