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首页> 外文期刊>Geophysical Research Letters >Wave field migration as a tool for estimating spatially continuous radar velocity and water content in glaciers
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Wave field migration as a tool for estimating spatially continuous radar velocity and water content in glaciers

机译:波场迁移作为估计冰川中空间连续雷达速度和含水量的工具

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Normal-moveout velocity analysis can lead to significant overestimates of the velocity structure of temperate glaciers since most englacial reflectors approximate point scatters and violate the assumption of planar flat lying reflectors. Migration velocity analysis (MVA) is a tool that does not depend on the assumption of flat lying reflectors. MVA can provide laterally and vertically continuous velocity estimates from conventional common-offset radar sections. In a study of temperate Bench Glacier, Alaska, we used MVA coupled with dielectric modeling to estimate the distribution of water content along a cross-section of the glacier. We found the glacier has two layers, an upper layer with relatively low water content, and lower layer with relatively high water content. The ability to quantify hydrostratigraphy is important in understanding water storage and routing within glaciers.
机译:由于大多数冰川反射器都近似于点散射并且违反了平面平躺反射器的假设,因此正常移动速度分析可能会导致对温带冰川速度结构的明显高估。迁移速度分析(MVA)是一种不依赖于平躺反射镜的工具。 MVA可以提供常规常规偏置雷达截面的横向和纵向连续速度估计。在对阿拉斯加的温带台式冰川的研究中,我们将MVA与介电模型结合使用,以估算水含量沿冰川横截面的分布。我们发现冰川有两层,上层含水量相对较低,下层含水量较高。量化水文地层学的能力对于了解冰川中的水储量和路线至关重要。

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