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Gravity field anomalies from recent GOCE satellite-based geopotential models and terrestrial gravity data: a comparative study over Saudi Arabia

机译:最近的基于GOCE卫星的地势模型和地面重力数据的重力场异常:沙特阿拉伯的比较研究

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Global geopotential models (GGMs) provide important information about the Earth gravity field in terms of precise gravity anomaly, gravity disturbance, and geoid height on global and regional scales. The GGMs based on the Gravity Recovery and steady-state Ocean Circulation Explorer (GOCE) satellite gravity mission provided by the International Center for Global Earth Models (ICGEM) differ in their accuracy and spatial resolution. In this paper, we evaluate the free-air gravity anomalies and geoid heights determined from several recent GOCE-based GGMs using the corresponding gravity functions (i.e., gravity anomalies and geoid heights) obtained from the Earth Gravitational Model 2008 (EGM2008) over the Kingdom of Saudi Arabia (KSA). Moreover, free-air gravity anomalies determined from GOCE-based GGMs have also been compared with the corresponding ones obtained from ground-based "terrestrial" gravity measurements over the study area. The latter comparison, using the available 3500 terrestrial gravity observations, applies the spectral enhanced method (SEM). We use the SEM to compensate the missed high-frequency component of geoid heights in GOCE-based GGMs using EGM2008 and a high-resolution digital terrain model based on the Shuttle Radar Topography Mission (SRTM). The statistical comparisons of the computed results in terms of free-air gravity anomalies and geoid heights obtained from GOCE-based GGMs are in general agreement. The estimated standard deviations of differences are 5 mGal (20 cm), 6-7 mGal (2224 cm), and 8 mGal (25.9 cm) at spherical harmonic (SH) degree/order (d/o) 200, 240, and 280, respectively. Free-air gravity anomalies computed from available terrestrial gravity data, using the SEM, have been compared with the corresponding ones estimated from GOCE-based GGMs, and the results indicate an improvement over EGM2008 in the medium wavelengths. Investigation of various releases of GOCE-based GGM, up to d/o 200, reveals that the fourth and fifth releases of GOCE-based GGMs developed with the use of time-wise solution strategies (TIM_R4 and TIM_R5) approximate the gravity field well over the KSA region, since they provide the least standard deviation differences at SH. Thus, the TIM_R5 and TIM_R4 are suggested as reference models for recovering the long wavelength up to SH d/o 200 and 240, respectively, when modeling the gravimetric quasi-geoid over the KSA area.
机译:全球地势模型(GGM)提供了有关地球重力场的重要信息,包括全球和区域尺度上的精确重力异常,重力扰动和大地水准面高度。由全球地球模型国际中心(ICGEM)提供的重力恢复和稳态海洋环流探测器(GOCE)卫星重力任务组成的GGM,其准确性和空间分辨率有所不同。在本文中,我们使用从英国重力地球模型2008(EGM2008)获得的相应重力函数(即重力异常和大地水准面高度),评估了一些近期基于GOCE的GGM确定的自由空气重力异常和大地水准面高度。沙特阿拉伯(KSA)。此外,还将基于GOCE的GGM确定的自由空气重力异常与研究区域中基于地面“地面”重力测量获得的相应异常进行了比较。后面的比较使用了可用的3500地面重力观测,应用了光谱增强方法(SEM)。我们使用SEM使用EGM2008和基于航天飞机雷达地形任务(SRTM)的高分辨率数字地形模型来补偿基于GOCE的GGM中大地水准面的高频分量丢失。从基于GOCE的GGM获得的自由空气重力异常和大地水准面高度的计算结果的统计比较在总体上是一致的。在球谐(SH)度/阶数(d / o)为200、240和280时,估计的差异标准偏差为5 mGal(20 cm),6-7 mGal(2224 cm)和8 mGal(25.9 cm) , 分别。已将使用SEM从可用地面重力数据计算得到的自由空气重力异常与从基于GOCE的GGM估算的相应重力异常进行了比较,结果表明在中等波长上比EGM2008有所改善。对高达d / o 200的基于GOCE的GGM的各种发行版进行的调查表明,使用时间解法(TIM_R4和TIM_R5)开发的基于GOCE的GGM的第四和第五发行版对重力场的估计远大于KSA区域,因为它们在SH处提供的标准偏差最小。因此,当在KSA区域上对重量准准地层建模时,建议将TIM_R5和TIM_R4作为参考模型,分别恢复到SH d / o 200和240的长波长。

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