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Development of operational multi-scale storm surge inundated model and application of 2013 typhoon Haiyan

机译:2013台台风海燕运营多尺度风暴浪涌淹没模型及应用的发展

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The coastal regions in Eastern Asia are under the potential threat of storm surges, especially the surge inundation caused by typhoons. In this study, the COMCOT (COrnell Multi-grid Coupled Tsunami Model) storm surge model has been developed for the approach of operational process and successfully coupled with dynamic atmospheric WRF model and global tidal TPXO 7.1 model. The large-scale and near-shore storm surge propagation could be simulated simultaneously with nested-grid scheme, and high-resolution inundated areas could also be calculated from the wet-dry-cell method. The destructive storm surge event induced by 2013 Typhoon Haiyan is chosen as the case study in this research, and the non-symmetric WRF fields and TPXO tidal effect are both considered in this case. From simulated results, the storm surges are concentric before Typhoon Haiyan landing off the Philippines because the pressure gradient was significant at that time, and then storm surges are concentrated at near-shore regions when wind shear stress turn to be the main force after landing off. The relationship between maximum storm surges and typhoon crack is also found in this study. More details would be presented at 2016 IUTAM Symposium.
机译:东亚的沿海地区受到风暴潮的潜在威胁,特别是由台风造成的浪涌淹没。在这项研究中,已经开发了COMCOT(康奈尔多电网耦合海啸模型)风暴浪涌模型,用于运行过程的方法,并成功耦合动态大气WRF模型和全局潮汐TPXO 7.1模型。可以通过嵌套 - 电网方案同时模拟大规模和近岸风暴浪涌传播,并且还可以根据湿冷细胞法计算高分辨率淹没区域。选择了2013年台风海燕引起的破坏性风暴浪涌活动作为本研究的案例研究,在这种情况下,非对称WRF字段和TPXO潮汐效应都被认为。从模拟结果中,由于压力梯度在当时的压力梯度显着,风暴潮是同心的,因为当时的压力梯度显着,然后当风剪切应力转动到降落后的主力时,风暴浪涌集中在近岸区域。 。在本研究中也发现了最大风暴潮和台风裂纹之间的关系。 2016年IUTAM研讨会将提供更多详细信息。

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