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Studies of Tectonic Motion from Helwan-Satellite Laser Ranging Station

机译:Helwan卫星激光测距站的构造运动研究

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Satellite Laser Ranging (SLR) is a proven space geodetic technique with significant potential for important contributions to scientific studies of tectonic motion. Currently, SLR is the most accurate available technique to determine the geocentric position with a reported precision in the order of few millimeters. Data gathered through SLR together with “Short Arc” mathematical algorithm became a highly precise tool to detect, monitor and calculate recent crustal movements through repeated measurements of the baselines between some stations on different tectonic plates. In this paper, the Short Arc mathematical model introduced in a previous paper was used to calculate the length of the baseline between Helwan-SLR station and other four fixed SLR stations, placed on different plates. Application of this model with the data gathered through a 4 year time interval gave repeatable results with very high accuracy (in the order of 4 cm).
机译:卫星激光测距(SLR)是一种久经考验的空间大地测量技术,对构造运动的科学研究有重要贡献。当前,SLR是确定地心位置的最准确的可用技术,据报道其精度约为几毫米。通过SLR结合“短弧”数学算法收集的数据成为一种高精度工具,可以通过重复测量不同构造板上某些站点之间的基线来检测,监测和计算最近的地壳运动。在本文中,前一篇论文介绍的短弧数学模型用于计算Helwan-SLR站与其他四个固定SLR站(放置在不同板上)之间的基线长度。将该模型与通过4年时间间隔收集的数据一起应用,可以得到非常高精度(大约4 cm)的可重复结果。

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