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Characterizing long-time scale hydrological effects on gravity for improved distinction of tectonic signals

机译:表征长期尺度的水文对重力的影响,以改善对构造信号的区分

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摘要

The influence of the hydrological noise on repeated gravity measurements has been investigated on the basis of the time series of 18 superconducting gravimeters (SGs) and on predictions inferred from the Land Dynamics (LaD) world-Gascoyne land water-energy balances model. Presently, the global hydrologic models are not precise enough to fulfill the geodetic requirements and are not efficient enough to separate the hydrology from tectonic motion in the land-based gravity time series. However, although the LaD model predictions and the gravity observations present significant differences in the time domain, it is shown that they have similar amplitudes in the frequency domain in most of the cases. The time series of the Global Geodynamics Project make it possible to investigate phenomena of a few years in the best case. Given the similarity between the power spectral densities (PSDs) of the LaD model predictions and the SG measurements when taken at the same epoch, it makes sense to use the LaD model to study the spectral behavior of the hydrological effects down to the decadal time scale, which is not yet possible with land-based measurements. It is shown that the PSDs of the hydrological effects flattens at low frequency and is characterized by a generalized Gauss-Markov structure. With such a noise level, the time necessary to measure a gravity rate of change of 1 nm/s(2)/a, at the 1 sigma level should not extend any longer than 17 years at the locations where the hydrological effects play a major role
机译:在18个超导重力仪(SGs)的时间序列以及根据土地动力学(LaD)世界-加斯科因土地水能平衡模型推断的预测的基础上,研究了水文噪声对重复重力测量的影响。目前,全球水文模型不够精确,无法满足大地测量的要求,也不足以在陆基重力时间序列中将水文与构造运动分开。但是,尽管LaD模型的预测和重力观测在时域上存在显着差异,但已表明在大多数情况下它们在频域中具有相似的幅度。全球地球动力学项目的时间序列使在最佳情况下研究几年的现象成为可能。考虑到LaD模型预测的功率谱密度(PSD)与SG测量在相同时期之间的相似性,使用LaD模型研究直到十年年代尺度的水文影响的谱行为是有意义的,这对于陆基测量尚无法实现。结果表明,水文效应的PSD在低频下趋于平坦,其特征是具有广义的高斯-马尔可夫结构。在这样的噪声水平下,在水文影响主要的位置,以1 sigma的水平测量重力变化率1 nm / s(2)/ a所需的时间不应超过17年。角色

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