亚马逊西部流域SWAT模型水文沉积参数的敏感性:MACHADINHO/RO河流域

V. Souza, Marcos Leandro Alves Nunes, O. Filho, C. Andrade, V.P.A. Rebello
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引用次数: 0

摘要

本研究对SWAT模型参数进行了敏感性分析,以找到一个最优集合,该集合证明该模型对Rondônia Machadinho河流域的水流和泥沙生产更可靠。最初,建立了一个数据库,包括从轨道平台检索的气候信息、地形、土地利用和土壤分类,使他们能够模拟1995年至2000年流域的水文行为。下一步,我们利用LH-OAT方法,对影响SWAT流域流沙生成的32个参数,从最敏感的参数到敏感度最低的参数进行排序。总体而言,本研究中模型参数的敏感性与巴西其他研究结果相似,突出表明对流动的两个最高敏感性值与Gwqmn和Sol_Awc有关,分别对应于雾带和饱和带的流动,而对于泥沙分量,SWAT模型适用于1 *Doutorando em Engenharia Civil pelo Programa de Engenharia Civil, COPPE,里约热内卢联邦大学。vass1000@gmail.com。3 Laboratório de Recursos Hídricos e Meio Ambiente (LABH2O),项目de Engenharia Civil, Alberto Luiz Coimbra研究所Pós-Graduação e Pesquisa em Engenharia COPPE,里约热内卢联邦大学,Ilha do fundade - Cidade校园Universitária, Caixa Postal 68540, CEP 21.945-970 -里约热内卢RJ,巴西。
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SENSIBILIDADE DOS PARÂMETROS HIDROSSEDIMENTOLÓGICOS DO MODELO SWAT EM UMA BACIA NA AMAZÔNIA OCIDENTAL: BACIA DO RIO MACHADINHO/RO
This work performs a sensitivity analysis of the SWAT model parameters to find an optimal set for which the model proves more robust for the production of flow and sediment in the Machadinho river watershed in Rondônia. Initially, a database was built, including climate information, topography, land use and soil classification retrieved from orbital platforms, what allowed then to simulate the hydrological behavior of the watershed from 1995 to 2000. In the next step, we used the LH-OAT method to rank from the most sensitive parameter to the one with the lowest sensitivity, the 32 parameters that influence the generation of flow and sediment in SWAT. In general, the sensitivity observed forthe model parameters in this research work was similar to the results presented in other studies developed in Brazil, highlighting that the two highest sensitivity values to flow were related to Gwqmn and Sol_Awc, both corresponding to the flow in the vadoze zone and in the saturated zone, while for the sediment component, the SWAT model applied to the 1 *Doutorando em Engenharia Civil pelo Programa de Engenharia Civil, COPPE, Universidade Federal do Rio de Janeiro. vass1000@gmail.com. 2 Mestre em Engenharia Civil Programa de Engenharia Civil, COPPE, Universidade Federal do Rio de Janeiro. 3 Laboratório de Recursos Hídricos e Meio Ambiente (LABH2O), Programa de Engenharia Civil, Instituto Alberto Luiz Coimbra de Pós-Graduação e Pesquisa em Engenharia – COPPE, Universidade Federal do Rio de Janeiro, Campus Ilha do Fundão – Cidade Universitária, Caixa Postal 68540, CEP 21.945-970 – Rio de Janeiro RJ, Brasil.
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