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首页> 外文期刊>Hydrology and Earth System Sciences >The importance of parameterization when simulating the hydrologic response of vegetative land-cover change
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The importance of parameterization when simulating the hydrologic response of vegetative land-cover change

机译:在模拟营养土地覆盖变化的水文响应时参数化的重要性

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Computer models of hydrologic systems are frequently used to investigate the hydrologic response of land-cover change. If the modeling results are used to inform resource-management decisions, then providing robust estimates of uncertainty in the simulated response is an important consideration. Here we examine the importance of parameterization, a necessarily subjective process, on uncertainty estimates of the simulated hydrologic response of land-cover change. Specifically, we applied the soil water assessment tool (SWAT) model to a 1.4 km(2) watershed in southern Texas to investigate the simulated hydrologic response of brush management (the mechanical removal of woody plants), a discrete land-cover change. The watershed was instrumented before and after brush-management activities were undertaken, and estimates of precipitation, streamflow, and evapotranspiration (ET) are available; these data were used to condition and verify the model. The role of parameterization in brush-management simulation was evaluated by constructing two models, one with 12 adjustable parameters (reduced parameterization) and one with 1305 adjustable parameters (full parameterization). Both models were subjected to global sensitivity analysis as well as Monte Carlo and generalized likelihood uncertainty estimation (GLUE) conditioning to identify important model inputs and to estimate uncertainty in several quantities of interest related to brush management. Many realizations from both parameterizations were identified as "behavioral" in that they reproduce daily mean streamflow acceptably well according to Nash-Sutcliffe model efficiency coefficient, percent bias, and coefficient of determination. However, the total volumetric ET difference resulting from simulated brush management remains highly uncertain after conditioning to daily mean streamflow, indicating that streamflow data alone are not sufficient to inform the model inputs that influence the simulated outcomes of brush management the most. Additionally, the reduced-parameterization model grossly underestimates uncertainty in the total volumetric ET difference compared to the full-parameterization model; total volumetric ET difference is a primary metric for evaluating the outcomes of brush management. The failure of the reduced-parameterization model to provide robust uncertainty estimates demonstrates the importance of parameterization when attempting to quantify uncertainty in land-cover change simulations.
机译:水文系统的计算机模型经常用于研究陆地覆盖变化的水文响应。如果模拟结果用于通知资源管理决策,则在模拟响应中提供不确定性的强大估计是重要的考虑因素。在这里,我们研究了参数化,必要主观过程的重要性,了解陆地变化的模拟水文响应的不确定性估计。具体而言,我们将土壤水评估工具(SWAT)模型应用于德克萨斯州南部的1.4公里(2)分水岭,以研究刷子管理的模拟水文响应(木质植物的机械去除),是离散的陆地覆盖变化。在进行刷子管理活动之前和之后,流域被仪器化,并且可以获得降水,流流和蒸发蒸腾(ET)的估计;这些数据用于条件并验证模型。参数化在刷子管理模拟中的作用是通过构造两个模型来评估,其中一个具有12个可调参数(减少参数化)和1305个可调参数(完整参数化)。两种模型都受到全局敏感性分析以及蒙特卡罗和广义似然性不确定性估计(胶水)调节,以确定重要的模型输入,并估计与刷子管理有关的数量有关的不确定性。从两个参数化的许多实现被识别为“行为”,因为它们根据纳什 - Sutcriffe模型效率系数,偏差百分比和确定系数可接受地再现每日平均流流。然而,由模拟画笔管理产生的总量ET差异仍然高度不确定,在调理到每日平均流流程后,表示单独的流流数据不足以通知模型输入,这些输入可能最多地影响模拟刷子管理的模拟结果。另外,与全参数化模型相比,减少参数化模型在总体积常态差的总体上粗略地低估了;总体积差异是评估刷子管理结果的主要指标。减少参数化模型的失败来提供稳健的不确定性估计,展示了参数化在尝试量化陆地变化模拟中的不确定性时的重要性。

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