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首页> 外文期刊>Journal of Hydrology >Preserving high-resolution surface and rainfall data in operational-scale basin hydrology: a fully-distributed physically-based approach
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Preserving high-resolution surface and rainfall data in operational-scale basin hydrology: a fully-distributed physically-based approach

机译:在运营规模的流域水文学中保存高分辨率的地面和降雨数据:基于物理的完全分布式方法

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摘要

This study presents various aspects of the continuous simulation capabilities of a fully-distributed, triangulated irregular network (TIN) hydrologic model. The TIN-based Real-time Integrated Basin Simulator (tRIBS) is calibrated and verified for the Baron Fork at Eldon, Illinois River at Watts, and Blue River at Blue over the period 1993-2000. Computational effort is significantly reduced by simulating complex watersheds using a multiple resolution mesh to represent terrain. Model performance is assessed by comparing streamflow predictions to observations at the basin outlet and interior gauging stations. In addition, simulation results describing the distributed basin response to atmospheric forcing are discussed, including the spatial and temporal variability of runoff, surface soil moisture, evaporative flux, and groundwater table position. By modeling the land-surface water and energy states and fluxes over the computational domain in an efficient manner, the potential for utilizing fully-distributed models at the scales of operational hydrologic forecasting is realized. Through the spatially-explicit approach, high-resolution remote sensing data describing surface properties, topography, rainfall, and soil moisture can be integrated directly into a predictive hydrologic model. A greater degree of physical interpretation of hydrological estimation can thus be added to existing methods of operational forecasting. (C) 2004 Elsevier B.V. All rights reserved.
机译:这项研究提出了一个完全分布式的三角不规则网络(TIN)水文模型的连续模拟能力的各个方面。在1993-2000年期间,对基于TIN的实时综合盆地仿真器(tRIBS)进行了校准和验证,用于Eldon的男爵叉子,Watts的伊利诺伊河和Blue的Blue River。通过使用多分辨率网格代表地形来模拟复杂的分水岭,可显着减少计算量。通过将流量预测值与盆地出口和内部计量站的观测值进行比较来评估模型性能。此外,讨论了描述分布式盆地对大气强迫的响应的模拟结果,包括径流,表层土壤水分,蒸发通量和地下水位的时空变化。通过有效地对计算域内的地表水和能量状态以及通量进行建模,可以实现在业务水文预报规模上利用完全分布式模型的潜力。通过空间明晰的方法,可以将描述表面特性,地形,降雨和土壤湿度的高分辨率遥感数据直接集成到预测水文模型中。因此,可以将更大程度的水文估算的物理解释添加到现有的运营预测方法中。 (C)2004 Elsevier B.V.保留所有权利。

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