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Iceberg topography and volume classification using TanDEM-X interferometry

机译:使用TANDEM-X干涉测量法的冰山地形和体积分类

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Icebergs in polar regions affect water salinity, alter marine habitats, and impose serious hazards on maritime operations and navigation. These impacts mainly depend on the iceberg volume, which remains an elusive parameter to measure. We investigate the capability of TanDEM-X bistatic single-pass synthetic aperture radar interferometry (InSAR) to derive iceberg subaerial morphology and infer total volume. We cross-verify InSAR results with Operation IceBridge (OIB) data acquired near Wordie Bay, Antarctica, as part of the OIB/TanDEM-X Antarctic Science Campaign (OTASC). While icebergs are typically classified according to size based on length or maximum height, we develop a new volumetric classification approach for applications where iceberg volume is relevant. For icebergs with heights exceeding 5m, we find iceberg volumes derived from TanDEM-X and OIB data match within 7%. We also derive a range of possible iceberg keel depths relevant to grounding and potential impacts on subsea installations. These results suggest that TanDEM-X could pave the way for future single-pass interferometric systems for scientific and operational iceberg mapping and classification based on iceberg volume and keel depth.
机译:极地地区的冰山会影响水盐度,改变海洋栖息地,并对海事运营和导航施加严重危险。这些影响主要取决于冰山体积,仍然是测量的难以捉摸的参数。我们研究了TANDEM-X BISTOG单通过合成孔径雷达干涉测定法(INSAR)的能力,从而衍生冰山骨髓形态并推断出总体积。我们通过Wordie Bay(南极洲Wordie Bay附近的操作IceBridge(OIB)数据交叉验证Insar结果,作为OIB / TANDEM-X南极科学运动(OTASC)的一部分。虽然冰山通常根据长度或最大高度根据尺寸进行分类,但我们为冰山音量相关的应用程序开发了一种新的体积分类方法。对于高度超过5M的冰山,我们发现冰山卷从TandeM-X和OIB数据匹配中达到7%。我们还导出了一系列可能的冰山龙骨深度,与接地和对海底设施的潜在影响。这些结果表明,基于冰山体积和龙骨深度的科学和运营冰山映射和分类,串联X可以为未来的单通干涉系统铺平。

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