利用 PS-InSAR 技术监测得克萨斯州东南部 (SETX) 地区的地面沉降情况

IF 2.6 Q2 ENGINEERING, GEOLOGICAL
Arip Syaripudin Nur, Boo Hyun Nam, Shinwoo Choi, Yong Je Kim
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引用次数: 0

摘要

得克萨斯州东南部(SETX)沿海地区由于其独特的地理位置和地质属性,正面临着一系列地质挑战,如地面沉降、洪水和海岸侵蚀。本研究旨在评估最近发生的地面沉降及其相关速率,重点是了解它们对 SETX 地区洪水的影响。本研究采用了持久散射体干涉合成孔径雷达(PS-InSAR)技术,使用了从 2020 年 1 月到 2023 年 3 月下降轨道观测的哨兵 1 号合成孔径雷达卫星数据。研究结果表明,休斯顿西北部和东部地区的沉降速度高达 2 厘米/年。这一沉降趋势与全球定位系统和地下水位测量数据一致。这项调查明确显示了沉降率在时间和空间上的巨大变化,主要受到城市化(如人口增长、土地开发等)导致的局部地下水抽取的影响。通过倡导 InSAR、全球定位系统和地下水测量的整合,本研究希望为减轻 SETX 地区的沉降和洪水相关危害做出宝贵贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Monitoring of ground subsidence using PS-InSAR technique in the Southeast Texas (SETX) Region

Monitoring of ground subsidence using PS-InSAR technique in the Southeast Texas (SETX) Region

The southeast Texas (SETX) coastal area, owing to its unique geographical location and geological attributes, is facing a spectrum of geological challenges, such as ground subsidence, flooding, and coastal erosion. This study endeavors to evaluate the recent instances of ground subsidence and their associated rates, focusing on comprehending their implications for flooding within SETX. Employing the Persistence Scatterer Interferometric Synthetic Aperture Radar (PS-InSAR) technique, this study employs Sentinel-1 SAR satellite data with descending orbit observations spanning from January 2020 to March 2023. Our findings indicate that both the northwestern and eastern regions of Houston have been settled with rates up to 2 cm/year. This settlement trend is consistent with data derived from GPS and groundwater level measurements. This investigation explicitly shows the substantial temporal and spatial variations in subsidence rates, predominantly influenced by localized groundwater extraction due to urbanization (e.g., population growth, land development, etc.). By advocating for the integration of InSAR, GPS, and groundwater measurements, this research aspires to make valuable contributions toward the mitigation of subsidence and flood-related hazards in the SETX area.

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来源期刊
International Journal of Geo-Engineering
International Journal of Geo-Engineering ENGINEERING, GEOLOGICAL-
CiteScore
3.70
自引率
0.00%
发文量
10
审稿时长
13 weeks
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