首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Ocean tide loading displacements in western Europe: 2. GPS-observed anelastic dispersion in the asthenosphere
【24h】

Ocean tide loading displacements in western Europe: 2. GPS-observed anelastic dispersion in the asthenosphere

机译:西欧海潮载荷位移:2.软流圈中GPS观测到的非弹性弥散

获取原文
获取原文并翻译 | 示例
           

摘要

GPS-observed vertical ocean tide loading displacements show in Cornwall, southwest England, and in Brittany, northwest France, discrepancies of 2-3mm with predicted values based on the isotropic Preliminary Reference Earth Model for the main tidal harmonic M-2, yet in central Europe the agreement is better than 0.5mm. By comparison of ocean tide models and validation with tide gauge observations, we demonstrate that the uncertainties in the former are too small to cause this disagreement. Furthermore, we find that different local models of the crust and different global elastic reference models derived from seismological observations can only reduce the observed discrepancies to 1-2mm, which still exceeds the GPS observational uncertainty of 0.2-0.4mm. It is customary to use the elastic properties of the Earth as given by seismic models. Previously, there has been insufficient evidence to determine how to modify these properties during the transformation from seismic to tidal frequencies to account for possible anelastic dispersion in the asthenosphere, and so this effect has been ignored. If we include this effect, then our discrepancies reduce further to 0.2-0.4mm. This value is of the same order as the sum of the remaining errors due to uncertainties in the ocean tide models and in the GPS observations themselves. This research provides evidence in western Europe of a reduction of around 8-10% of the seismic shear modulus in the asthenosphere at tidal frequencies. In addition, we find that the asthenosphere absorption band frequencies can be represented by a constant quality factor Q.
机译:GPS观测到的垂直海潮载荷位移显示在英格兰西南部的康沃尔郡和法国西北部的布列塔尼地区,存在2-3mm的偏差,其预测值基于主要潮汐谐波M-2的各向同性初步参考地球模型得出,而在中部欧洲协议优于0.5mm。通过比较海洋潮汐模型和潮汐仪观测值的验证,我们证明了前者的不确定性太小,无法引起这种分歧。此外,我们发现地壳的不同局部模型和地震观测得出的不同全局弹性参考模型只能将观测到的差异减小到1-2mm,仍然超过GPS观测不确定性0.2-0.4mm。通常使用地震模型给出的地球弹性特性。以前,没有足够的证据来确定在从地震频率到潮汐频率的转换过程中如何修改这些特性,以解决软流层中可能存在的非弹性色散,因此这种影响已被忽略。如果包括此效果,则我们的差异会进一步减小到0.2-0.4mm。该值与由于潮汐模型和GPS观测值本身的不确定性而导致的剩余误差之和的数量级相同。这项研究提供了证据,证明西欧软流圈在潮汐频率下的地震剪切模量降低了约8-10%。此外,我们发现,软流层吸收带的频率可以用恒定的品质因数Q表示。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号