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ORCHIDEE-ROUTING: revising the river routing scheme using a high-resolution hydrological database

机译:ORCHIDEE-ROUTING:使用高分辨率水文数据库修改河流路由方案

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The river routing scheme (RRS) in the Organising Carbon and Hydrology in Dynamic Ecosystems (ORCHIDEE) land surface model is a valuable tool for closing the water cycle in a coupled environment and for validating the model performance. This study presents a revision of the RRS of the ORCHIDEE model that aims to benefit from the high-resolution topography provided by the Hydrological data and maps based on SHuttle Elevation Derivatives at multiple Scales (HydroSHEDS), which is processed to a resolution of approximately 1?km. Adapting a new algorithm to construct river networks, the new RRS in ORCHIDEE allows for the preservation of as much of the hydrological information from HydroSHEDS as the user requires. The evaluation focuses on 12?rivers of contrasting size and climate which contribute freshwater to the Mediterranean Sea. First, the numerical aspect of the new RRS is investigated, in order to identify the practical configuration offering the best trade-off between computational cost and simulation quality for ensuing validations. Second, the performance of the new scheme is evaluated against observations at both monthly and daily timescales. The new RRS satisfactorily captures the seasonal variability of river discharge, although important biases stem from the water budget simulated by the ORCHIDEE model. The results highlight that realistic streamflow simulations require accurate precipitation forcing data and a precise river catchment description over a wide range of scales, as permitted by the new RRS. Detailed analyses at the daily timescale show the promising performance of this high-resolution RRS with respect to replicating river flow variation at various frequencies. Furthermore, this RRS may also eventually be well adapted for further developments in the ORCHIDEE land surface model to assess anthropogenic impacts on river processes (e.g. damming for irrigation operation).
机译:动态生态系统组织碳与水文学(ORCHIDEE)地表模型中的河流路由方案(RRS)是在耦合环境中关闭水循环并验证模型性能的宝贵工具。这项研究提出了ORCHIDEE模型的RRS修订版,旨在从水文数据和基于多尺度Shuttle高程导数(HydroSHEDS)的水文数据和地图提供的高分辨率地形中受益,该高分辨率地形被处理为大约1公里。 ORCHIDEE中的新RRS适应了构建河网的新算法,可以根据用户的需要保存来自HydroSHEDS的尽可能多的水文信息。评估的重点是大小和气候截然不同的12个河流,它们为地中海注入了淡水。首先,研究了新的RRS的数值方面,以便确定可在随后进行验证的计算成本与仿真质量之间取得最佳折衷的实用配置。其次,根据每月和每天时间尺度上的观察评估新方案的性能。尽管ORCHIDEE模型模拟的水资源预算存在重要偏差,但新的RRS令人满意地捕获了河流流量的季节性变化。结果表明,新RRS允许,现实的水流模拟需要精确的降水强迫数据和在大范围内的准确的流域描述。在每日时间尺度上进行的详细分析显示,在复制不同频率的河流流量变化方面,高分辨率RRS具有令人鼓舞的性能。此外,该RRS最终也可能会很好地适应ORCHIDEE地表模型的进一步发展,以评估人为因素对河流过程的影响(例如,灌溉作业的筑坝)。

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