Use of Drones for the Topo-Bathymetric Monitoring of the Reservoirs of the Segura River Basin

被引:40
作者
Erena, Manuel [1 ]
Atenza, Joaquin F. [1 ]
Garcia-Galiano, Sandra [2 ]
Dominguez, Jose A. [3 ]
Bernabe, Jose M. [4 ]
机构
[1] Inst Murciano Invest & Desarrollo Agr Alimentario, GIS & Remote Sensing, C Mayor S-N, Murcia 30150, Spain
[2] Univ Politecn Cartagena, Dept Min & Civil Engn, Murcia 30202, Spain
[3] VURV, Crop Res Inst, Prague 16106, Czech Republic
[4] Hydrol Planning Off, SRB Plaza Fontes, Murcia 30001, Spain
关键词
Photogrammetry; Bathymetric probe; OpenSource; Ardupilot;
D O I
10.3390/w11030445
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The Segura River Basin (SRB), located in the South East of Spain, has the lowest percentage of renewable water resources of all the Spanish basins. Therefore, knowledge of the annual rate of water reservoir sedimentation is an important issue to be resolved in one of the most water-stressed regions in the western Mediterranean basin. This paper describes the sensors developed in collaboration with technology-based enterprises (aerial drone, floating drone, and underwater drone), and the methodology for integration of the different types of data acquired to monitor the reservoirs of the SRB. The proposed solution was applied to 21 reservoirs of the SRB. The proposed methodology is based on the use of unmanned aerial vehicles (UAV) for photogrammetry of the reservoir surface area. For each reservoir, two flights were completed, with 20 cm and 5 cm resolution, respectively. Then, a triangular irregular network mesh was generated by GIS techniques. Surface water vehicles (USV) and underwater remote-operated vehicles (ROV) were used to undertake bathymetric surveys. In addition, water quality measurements were made with an ROV device. The main results consist of topographic and bathymetric measurements for each reservoir, obtained by using equipment based on OpenSource technology. According to the results, the annual rate of storage capacity loss of water resources in the SRB ' s reservoirs is 0.33%.
引用
收藏
页数:16
相关论文
共 33 条
[1]  
ArduPilot, 2016, DOWNL AN DAT LOGS MI
[2]   Development and Modeling of a Low-Cost Unmanned Aerial Vehicle Research Platform [J].
Arifianto, Ony ;
Farhood, Mazen .
JOURNAL OF INTELLIGENT & ROBOTIC SYSTEMS, 2015, 80 (01) :139-164
[3]  
BERMUDEZ F.LOPEZ., 1982, CUAD INV GEOQR, VVIII, P3, DOI DOI 10.18172/CIG.892
[4]  
Burroughes J.E., 2001, THESIS
[5]   The importance of atmospheric correction for airborne hyperspectral remote sensing of shallow waters: application to depth estimation [J].
Castillo-Lopez, Elena ;
Antonio Dominguez, Jose ;
Pereda, Raol ;
Manuel de Luis, Julio ;
Perez, Ruben ;
Pina, Felipe .
ATMOSPHERIC MEASUREMENT TECHNIQUES, 2017, 10 (10) :3919-3929
[6]   APPLICATION OF LIDAR TECHNOLOGY FOR RIVERS ANALYSIS [J].
Cavalli, Marco ;
Tarolli, Paolo .
ITALIAN JOURNAL OF ENGINEERING GEOLOGY AND ENVIRONMENT, 2011, :33-44
[7]  
CEDEX, BAT
[8]  
Coggins L.X., 2017, THESIS
[9]  
Esteban J.R., 1995, INGENIERIA AGUA, V2, P181
[10]   Impacts of climate change on water resources in Spain [J].
Estrela, T. ;
Perez-Martin, M. A. ;
Vargas, E. .
HYDROLOGICAL SCIENCES JOURNAL-JOURNAL DES SCIENCES HYDROLOGIQUES, 2012, 57 (06) :1154-1167