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Relief visualization techniques using free and open source GIS tools


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Beardsworth J., 2005, Photoshop Blending Modes Cookbook for Digital Photographers. Cambridge: Ilex.Search in Google Scholar

Bennett R., 2011, Archaeological Remote Sensing: Visualization and Analysis of Grass-Dominated Environments Using Airborne Laser Scanning and Digital Spectra Data. Ph.D. Thesis. Bournemouth University.Search in Google Scholar

Biland J., Çöltekin A., 2016, An empirical assessment of the impact of the light direction on the relief inversion effect in shaded relief maps: NNW is better than NW. “Cartography and Geographic Information Science” Vol. 44, no. 4, pp. 358−372.10.1080/15230406.2016.1185647Search in Google Scholar

Brown L., 2014, Texture shading: a new technique for depicting terrain relief. “Banff 2014: Papers and Slide Presentations. 9th ICA Mountain Cartography Workshop, 22−26 April, 2014”. Banff, Canada, pp. 1−14. www.mountaincartography.org/activities/workshops/banff_canada/papers/brown.pdfSearch in Google Scholar

Bruy A., Svidzinska D., 2015, QGIS by Example. Birmingham: Packt Publishing.Search in Google Scholar

Chiba T., Kaneta S., Suzuki Y., 2008, Red relief image map: new visualization method for three dimensional data. “The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences” Vol. 37, Part B2, Beijing, pp. 1071−1076.Search in Google Scholar

Chiba T., Hasi B., 2016, Ground surface visualization using red relief image map for a variety of map scales. “The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences” Vol. XLI-B2. XXIII ISPRS Congress, 12−19 July 2016, Prague, Czech Republic, pp. 393–397.10.5194/isprsarchives-XLI-B2-393-2016Search in Google Scholar

Devereux B., Amable G., Crow P., 2008, Visualization of LiDAR terrain models for archaeological feature detection. “Antiquity” Vol. 82, no. 316, pp. 470−479.10.1017/S0003598X00096952Search in Google Scholar

Doneus M., 2013, Openness as a visualization technique for interpretative mapping of airborne LiDAR derived digital terrain models. “Remote Sensing” Vol. 5, no. 12, pp. 6427−6442.10.3390/rs5126427Search in Google Scholar

Doneus M., Kühteiber T., 2013, Airborne laser scanning and archaeological interpretation – bringing back the people. In: Opitz R., Cowley D. Interpreting Archaeological Topography: Lasers, 3D Data, Visualisation and Observation. Oxford, UK: Oxbow Books, pp. 32−50.10.2307/j.ctvh1dqdz.8Search in Google Scholar

Drachal J., 2017, Combined shading used for small scale photographic maps. “Unbounded Mapping of Mountains. Proceedings of the 10th ICA Mountain Cartography Workshop, 26−30 April 2016”. Berchtesgaden, Germany, pp. 55−64.Search in Google Scholar

Eastmead S., 2017, Use of QGIS Geographical Information System in Basic Field Archaeology and LiDAR Processing (Ed. 1, rev. 4, from 05.03.2018). E-book: https://eastmead.com/QGIS-LIDAR.htmSearch in Google Scholar

Graser A., Meams B., Mandel A., Olaya V., Bruy A., 2017, QGIS: Becoming a GIS Power User. Birmingham: Packt Publishing.Search in Google Scholar

Hobbs K., 1995, The rendering of relief images from digital contour data. “The Cartographic Journal” Vol. 32, no. 2, pp. 111−116.10.1179/caj.1995.32.2.111Search in Google Scholar

Hobbs K., 1999, An investigation of RGB multi-band shading for relief visualisation. “International Journal of Applied Earth Observation and Geoinformation” Vol. 1, no. 3/4, pp. 181−186.10.1016/S0303-2434(99)85011-9Search in Google Scholar

