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低成本、单频 GPS 网络作为滑坡监测工具。

Cost-Effective, Single-Frequency GPS Network as a Tool for Landslide Monitoring.

机构信息

National Institute of Oceanography and Applied Geophysics-OGS, 33100 Udine, Italy.

YETITMOVES S.r.l., c/o EUCENTRE, University of Pavia, 27100 Pavia, Italy.

出版信息

Sensors (Basel). 2022 May 6;22(9):3526. doi: 10.3390/s22093526.

Abstract

The constant monitoring of active landslides, particularly those located in the proximity of populated areas or touristic places, is crucial for early warning and risk-management purposes. The commonly used techniques deploy expensive instrumentation that can be hardly afforded, especially by small mountain communities in which landslide events often occur repeatedly. In recent years, the scientific community, as well as the private sector, have devoted growing effort to reducing the costs of monitoring systems. In this work, we present a monitoring network based on single-frequency Global Positioning System (GPS) sensors that have been activated to monitor an active landslide in the Carnic Alps, North-Eastern Italy. The system, which was composed of 12 single-frequency GPS stations, one seismometric station coupled with a single-frequency GPS instrument for real-time monitoring, and one permanent dual-frequency GPS station located in a stable area, provided daily reports of the landslide motion to the local authorities and administration. We show that this system is a valuable, flexible, and cost-effective tool for quick landslide characterization, and has high potential to be used as a landslide early warning system in case of emergency situations.

摘要

对活动滑坡(特别是那些位于人口密集区或旅游区附近的滑坡)进行持续监测,对于预警和风险管理至关重要。常用的技术需要使用昂贵的仪器,这在那些经常发生滑坡事件的小型山区社区来说是难以承担的。近年来,科学界和私营部门都在努力降低监测系统的成本。在这项工作中,我们提出了一个基于单频全球定位系统(GPS)传感器的监测网络,该网络已被激活以监测意大利东北部的卡尼卡阿尔卑斯山的一个活动滑坡。该系统由 12 个单频 GPS 站、一个与单频 GPS 仪器耦合的地震计站,用于实时监测,以及一个位于稳定区域的永久双频 GPS 站组成,每天向当地当局和管理部门报告滑坡运动情况。我们表明,该系统是一种快速、灵活、具有成本效益的滑坡特征描述工具,并且在紧急情况下具有很高的潜力作为滑坡预警系统使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/700b/9100233/74e650e7c46b/sensors-22-03526-g001.jpg

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