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Implementation of a two-way coupled atmospheric-hydrological system for environmental modeling at regional scale

机译:在区域尺度上实现双向耦合大气水文学系统的环境建模

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This work describes the two-way coupling performed between the regional atmospheric model Brazilian Regional Atmospheric Modeling System (BRAMS) and the hydrological model MGB-IPH. As a first step of the atmosphere-hydrology coupling, only the water balance variables were coupled. Differences in temporal and spatial scales between MGH-IPH and BRAMS were analyzed. By default, MGB-IPH has a daily time step whereas BRAMS uses smaller time steps. Thus, accumulated rainfall values from BRAMS were used to feed MGB-IPH. On the other hand, daily values of evapotranspiration from MGB-IPH were provided to BRAMS. This procedure was assumed as a daily loop in the simulations. Differences in spatial scales were avoided by using the same grid size (10 × 10 km) in both models, in such a way that neither upscaling nor downscaling was necessary. The coupled system was tested for the Rio Grande basin situated in south-eastern Brazil by comparing results from BRAMS with results from the coupled system for the same period, with the same input data. Outputs from the runs were compared to water vapor satellite images. The results from the coupled model tests indicated that its predictions of rainfall distribution were more accurate than BRAMS.
机译:这项工作描述了区域大气模型巴西区域大气建模系统(BRAMS)与水文模型MGB-IPH之间的双向耦合。作为大气水文学耦合的第一步,仅耦合水平衡变量。分析了MGH-IPH和BRAMS在时间和空间尺度上的差异。默认情况下,MGB-IPH具有每日时间步长,而BRAMS使用较小的时间步长。因此,BRAMS的累积降雨值被用于饲喂MGB-IPH。另一方面,将每日MGB-IPH的蒸散量提供给BRAMS。该过程被假定为模拟中的日常循环。通过在两个模型中使用相同的网格尺寸(10×10 km),避免了空间比例上的差异,从而既不需要放大也不需要缩小比例。通过将BRAMS的结果与同期的耦合系统的结果与相同的输入数据进行比较,对巴西东南部的里奥格兰德盆地进行了耦合系统测试。将运行的输出与水蒸气卫星图像进行比较。耦合模型试验的结果表明,其降雨分布的预测比BRAMS更准确。

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