Through-water terrestrial laser scanning of gravel beds at the patch scale

被引:70
作者
Smith, Mark [1 ]
Vericat, Damia [1 ,2 ,3 ]
Gibbins, Chris [4 ]
机构
[1] Aberystwyth Univ, Inst Geog & Earth Sci, Aberystwyth SY23 3DB, Dyfed, Wales
[2] Univ Lleida, Fluvial Dynam Res Grp RIUS, Dept Environm & Soil Sci, E-25198 Lleida, Catalonia, Spain
[3] Forestry & Technol Ctr Catalonia, Solsona 25280, Catalonia, Spain
[4] Univ Aberdeen, No Rivers Inst, Sch Geosci, Aberdeen AB24 3UF, Scotland
关键词
terrestrial laser scanning; fluvial geomorphology; gravel surfaces; patch scale; roughness; RANGE DIGITAL PHOTOGRAMMETRY; RIVER CHANNEL TOPOGRAPHY; MORPHOLOGICAL CHANGE; SEDIMENT TRANSPORT; DEPOSITION VOLUMES; INVERTEBRATE DRIFT; LIDAR; ROUGHNESS; EROSION; SHALLOW;
D O I
10.1002/esp.2254
中图分类号
P9 [自然地理学];
学科分类号
0705 ; 070501 ;
摘要
Acquiring high resolution topographic data of natural gravel surfaces is technically demanding in locations where the bed is not exposed at low water stages. Often the most geomorphologically active surfaces are permanently submerged. Gravel beds are spatially variable and measurement of their detailed structure and particle sizes is essential for understanding the interaction of bed roughness with near-bed flow hydraulics, sediment entrainment, transport and deposition processes, as well as providing insights into the ecological responses to these processes. This paper presents patch-scale laboratory and field experiments to demonstrate that through-water terrestrial laser scanning (TLS) has the potential to provide high resolution digital elevation models of submerged gravel beds with enough detail to depict individual grains and small-scale forms. The resulting point cloud data requires correction for refraction before registration. Preliminary validation shows that patch-scale TLS through 200?mm of water introduces a mean error of less than 5?mm under ideal conditions. Point precision is not adversely affected by the water column. The resulting DEMs can be embedded seamlessly within larger sub-aerial reach-scale surveys and can be acquired alongside flow measurements to examine the effects of three-dimensional surface geometry on turbulent flow fields and their interaction with instream ecology dynamics. Copyright (C) 2011 John Wiley & Sons, Ltd.
引用
收藏
页码:411 / 421
页数:11
相关论文
共 44 条
  • [1] EVALUATING SHALLOW-WATER BATHYMETRY FROM THROUGH-WATER TERRESTRIAL LASER SCANNING UNDER A RANGE OF HYDRAULIC AND PHYSICAL WATER QUALITY CONDITIONS
    Smith, M. W.
    Vericat, D.
    RIVER RESEARCH AND APPLICATIONS, 2014, 30 (07) : 905 - 924
  • [2] Terrestrial laser scanning and structure-from-motion photogrammetry concordance analysis for describing the surface layer of gravel beds
    Neverman, Andrew J.
    Fuller, Ian C.
    Procter, Jon N.
    Death, Russell G.
    PROGRESS IN PHYSICAL GEOGRAPHY-EARTH AND ENVIRONMENT, 2019, 43 (02): : 260 - 281
  • [3] Quantifying the scales of spatial variation in gravel beds using terrestrial and airborne laser scanning data
    Huang, Guo-Hao
    Atkinson, Peter M.
    Wang, Chi-Kuei
    OPEN GEOSCIENCES, 2018, 10 (01): : 607 - 617
  • [4] Terrestrial Laser Scanning of grain roughness in a gravel-bed river
    Heritage, George L.
    Milan, David J.
    GEOMORPHOLOGY, 2009, 113 (1-2) : 4 - 11
  • [5] Mesoscale Terrestrial Laser Scanning of Fluvial Gravel Surfaces
    Wang, Chi-Kuei
    Wu, Fu-Chun
    Huang, Guo-Hao
    Lee, Ching-Yi
    IEEE GEOSCIENCE AND REMOTE SENSING LETTERS, 2011, 8 (06) : 1075 - 1079
  • [6] In situ characterization of grain-scale fluvial morphology using Terrestrial Laser Scanning
    Hodge, Rebecca
    Brasington, James
    Richards, Keith
    EARTH SURFACE PROCESSES AND LANDFORMS, 2009, 34 (07) : 954 - 968
  • [7] Combining SfM Photogrammetry and Terrestrial Laser Scanning to Assess Event-Scale Sediment Budgets along a Gravel-Bed Ephemeral Stream
    Conesa-Garcia, Carmelo
    Puig-Mengual, Carlos
    Riquelme, Adrian
    Tomas, Roberto
    Martinez-Capel, Francisco
    Garcia-Lorenzo, Rafael
    Pastor, Jose L.
    Perez-Cutillas, Pedro
    Cano Gonzalez, Miguel
    REMOTE SENSING, 2020, 12 (21) : 1 - 27
  • [8] Measuring plot scale woodland structure using terrestrial laser scanning
    Muir, Jasmine
    Phinn, Stuart
    Eyre, Teresa
    Scarth, Peter
    REMOTE SENSING IN ECOLOGY AND CONSERVATION, 2018, 4 (04) : 320 - 338
  • [9] Anisotropy Characteristics of Exposed Gravel Beds Revealed in High-Point-Density Airborne Laser Scanning Data
    Huang, Guo-Hao
    Wang, Chi-Kuei
    Wu, Fu-Chun
    Atkinson, Peter M.
    IEEE GEOSCIENCE AND REMOTE SENSING LETTERS, 2016, 13 (08) : 1044 - 1048
  • [10] Terrestrial Laser Scanning for Plot-Scale Forest Measurement
    Newnham, Glenn J.
    Armston, John D.
    Calders, Kim
    Disney, Mathias I.
    Lovell, Jenny L.
    Schaaf, Crystal B.
    Strahler, Alan H.
    Danson, F. Mark
    CURRENT FORESTRY REPORTS, 2015, 1 (04): : 239 - 251