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Evaluation of the 15 July 2009 Fiordland, New Zealand Tsunami in the Source Region

机译:2009年7月15日对新西兰峡湾地区海啸的评估

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We undertake detailed near-field numerical modelling of the tsunami generated by the 15 July 2009 earthquake (Mw 7. 8) in Fiordland, New Zealand. High resolution bathymetry and topography data at Breaksea and Dusky Sounds, and Chalky and Preservation Inlets are derived mostly from digitised New Zealand nautical charts, Shuttle Radar Topographic Mission (SRTM) 3 arc-second data, and General Bathymetric Chart of the Ocean (GEBCO) 30 s data. A combination of continuous and campaign Global Positioning System (GPS), satellite radar (ALOS/PALSAR InSAR images) and seismology data are used to constrain the seafloor deformation for the initial tsunami condition. This source model, derived independently of DART observations, provides an excellent fit to observed tsunami elevations recorded by DART buoy 55015. The model results in the near field show maximum tsunami elevations in the range 0.5-2.0 m inside the sounds and inlets with maximum flow speeds of 3. 0 m/s. Along the open coast, maximum tsunami elevations reach 2.0 m. The high flow speeds through the inlets may change the inlet stratifications and water mass inside the sounds. Media reports and field reconnaissance data show some tsunami evidence at Cormorant Cove, Duck and Goose Coves, and Passage Point.
机译:我们对2009年7月15日新西兰Fiordland地震(Mw 7. 8)引起的海啸进行了详细的近场数值模拟。 Breaksea和Dusky Sounds以及Chalky和Preservation Inlet的高分辨率测深和地形数据主要来自于新西兰的数字化海图,航天飞机雷达地形任务(SRTM)3弧秒数据和海洋一般测深图(GEBCO) 30 s的数据。连续和运动全球定位系统(GPS),卫星雷达(ALOS / PALSAR InSAR图像)和地震学数据的组合被用来约束海啸在初始海啸条件下的变形。此源模型独立于DART观测值而得出,非常适合DART浮标55015记录的观测海啸高程。在近场中的模型结果显示,声音和入口内部最大海啸高程在0.5-2.0 m范围内,且流量最大速度为3. 0 m / s。沿开阔海岸,最大海啸标高达到2.0 m。通过入口的高流速可能会改变声音内的入口分层和水量。媒体报道和现场侦查数据显示,在Cormorant Cove,Duck and Goose Coves和Passage Point有一些海啸证据。

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