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首页> 外文期刊>Geophysical Research Letters >Revealing the nature of radar reflections in ice: DEP-based FDTD forward modeling - art. no. 1218
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Revealing the nature of radar reflections in ice: DEP-based FDTD forward modeling - art. no. 1218

机译:揭示冰中雷达反射的本质:基于DEP的FDTD正向建模-艺术。没有。 1218

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摘要

1] Successful simulation of ground penetrating radar (GPR) traces in polar ice is achieved by numerical finite-difference time-domain (FDTD) forward modeling. Properties of the modeled medium are taken from high resolution dielectric profiling (DEP) of the upper 100 m of an ice core from Dronning Maud Land, Antarctica. The GPR reference trace is calculated from stacking of a normal moveout corrected common-midpoint survey, carried out near the borehole location. The excellent agreement of synthetic and GPR-based results demonstrates the capability of FDTD models to reproduce radargrams from ice core properties for interpretation of radio echo sounding data, and emphasizes the exploitation of radar data for improved interpretations of glaciological climate proxys. In addition to presenting modeling results, we perform sensitivity experiments to investigate the nature and origin of radar reflection in ice, discuss reasons for the failure of modeling studies in the past, and indicate new approaches. [References: 26
机译:1]通过数值有限差分时域(FDTD)前向建模成功地模拟了极地冰层中的探地雷达(GPR)迹线。建模介质的属性来自南极Dronning Maud Land的冰芯上部100 m的高分辨率电介质分析(DEP)。 GPR参考迹线是通过在井眼位置附近进行的常规时差校正共同中点测量的叠加计算得出的。合成结果和基于GPR的结果的极好的一致性证明了FDTD模型能够从冰芯特性中再现雷达图,以解释无线电回波测深数据,并强调利用雷达数据来更好地解释冰川气候代用物。除了提供建模结果之外,我们还进行敏感性实验,以研究冰中雷达反射的性质和成因,讨论过去建模研究失败的原因,并指出新的方法。 [参考:26

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