Applied Research in Geographical Sciences

Applied Research in Geographical Sciences

Assessment of land cover/land use changes using object-oriented processing of satellite imageries (1985-2015) in the Rozechai Watershed of Urmia

Authors
1 M.Sc Student of Watershed Engineering, Faculty of Agricultural and Natural Resources University of Mohaghegh Ardabili
2 Associate Professor, Department of Natural Resources, Faculty of Agriculture and Natural Resources University of Mohaghegh Ardabili
3 Assistant Professor, Department of Natural Resources, Faculty of Agriculture and Natural Resources University of Mohaghegh Ardabili
4 Assistant Professor, Department of Range and Watershed Management, Faculty Natural Resources Urmia University
Abstract
Also, because of human activities and natural phenomena, the face of the earth has always undergone a change. Therefore, for optimal management of natural areas, awareness of the ratio of land cover/land use changes is a necessity. Therefore, extraction of land use maps as the most important goal in the management of the natural resource can be considered. The purpose of the present study was to evaluate land cover/ land use changes at the Rozechai Watershed during the period of 30-years 1985-2015 using Landsat 5 and Landsat 7 satellite imageries such as TM and ETM+ sensors; plus, land use maps were prepared using TerrSet software and object-oriented classification in 1985 and 2000 years. As well as the land use map of procurement by the geographical organization in 2015 has been used. The results show that rangelands level has the highest percentage among all land use types during the period of 30 years, but between 1985 and 2000, and 2000 to 2015, the level of rangelands has a decreasing trend indicating the destruction trend in the region of the replacement of moderate- poor rangelands and good rangeland by dry farming. Also, the tables of obtained from the error matrix indicate that the observed values in the diameter of the error matrix are much larger than the values outside the diameters. Thus, the overall accuracy for the years 1985, 2000, and 2015 were 97, 90 and 96 percent, and The values of Kappa index were 91%, 84% and 94% respectively, indicating a high degree of accuracy in the object-oriented approach to classification.
Keywords

Batar, A.K., Watanabe, T., and Kumar, A. (2017), Assessment of land-use/land-cover change and forest fragmentation in the Garhwal Himalayan Region of India. Environments, 4(34):1-16.
Borri, D., Caprioli, M., and Tarantino, E. (2005), Spatial information extraction from VHR satellite data to detect land cover transformations. Polytechnic University of Bari, Italy, Pp. 105.
Fenglei, F., Yunpeng, W., and Zhishi, W. (2007), Temporal and spatial change detecting (1998-2003) and predicting of land use and land cover in Core corridor of Pearl River Delta (China) by using TM and ETM+ images. Environmental Monitoring and Assessment, 137(1-3): 127-147.
Lambin, E.F., and Strahler, A.H. (1994), Change-vector analysis in multi-temporal space: a tool to detect and categorize land-cover change processes using high temporal resolution satellite data. Remote Sensing of Environment, 48: 231-244.
Mackie, R.I. (2013), Dynamic analysis of structures on multicore computers-achieving efficiency through object oriented design. Advances in Engineering Software, 66: 3-9.
Marshall., M., Norton-Griffiths, M., and Herr, H. (2017), Continuous and consistent land use/cover change estimates using socio-ecological data. Earth System Dynamic, 8: 55-73.
Rajesh, B., and Murayama, Y. (2006), Land use change analysis using remote sensing and GIS; A case study of Kathmandu metropolitan. Journal of Applied Geography, pp 22.
Sesnie, S.E., Gessler, P.E., Finegan, B., and Thesler, S. (2008), Integrating Landsat TM and SRTM-DEM derived variables with decision trees habitat classification and change detection in complex neo tropical environments. Remote Sensing of Environment, 112: 2145-2159.
Skirvin, S.M., Drake, S.E., Maingi, J.K., Marsh, S.E., and Kepner, W.G. (2000), An accuracy assessment of 1997 Landsat thematic mapper derived land cover for the upper San Pedro Watershed (US/Mexico). Washington, D.C, United States Environmental Protection Agency, Office of Research and Development, 1-22.
Sundarakumar, K., Harika, M., Begum, S.A., Yamini, S., and Balakrishna, K. (2012), Land use and land cover change detection and urban sprawl analysis of Vijayawada City using a Landsat data. Engineering Science & Technology, 4: 170-178.
Wu, Q., Li, H.Q., Wang, R.S., Paulussen, J., He, Y., Wang, M., Wang, B.H., and Wang, Z. (2006), Monitoring and predicting land use change in Beijing using remote sensing and GIS. Landscape and Urban Planning, 78: 322-333.
Yan, G. (2003), Pixel based an object-oriented image for Coal fire research, 3-99.