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首页> 外文期刊>Bulletin of Volcanology: Journal of the International Association of Volcanology and Chemistry of the Earth s Interior >Lava flow mapping and volume calculations for the 2012-2013 Tolbachik, Kamchatka, fissure eruption using bistatic TanDEM-X InSAR
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Lava flow mapping and volume calculations for the 2012-2013 Tolbachik, Kamchatka, fissure eruption using bistatic TanDEM-X InSAR

机译:使用双站TanDEM-X InSAR对2012-2013年堪察加半岛托尔巴奇克火山裂隙的熔岩流图和体积计算

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The bistatic acquisition mode of the German TanDEM-X radar satellite mission provides a reliable source for measuring morphological changes associated with volcanic activity. We present the use of this system to measure key lava flow parameters including thickness, volume, runout, and flow extent by using two TanDEM-X data pairs to generate digital elevation models (DEMs) prior to and immediately following the 2012-2013 eruption of Tolbachik Volcano, Kamchatka. Morphometric parameters and areal distribution of the new lava flow field are determined using a cell-by-cell elevation difference between the two DEMs. A total flow volume of 0.53 +/- 0.07 km(3), a mean flow thickness of 14.5 m, and a modal thickness of 7.8 m are calculated. We use these calculated flow parameters as input to a volume-limited lava flow emplacement model. Model simulations are able to reproduce the SW portion of the 2012-2013 Tolbachik lava flow using a 75-m Shuttle Radar Topography Mission (SRTM) DEM and the 15-m TanDEM-X derived DEM, with goodness-of-fit measures of 56.3 and 59.6 %, respectively, based on the Jaccard similarity coefficient. The flow simulation done using SRTM data underestimates the observed 14.4 km flow runout by over 3 km, while the simulation with TanDEM-X data overestimates flow runout by about 1.5 km. Performance of the lava flow modeling algorithm is highly dependent on the modal lava thickness, highlighting the importance of using TanDEM-X DEMs to provide precise lava flow measurements in order to constrain input parameters for numerical modeling of lava flows.
机译:德国TanDEM-X雷达卫星任务的双基地采集模式为测量与火山活动有关的形态变化提供了可靠的来源。我们提出在2012-2013年喷发之前和之后立即使用两个TanDEM-X数据对来生成数字高程模型(DEM),以使用该系统来测量关键的熔岩流参数,包括厚度,体积,跳动和流量范围。堪察加半岛Tolbachik火山。新熔岩流场的形态参数和面积分布是使用两个DEM之间逐个单元的高度差确定的。计算出的总流量为0.53 +/- 0.07 km(3),平均流量厚度为14.5 m,模态厚度为7.8 m。我们将这些计算出的流量参数用作体积受限的熔岩流进位模型的输入。模型仿真能够使用75米的航天飞机雷达地形任务(SRTM)DEM和15米的TanDEM-X衍生的DEM再现2012-2013年托尔巴奇克火山熔岩流的西南部分,拟合优度为56.3和Jaccard相似系数分别为59.6%和59.6%。使用SRTM数据进行的流量模拟低估了观察到的14.4 km流量跳动超过3 km,而使用TanDEM-X数据进行的模拟高估了流量跳动大约1.5 km。熔岩流建模算法的性能高度依赖于模态熔岩厚度,突出了使用TanDEM-X DEM提供精确的熔岩流测量值的重要性,以约束用于熔岩流数值建模的输入参数。

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