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Extension of the Representative Elementary Watershed approach for cold regions: constitutive relationships and an application

机译:寒冷地区代表性基本分水岭方法的扩展:本构关系及其应用

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摘要

The Representative Elementary Watershed (REW) approach proposed by Reggiani et al. (1998, 1999) represents an attempt to develop a scale adaptable modeling framework for the hydrological research community. Tian et al. (2006) extended the original REW theory for cold regions through explicit treatment of energy balance equations to incorporate associated cold regions processes, such as snow and glacier melting/accumulation, and soil freezing/thawing. However, constitutive relationships for the cold regions processes needed to complete these new balance equations have been left unspecified in this derivation. In this paper we propose a set of closure schemes for cold regions processes within the extended framework. An energy balance method is proposed to close the balance equations of melting/accumulation processes as well as the widely-used and conceptual degree-day method, whereas the closure schemes for soil freezing and thawing are based on the maximum unfrozen-water content model. The proposed closure schemes are coupled to the previously derived balance equations and implemented within the Thermodynamic Watershed Hydrological Model (THModel, Tian, 2006) and then applied to the headwaters of the Urumqi River in Western China. The results of the 5-year calibration and 3-year validation analyses show that THModel can indeed simulate runoff processes in this glacier and snow-dominated catchment reasonably well, which shows the prospects of the REW approach and the developed closure schemes for cold regions processes.
机译:Reggiani等人提出的代表性基本流域(REW)方法。 (1998,1999)代表了为水文研究界发展规模适应性建模框架的尝试。田等。 (2006年)通过对能量平衡方程的显式处理,将原始的REW理论扩展到寒冷地区,以纳入相关的寒冷地区过程,例如雪和冰川融化/积聚以及土壤冻结/融化。但是,在此推导中未指定完成这些新的平衡方程所需的寒冷地区过程的本构关系。在本文中,我们为扩展框架内的寒冷地区流程提出了一套封闭方案。提出了一种能量平衡方法来封闭融化/积累过程的平衡方程,以及广泛使用的概念度日方法,而土壤冻结和解冻的封闭方案则基于最大未冻结水含量模型。拟议的封闭方案与先前导出的平衡方程式耦合,并在热力学流域水文模型(THModel,Tian,2006)中实施,然后应用于中国西部的乌鲁木齐河源头。 5年校准和3年验证分析的结果表明,THModel确实可以很好地模拟该冰川和以雪为主的流域的径流过程,这显示了REW方法的前景以及针对寒冷地区过程开发的封闭方案的前景。 。

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