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Bi-criteria evaluation of the MIKE SHE model for a forested watershed on the South Carolina coastal plain

机译:南卡罗来纳州沿海平原森林流域的MIKE SHE模型的双标准评估

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摘要

Hydrological models are important tools for effective management, conservation and restoration of forested wetlands. The objective of this study was to test a distributed hydrological model, MIKE SHE, by using bi-criteria (i.e., two measurable variables, streamflow and water table depth) to describe the hydrological processes in a forested watershed that is characteristic of the lower Atlantic Coastal Plain. Simulations were compared against observations of both streamflow and water table depth measured on a first-order watershed (WS80) on the Santee Experimental Forest in South Carolina, USA. Model performance was evaluated using coefficient of determination (R~2) and Nash-Sutcliffe's model efficiency (E). The E and root mean squared error (RMSE) were chosen as objective functions for sensitivity analysis of parameters. The model calibration and validation results demonstrated that the streamflow and water table depth were sensitive to most of the model input parameters, especially to surface detention storage, drainage depth, soil hydraulic properties, plant rooting depth, and surface roughness. Furthermore, the bi-criteria approach used for distributed model calibration and validation was shown to be better than the single-criterion in obtaining optimum model input parameters, especially for those parameters that were only sensitive to some specific conditions. Model calibration using the bi-criteria approach should be advantageous for constructing the uncertainty bounds of model inputs to simulate the hydrology for this type of forested watersheds. R~2 varied from 0.60-0.99 for daily and monthly streamflow, and from 0.52-0.91 for daily water table depth. E changed from 0.53-0.96 for calibration and 0.51-0.98 for validation of daily and monthly streamflow, while E varied from 0.50-0.90 for calibration and 0.66-0.80 for validation of daily water table depth. This study showed that MIKE SHE could be a good candidate for simulating streamflow and water table depth in coastal plain watersheds.
机译:水文模型是有效管理,保护和恢复森林湿地的重要工具。这项研究的目的是通过使用双标准(即两个可测量的变量,流量和地下水位深度)来描述一个分布在大西洋下游的森林流域的水文过程,从而测试分布式水文模型MIKE SHE。沿海平原。将模拟与在美国南卡罗来纳州Santee实验森林的一阶分水岭(WS80)上测得的水流和地下水位的观测值进行了比较。使用确定系数(R〜2)和Nash-Sutcliffe的模型效率(E)评估模型性能。选择E和均方根误差(RMSE)作为参数敏感性分析的目标函数。模型的校准和验证结果表明,流量和地下水位深度对大多数模型输入参数敏感,特别是对表层滞留量,排水深度,土壤水力特性,植物生根深度和表面粗糙度敏感。此外,在获得最佳模型输入参数(特别是对于仅对某些特定条件敏感的参数)的最佳模型输入参数方面,用于分布式模型校准和验证的双标准方法被证明比单标准更好。使用双标准方法进行模型校准应该有利于构建模型输入的不确定性范围,以模拟此类森林流域的水文学。 R〜2的日流量和月流量分别为0.60-0.99和每日地下水位深度的0.52-0.91。 E的校准值从0.53-0.96更改为每日和每月流量验证的0.51-0.98,而E的校准值从0.50-0.90变为每日水位深度的验证为0.66-0.80。这项研究表明,MIKE SHE可以很好地模拟沿海平原流域的水流和地下水位深度。

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