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Regional biases in absolute sea-level estimates from tide gauge data due to residual unmodeled vertical land movement

机译:由于残留的未建模的垂直陆地运动,潮汐计数据的绝对海平面估计值存在区域偏差

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摘要

The only vertical land movement signal routinely corrected for when estimating absolute sea-level change from tide gauge data is that due to glacial isostatic adjustment (GIA). We compare modeled GIA uplift (ICE-5G + VM2) with vertical land movement at -300 GPS stations located near to a global set of tide gauges, and find regionally coherent differences of commonly ±0.5-2 mm/yr. Reference frame differences and signal due to present-day mass trends cannot reconcile these differences. We examine sensitivity to the GIA Earth model by fitting to a subset of the GPS velocities and find substantial regional sensitivity, but no single Earth model is able to reduce the disagreement in all regions. We suggest errors in ice history and neglected lateral Earth structure dominate model-data differences, and urge caution in the use of modeled GIA uplift alone when interpreting regional- and global- scale absolute (geocentric) sea level from tide gauge data.
机译:根据潮汐仪数据估算绝对海平面变化时,常规校正的唯一垂直陆地运动信号是由于冰川等静压调整(GIA)。我们将模拟的GIA隆升(ICE-5G + VM2)与-300个GPS站附近的全球潮汐仪附近的垂直陆地运动进行了比较,发现通常为±0.5-2 mm / yr的区域相干差异。由于当今的质量趋势,参考系差异和信号无法协调这些差异。我们通过拟合GPS速度的子集来检查对GIA地球模型的敏感性,并发现相当大的区域敏感性,但是没有一个单独的地球模型能够减少所有区域的分歧。我们建议在冰史上的错误和被忽略的侧向地球结构主导模型数据的差异,并在从潮汐仪数据解释区域和全球尺度的绝对(地心)海平面时,应谨慎使用单独的GIA模型。

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