Horn B., 1981, Hill shading and the reflectance map. “Proceedings of the IEEE” Vol. 69, no. 1, pp. 14−47.10.1109/PROC.1981.11918Search in Google Scholar

Howarth J., 2017, Design patterns of naturalistic shaded relief for large-format maps with high-resolution data. “Unbounded Mapping of Mountains, Proceedings of the 10th ICA Mountain Cartography Workshop, 26–30 April 2016”. Berchtesgaden, Germany, pp. 215–231.Search in Google Scholar

Hurni L., 2008, Cartographic mountain relief representation. 150 years of tradition and progress at ETH Zurich. “Mountain Mapping and Visualization, Proceedings of the 6th ICA Mountain Cartography Workshop, 11−15 February 2008”. Lenk, Switzerland, pp. 85−91.Search in Google Scholar

Imhof E., 1982, Cartographic Relief Presentation. Berlin, N. Y.: Walter de Gruyter.10.1515/9783110844016Search in Google Scholar

Inomata T., Pinzón F., Ranchos J.L., Haraguchi T., Nasu H., Fernandez-Diaz J.C., Aoyama K., Yonenobu H., 2017, Archaeological application of airborne LiDAR with object-based vegetation classification and visualization techniques at the lowland Maya site of Ceibal, Guatemala. “Remote Sensing” Vol. 9, pp. 1−27.10.3390/rs9060563Search in Google Scholar

Jenny B., 2001, An interactive approach to analytical relief shading. “Cartographica” Vol. 38, no. 1-2, pp. 67−75.10.3138/F722-0825-3142-HW05Search in Google Scholar

Jenny B., Hurni L., 2006, Swiss-style colour relief shading modulated by elevation and by exposure to illumination. “The Cartographic Journal” Vol. 43, no. 3, pp. 198−207.10.1179/000870406X158164Search in Google Scholar

Kennelly P., Stewart J., 2006, A uniform sky model to enhance shading of terrain and urban elevation models. “Cartography and Geographic Information Science” Vol. 33, no. 1, pp. 21−36.10.1559/152304006777323118Search in Google Scholar

Kennelly P., 2008, Terrain maps displaying hill-shading with curvature. “Geomorphology” Vol. 102, pp. 567−577.10.1016/j.geomorph.2008.05.046Search in Google Scholar

Kokalj Ž., Zakšek K., Oštir K., 2011, Application of sky-view factor for the visualization of historic landscape features in Lidar-derived relief models. “Antiquity” Vol. 85, No. 327, pp. 263–273.10.1017/S0003598X00067594Search in Google Scholar

Kokalj Ž., Hesse R., 2017, Airborne Laser Scanning Raster Data Visualization: A Guide to Good Practice. Ljubljana: Založba ZRC. E-book: http://zalozba.zrc-sazu.si/p/P1410.3986/9789612549848Search in Google Scholar

Loisios T., Tzelepis N., Nakos B., 2007, A methodology for creating analytical hill-shading by combining different lighting directions. “ICA-CMC Session”, Russia, Moscow, pp. 1−10. http://www.mountain-cartography.org/publications/papers/ica_cmc_sessions/5_Moscow_Session_Mountain_Carto/moscow_loisios.pdfSearch in Google Scholar

Mark R., 1992, A multidirectional, oblique-weighted, shaded relief image of the Island of Hawaii. USGS Numbered Series, Open-File Report 92-422, pp. 1−5. https://pubs.er.usgs.gov/publication/ofr9242210.3133/ofr92422Search in Google Scholar

Marson B., Jenny B., 2015, Improving the representation of major landforms in analytical relief shading. “International Journal of Geographical Information Science” Vol. 29, no. 7, pp. 1144−1165.10.1080/13658816.2015.1009911Search in Google Scholar

Menke K., Smith R., Pirelli L., Van Hoesen J., 2015, Mastering QGIS. Birmingham: Packt Publishing.Search in Google Scholar

