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pp. 1641-1653 | Article Number: ijese.2017.106
Published Online: September 11, 2017
Abstract
Remote sensing is the main technology for assessing expansion and rate of change of land cover. Knowing the different kinds of land cover changes and human activities in different parts, as a basis for a variety of planning has special importance. Accordingly this study aimed to evaluate the physical growth of the Shiraz city during the years 2009 to 2016 and forecasts until 2021 and also calculate the amount and intensity of the destruction of vegetation in the study area using satellite images. To achieve this, the data of remote sensing and geographic information system is used. Calculation of trends in physical growth, stating that the area of the city from 13160.07 hectares in 2009 reached to 17350.29 hectares in 2016, over a period of 7 years. If these conditions persist, area of the city in 2021 with 19.21 percent growth will be 20683.58 hectares. Assessment NDVI index show that the density of vegetation in the Shiraz city had a significant decreasing trend. So that the sum of very good and good vegetation cover results NDVI index, in 2009 was equal to 6128.37 hectares, while this amount has decreased to 4282.47 hectares in 2016, that this means a 43.10 percent reduction in vegetation cover in this period. The results showed that between 2009 to 2016 more than 1891 hectares of vegetation and gardens has become built lands.
Keywords: Land cover map, Comparison of classification, Detection of changes, Remote Sensing, Cellular Automata, Fuzzy method
References
Ahadnejhad Roshani, Mohsen; Zolfi, Ali; Shokripour Dizaj, Hossein. (2011). Assessing the physical growth of cities using multi-temporal satellite images and geographic information system (Case Study:Ardabil 1984-2021). Quarterly Journal of Enviromental Based Territorial Planning, 15, 107-124.
Alavi Panah, Kazem. (2003). Remote Sensing Application in Earth Sciences (Soil Science). First Print, Tehran University Publishing.
Asghari Zamani, Asghar; Ahadnejhad Roshani, Mohsen; Khodavandi, Abdollah. (2016). Analytical assessment of the spatial-spatial extent of urban areas and its effect on land use changes using GIS and RS (Case study: Shiraz during the period of 1950-1987). Geographical Space, 53, 57-76.
Azizi Ghalati, Sara; Rangzan, Kazem; Taghizadeh, Ayyoub; Ahmadi, Shahram. (2014). Land use change modeling using logistic regression method in LCM model (Case study: Kouhe Mare Sorkhi of Fars province). Iranian journal of Forests and Poplar Research, 4, 585-596.
Bhatta, B., Saraswati, S. and Bandyopadhyay, D., (2010), Quantifying the Degree-of-freedom, Degree-of-sprawl, and Degree-of-goodness of Urban Growth from Remote Sensing Data. Applied Geography, 30(1), 96-111.
Eastman, J.R. Van Fossen, M.E. and Solarzano, L.A. (2012). Transition potential modeling for land cover change. In: Maguire, D. Good Child, M. Batty, M. (Eds.), GIS, Spatial Analysis and Modeling. ESRI Press, Redlands, California.
Ebrahimzadeh, Issa; Rafiei, Ghassem. (2008). Optimal Locating of Urban Expansions Using Geographic Information System, Case Study: Marvdasht. Geography and development, 15, 35-70.
El-Kawy, A. O. R., Rød, J. K., Ismail, H. A. and Suliman, A.S., (2011), Land Use and Land Cover Change Detection in the Western Nile Delta of Egypt Using Remote Sensing Data. Applied Geography, 31(2), 483-494.
Fang, S., George, Z., Gertnera, G.Z., Sun, Z., Andersonc, A.A., (2005). The impact of interactions in spatial simulation of the dynamics of urban sprawl. Landscape and Urban Planning, 73, 294–306.
Gandaseca, S., Sabang, J., Ahmed, O. H. and Majid, N. M. A., (2009), Vegetation Assessment of Peat Swamp Forest Using Remote Sensing. American Journal of Agricultural and Biological Sciences, 4(2), 167-172.
Kristine Lien Skoga, Margrete Steinnes. (2016). How do centrality, population growth and urban sprawl impactfarmland conversion in Norway? Land Use Policy, 59, 185–196.
McConnel, W.J. Sweeney, S.P. and Mulley, B. (2004). Physical and social access to land: spatiotemporal patterns of agricultural expansion in Madagascar. Agriculture, Ecosystems & Environment, 101, 171-184.
Mir Katouli, Jaafar; Hosseini, Ali; Rezaeinia, Hassan; Neshat, Abdolreza. (2012). Detection of land cover changes and land use by approach to fuzzy sets, case study: Gorgan city. Human Geography Research Quaterly, 79, 33-54.
Norouzi Aghdam, Elnaz; Behbahani, Mahmoodreza; Rahimi Khoob, Ali; Aghighi, Hossein. (2008). Soil Moisture Model Using NDVI Index. Journal of Environmental Studies, 34th Year, 48, 127-136.
Park, S., Jeonb, S., Kimc, SH,. Choia, CH.(2011), Prediction and comparison of urban growth by land suitability index mapping using GIS and RS in South Korea, Landscape and Urban Pla
Peng, J., Wang, Y.L., Zhang, Y., Wu, J.S., Li, W.F., You Li, Y., 2010. Evaluating theeffectiveness of landscape metrics in quantifying spatial patterns. Ecological Indicators, 10 (2), 217–223.
Pham, H.M., Yamaguchi, Y., Bui, T.Q., 2011. A case study on the relation between city planning and urban growth using remote sensing and spatial metrics. Landscape and Urban Planning, 100 (3), 223–230.
Pourahmad, Ahmad; Faldini, Ferank C.; Parnoun, Ziba. (2011). Immigration and land use change in Islamshahr, Journal of Arid regions Geographic Studies, Second Year, 5.
Pourahmad, Ahmad; Salehi, Heidar; Romiani, Ahmad. (2014). Optimization of physical development of Urmia city in order to preserve vegetation and agricultural lands. Geoplanning, 19, 83-87.
Reid Ewinga,, Shima Hamidib, James B. Gracec, Yehua Dennis Weid(2016), Does urban sprawl hold down upward mobility? Landscape and Urban Planning, 148, 80–88.
Seif-Al-Dinni, F. (2011), Explaining the distribution and density of Amol urban form with sustainable urban form approach. Journal of Urban Geography studies; Summer, 2012, 80, 155-176.
Shiea, Esmaeil. (1998). An Introduction to the Basics of Urban Planning. Iran University of Science & Technology Publishing.
Soltani, Kambiz. (1992). Topics and methods of urban planning, Environment, Center for Urban Studies and Architecture of Iran.
Soyoung Parka, Seongwoo Jeonb, Shinyup Kimc, Chuluong Choia,(2011), Prediction and comparison of urban growth by land suitability index mapping using GIS and RS in South Korea,Elsevier, Contents lists available at ScienceDirect Landscape and Urban.
Talkhabi, Hamidreza; Ziaeian, Parviz; Soleimani, Mohhammad; Zangane, Ahmad. (2016). Investigating the trend of landslide changes in Arak city during the period of 1973-2011. Geography and Urban Regional Logistics, 19, 43-54.
Václavík, T. and Rogan, J. (2009). Identifying trends in land use/land cover changes in the context of post-socialist transformation in central Europe. GIS Science and Remote Sensing, 49(1), 1-32.
Zaeri Amirani, Azadeh; Sofianian, Alireza. (2012). Using FUZZY ARTMAP and Multilayer Perceptron Neural Network for Land Cover Mapping (Case Study: Isfahan City). Physical Geography Research Quarterly, 79, 127-143.