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High-harmonic geoid signatures related to glacial isostatic adjustment and their detectability by GOCE

机译:与冰川等静压调节有关的高谐波大地水准特征及其通过GOCE的可探测性

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摘要

The Earth's asthenosphere and lower continental crust can regionally have viscosities that are one to several orders of magnitude smaller than typical mantle viscosities. As a consequence, such shallow low-viscosity layers could induce high-harmonic (spherical harmonics 50-200) gravity and geoid anomalies due to remaining isostasy deviations following Late-Pleistocene glacial isostatic adjustment (GIA). Such high-harmonic geoid and gravity signatures would depend also on the detailed ice and meltwater loading distribution and history. ESA's Gravity field and steady-state Ocean Circulation Explorer (GOCE) satellite mission, planned for launch in Summer 2008, is designed to map the quasi-static geoid with centimeter accuracy and gravity anomalies with milligal accuracy at a resolution of 100 km or better. This might offer the possibility of detecting gravity and geoid effects of low-viscosity shallow earth layers and differences of the effects of various Pleistocene ice decay scenarios. For example, our predictions show that for a typical low-viscosity crustal zone GOCE should be able to discern differences between ice-load histories down to length scales of about 150 km. One of the major challenges in interpreting such high-harmonic, regional-scale, geoid signatures in GOCE solutions will be to discriminate GIA-signatures from various other solid-earth contributions. It might be of help here that the high-harmonic geoid and gravity signatures form quite characteristic 2D patterns, depending on both ice load and low-viscosity zone model parameters.
机译:地球的软流圈和大陆下部壳的粘度可能比典型的地幔粘度小一到几个数量级。结果,由于晚更新世冰川等静压调整(GIA)后仍存在等静偏差,这种浅层低粘度层可能引起高谐波(球形谐波50-200)重力和大地水准面异常。这种高谐波大地水准面和重力特征也将取决于详细的冰和融水载荷分布和历史。 ESA的重力场和稳态海洋环流探测器(GOCE)卫星任务计划于2008年夏季发射,旨在以100 km或更佳的分辨率绘制具有厘米精度的准静态大地水准面和具有重力精度的重力异常。这可能提供了检测低粘度浅层土层的重力和大地水准面效应以及各种更新世冰衰情景的差异的可能性。例如,我们的预测表明,对于典型的低粘度地壳区,GOCE应该能够分辨出大约150公里长的冰负荷历史之间的差异。在GOCE解决方案中解释这种高谐波,区域规模的大地水准面特征的主要挑战之一是将GIA特征与其他各种固体地球贡献区分开。高谐波的大地水准面和重力特征可能会形成特征性的2D模式,这取决于冰负荷和低粘度带模型参数,这可能会有所帮助。

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