Nagi R., Buckley A., 2013, The NAGI fusion method: A new technique to integrate color and grayscale raster layers. “Mapping Mountain Dynamics: From Glaciers to Volcanoes, Proceedings of the 8th ICA Mountain Cartography Workshop, 1−5 September 2012”. Taurewa, New Zealand. CartoPRESS, pp. 39−47.Search in Google Scholar

Patterson T., 2014, Enhancing shaded relief with terrain texture shader. “Banff2014: Papers and Presentations. 9th ICA Mountain Cartography Workshop, 22−26 April, 2014”. Banff, Canada, pp. 1−10. www.mountaincartography.org/activities/workshops/banff_canada/papers/patterson.pdfSearch in Google Scholar

Podobnikar T., 2012, Multidirectional visibility index for analytical hillshading enhancement. “The Cartographic Journal” Vol. 49, no. 3, pp. 195−207.10.1179/1743277412Y.0000000012Search in Google Scholar

Rusinkiewicz S., Burns M., DeCarlo D., 2006, Exaggerated shading for depicting shape and detail. “ACM Transactions on Graphics (Proc. SIGGRAPH)” Vol. 25, no. 3, pp. 1199−1205. http://gfx.cs.princeton.edu/pubs/Rusinkiewicz_2006_ESF/index.php10.1145/1141911.1142015Search in Google Scholar

Siwek J., Wacławik W., 2015, Can analytical shading be art? “Polish Cartographical Review” Vol. 47, no. 3, pp. 121−135.10.1515/pcr-2015-0010Search in Google Scholar

Štular B., Kokalj Ž., Oštir K., Nuninger L., 2012, Visualization of lidar-derived relief models for detection of archaeological features. “Journal of Archaeological Science” Vol. 39, pp. 3354−3360.10.1016/j.jas.2012.05.029Search in Google Scholar

Valentine S., 2012, The Hidden Power of Blend Modes in Adobe Photoshop. Berkeley: Adobe Press.Search in Google Scholar

Veronesi F., Hurni L., 2014, Changing the light azimuth in shaded relief representation by clustering aspect. “The Cartographical Journal” Vol. 51, no. 4, pp. 291−300.10.1179/1743277414Y.0000000100Search in Google Scholar

Veronesi F., Hurni L., 2015, A GIS tool to increase the visual quality of relief shading by automatically changing the light direction. “Computers and Geosciences” Vol. 74, pp. 121−127.10.1016/j.cageo.2014.10.015Search in Google Scholar

Viljoen D., Harris J., 2006, Saturation and value modulation (SVM): A new method for integrating color and grey-scale imagery. “Digital Mapping Techniques ‘06 − Workshop Proceedings, 11−14 June 2006”. Columbus, Ohio. U.S. Geological Survey Open-File Report 2007−1285, pp. 87−100. https://pubs.usgs.gov/of/2007/1285/contents.htmlSearch in Google Scholar

Zakšek K., Oštir K., Kokalj Ž., 2011, Sky-view factor as a relief visualization technique. “Remote Sensing” Vol. 3, no. 2, pp. 398−415.10.3390/rs3020398Search in Google Scholar

Jenny B., Räber S., 2002, Relief Shading. Zürich, Institute of Cartography, ETH. http://www.relief-shading.com/Search in Google Scholar

Kennelly P., 2017, Terrain representation. Wilson J.P. (ed.). The Geographic Information Science & Technology Body of Knowledge. (4th Quarter 2017 Edition). https://gistbok.ucgis.org/bok-topics/terrain-representation10.22224/gistbok/2017.4.9Search in Google Scholar

Patterson T., 2002, Shaded Relief. http://www.shadedrelief.com/Search in Google Scholar

eISSN:
2450-6966
ISSN:
0324-8321
Idioma:
Inglés
Calendario de la edición:
4 veces al año
Temas de la revista:
Geosciences, Cartography and Photogrammetry, other, History, Topics in History, History of Science