Using a thermal tracer to estimate overland and rill flow velocities

被引:47
作者
de Lima, Joao L. M. P. [1 ]
Abrantes, Joao R. C. B. [1 ]
机构
[1] Univ Coimbra, Univ Coimbra FCTUC, Fac Sci & Technol, Dept Civil Engn, P-3030788 Coimbra, Portugal
关键词
shallow flow velocity; thermal tracer; infrared thermography; SHALLOW-WATER FLOW; ELECTROLYTE TRACER; SURFACE VELOCITIES; DISCHARGE; HYDROLOGY; EROSION; AREA; SOIL;
D O I
10.1002/esp.3523
中图分类号
P9 [自然地理学];
学科分类号
0705 ; 070501 ;
摘要
Flow velocity is a basic hydraulic property of surface flows and its precise calculation is necessary for process based hydrological models, such as soil erosion and rill development models, as well as for modelling sediment and solute transport by runoff. This study presents a technique based on infrared thermography to visualize very shallow flows and allow a quantitative measurement of overland flow and rill flow velocities. Laboratory experiments were conducted to compare the traditional dye tracer technique with this new thermal tracer technique by injecting a combined tracer (heated dye) into shallow flowing surface water. The leading edge tracer velocities estimated by means of infrared video and by the usual real imaging video were compared. The results show that thermal tracers can be used to estimate both overland and rill flow velocities, since measurements are similar to those resulting from using dye tracers. The main advantage of using thermography was the higher visibility of the leading edge of the injected tracer compared with the real image videos. Copyright (C) 2013 John Wiley & Sons, Ltd.
引用
收藏
页码:1293 / 1300
页数:8
相关论文
共 29 条
[11]  
Horton RE, 1934, EOS T AM GEOPHYS UN, V15, P393
[12]   Application and evaluation of LS-PIV technique for the monitoring of river surface velocities in high flow conditions [J].
Jodeau, M. ;
Hauet, A. ;
Paquier, A. ;
Le Coz, J. ;
Dramais, G. .
FLOW MEASUREMENT AND INSTRUMENTATION, 2008, 19 (02) :117-127
[13]   Stream discharge using mobile large-scale particle image velocimetry: A proof of concept [J].
Kim, Y. ;
Muste, M. ;
Hauet, A. ;
Krajewski, W. F. ;
Kruger, A. ;
Bradley, A. .
WATER RESOURCES RESEARCH, 2008, 44 (09)
[14]   High spatial resolution mapping of surface velocities and depths for shallow overland flow [J].
Legout, C. ;
Darboux, F. ;
Nedelec, Y. ;
Hauet, A. ;
Esteves, M. ;
Renaux, B. ;
Denis, H. ;
Cordier, S. .
EARTH SURFACE PROCESSES AND LANDFORMS, 2012, 37 (09) :984-993
[15]   An improved method for shallow water flow velocity measurement with practical electrolyte inputs [J].
Lei, Tingwu ;
Chuo, Ruiyuan ;
Zhao, Jun ;
Shi, Xiaonan ;
Liu, Lin .
JOURNAL OF HYDROLOGY, 2010, 390 (1-2) :45-56
[16]  
Lei TW, 2005, J HYDROL, V301, P139, DOI [10.1016/j.hydrol.2004.06.025, 10.1016/j.jhydrol.2004.06.025]
[17]  
Li G, 1996, EARTH SURF PROCESSES, V21, P509, DOI 10.1002/(SICI)1096-9837(199606)21:6<509::AID-ESP613>3.0.CO
[18]  
2-Z
[19]   Thermal imaging study of temperature fields in shallow flows [J].
Liang, Dongfang ;
Chen, Jack Mao ;
Chong, Kelvin J. Y. ;
McCorkell, Camilla .
MEASUREMENT, 2012, 45 (05) :1015-1022
[20]   Methodological study of submarine groundwater discharge from a karstic aquifer in the Western Mediterranean Sea [J].
Mejias, Miguel ;
Ballesteros, Bruno J. ;
Anton-Pacheco, Carmen ;
Dominguez, Jose A. ;
Garcia-Orellana, Jordi ;
Garcia-Solsona, Ester ;
Masque, Pere .
JOURNAL OF HYDROLOGY, 2012, 464 :27-40