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BASINS/HSPF: model use, calibration, and validation. (Special Issue: Model use, calibration, and validation.)

机译:BASINS / HSPF:模型使用,校准和验证。 (特刊:模型的使用,校准和验证。)

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This article presents recommendations by model developers and the authors about calibration and validation procedures for the Hydrological Simulation Program-Fortran (HSPF) as applied through BASINS. HSPF is a continuous simulation watershed model that simulates nonpoint-source runoff and pollutant loadings for a watershed and performs flow and water quality routing in stream reaches and well-mixed lakes and impoundments. HSPF can be used to estimate nonpoint-source loads from various land uses as well as fate and transport processes in streams and lakes. This article describes the ideal calibration and validation process for the full range of constituents modeled by HSPF, as well as the process for acceptable minimum calibration and validation of this model. The model information and guidance provided in this article may be used to help in determining the scope of the proposed ASABE Standard/Engineering Practice for model calibration and validation. Model calibration and validation are necessary and critical steps in any model application. For HSPF and most other watershed models, calibration is an iterative procedure of parameter evaluation and refinement, as a result of comparing simulated and observed values of interest. Model validation is in reality an extension of the calibration process. Its purpose is to ensure that the calibrated model properly assesses all the variables and conditions that can affect model results, and to demonstrate the ability to predict field observations for periods separate from the calibration effort. For HSPF calibration and validation, a "weight of evidence" approach is most widely used in practice when models are examined and judged for acceptance for assessment and regulatory purposes. This article explores the "weight of evidence" approach and the current practice of watershed model calibration and validation based on more than 30 years of experience with HSPF. Example applications are described and model results are shown to demonstrate the graphical and statistical procedures used to assess model performance. In addition, quantitative criteria for various statistical measures are discussed as a basis for evaluating model results and documenting the model application efforts.
机译:本文向模型开发人员和作者提供有关通过BASINS应用的Fortran水文模拟程序(HSPF)的校准和验证程序的建议。 HSPF是一个连续模拟分水岭模型,可以模拟流域的非点源径流和污染物负荷,并在河段和湖泊和蓄水池充分混合的情况下执行流量和水质路由。 HSPF可用于估算各种土地利用以及河流和湖泊的命运和运输过程中的非点源负荷。本文介绍了通过HSPF建模的所有成分的理想校准和验证过程,以及该模型可接受的最小校准和验证过程。本文提供的模型信息和指南可用于帮助确定建议的ASABE标准/工程实践的范围,以进行模型校准和验证。在任何模型应用程序中,模型校准和验证都是必要且关键的步骤。对于HSPF和大多数其他分水岭模型,校准是对参数的仿真和观察值进行比较的结果,是参数评估和细化的迭代过程。实际上,模型验证是校准过程的扩展。其目的是确保校准后的模型正确评估会影响模型结果的所有变量和条件,并展示预测与校准工作分开的时间段内的现场观测值的能力。对于HSPF校准和验证,在实践中,在检查和判断模型是否可接受以进行评估和监管时,“证据权重”方法是最广泛使用的方法。本文基于30多年的HSPF经验,探讨了“证据权重”方法以及分水岭模型校准和验证的当前实践。描述了示例应用程序,并显示了模型结果,以演示用于评估模型性能的图形和统计程序。此外,还讨论了各种统计量的定量标准,以此作为评估模型结果和记录模型应用工作的基础。

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