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首页> 外文期刊>Natural Hazards and Earth System Sciences Discussions >GPS-derived ground deformation (2005–2014) within the Gulf of Mexico region referred to a stable Gulf of Mexico reference frame
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GPS-derived ground deformation (2005–2014) within the Gulf of Mexico region referred to a stable Gulf of Mexico reference frame

机译:GPS衍生的地面变形(2005-2014)在墨西哥湾内提到了稳定的墨西哥参考框架

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摘要

This study investigates current ground deformation derived from the GPS geodesy infrastructure in the Gulf of Mexico region. The positions and velocity vectors of 161?continuous GPS?(CGPS) stations are presented with respect to a newly established local reference frame, the Stable Gulf of Mexico Reference Frame?(SGOMRF). Thirteen long-term (>?5?years) CGPS are used to realize the local reference frame. The root mean square?(RMS) of the velocities of the 13?SGOMRF reference stations achieves 0.2?mm?yr?1 in the horizontal and 0.3?mm?yr?1 in the vertical directions. GPS observations presented in this study indicate significant land subsidence in the coastal area of southeastern Louisiana, the greater Houston metropolitan area, and two cities in Mexico (Aguascalientes and Mexico City). The most rapid subsidence is recorded at the Mexico City International airport, which is up to 26.6?cm?yr?1 (2008–2014). Significant spatial variation of subsidence rates is observed in both Mexico City and the Houston area. The overall subsidence rate in the Houston area is decreasing. The subsidence rate in southeastern Louisiana is relatively smaller (4.0–6.0?mm?yr?1) but tends to be steady over time. This poses a potential threat to the safety of coastal infrastructure in the long-term.
机译:本研究调查了墨西哥湾湾GPS大地娱乐基础设施的当前地面变形。相对于新建立的局部参考框架,墨西哥参考框架稳定的局部参考框架(SGOMRF)的稳定性局部参考框架呈现了161个α(CGPS)站的位置和速度矢量?(SGOMRF)。十三长期(>?5?年)CGPS用于实现本地参考框架。 13°SGOMRF参考站的速度的根均方α(rms)在水平和0.3Ω·mm≤1中达到0.2Ω·毫秒α1。在垂直方向上。本研究中提出的GPS观察表明,路易斯安那州沿海地区,大休斯顿大都市地区和墨西哥(Aguascalientes和墨西哥城)的两个城市的大量土地沉降。最迅速的沉降是在墨西哥城国际机场录制的,该机场高达26.6?厘米?YR?1(2008-2014)。墨西哥城和休斯顿地区都观察到沉降率的大量空间变化。休斯顿地区的总体沉降率降低。路易斯安那州东南部的沉降率相对较小(4.0-6.0?mm?YR?1),但随着时间的推移往往是稳定的。这对长期来说,这对沿海基础设施的安全构成了潜在的威胁。

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