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MIKE SHE: model use, calibration, and validation. (Special Issue: Model use, calibration, and validation.)

机译:MIKE SHE: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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摘要

MIKE SHE is a physically based, integrated water resources model that simulates both surface and subsurface water dynamics. These dynamics include interception, evapotranspiration, overland flow, channel flow, unsaturated flow, and saturated zone flow. The model can also simulate limited surface water quality processes using the advection dispersion equation and groundwater quality with a random-walk tracking method. This article is intended to describe the components of MIKE SHE and its calibration, validation, and applications. Given the deterministic, physically based characteristics of MIKE SHE and the large number of processes it simulates simultaneously, the number of parameters to calibrate can be large. A combination of user experience with the model, knowledge of the problem being solved, and an automatic calibration feature help in selecting the most sensitive parameters to calibrate. A case study describing the use of the MIKE SHE model, coupled with the hydraulic MIKE 11 model, to solve water flow in agricultural reservoirs in south Florida is presented. The problem required the use of the MIKE SHE model due to the high groundwater and overland flow interactions as well as the complex flow patterns inside the reservoir. The horizontal and vertical saturated hydraulic conductivities and the leakage coefficient were identified as the calibration parameters. The model was calibrated and evaluated for two reservoirs using two different time periods. Results showed matching between measured and simulated data for both reservoirs for the calibration and validation periods. The coupled MIKE SHE/MIKE 11 model has the capabilities to simulate complex hydrological processes and their interactions, which few other watershed models can match, and is suitable for current problems, such as the effects of climate change and land use change.
机译:MIKE SHE是基于物理的集成水资源模型,可模拟地表水和地下水动力学。这些动态包括拦截,蒸散,陆上流量,河道流量,非饱和流量和饱和带流量。该模型还可以使用对流扩散方程和地下水质量(采用随机游走追踪方法)来模拟有限的地表水质量过程。本文旨在描述MIKE SHE的组件及其校准,验证和应用。鉴于MIKE SHE具有确定性的,基于物理的特性以及它同时模拟的大量过程,因此要校准的参数数量可能很大。用户经验与模型,要解决的问题的知识以及自动校准功能的结合,有助于选择最敏感的参数进行校准。提出了一个案例研究,该案例描述了如何使用MIKE SHE模型以及液压MIKE 11模型来解决佛罗里达州南部农业水库中的水流。由于地下水和陆上的高水流相互作用以及水库内复杂的水流模式,该问题需要使用MIKE SHE模型。确定水平和垂直饱和水力传导率和泄漏系数作为校准参数。使用两个不同的时间段对两个储层的模型进行了校准和评估。结果表明,在校准和验证期间,两个储层的实测数据和模拟数据都匹配。耦合的MIKE SHE / MIKE 11模型具有模拟复杂水文过程及其相互作用的功能,而其他分水岭模型几乎无法匹配,并且适用于当前的问题,例如气候变化和土地利用变化的影响。

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