This study aimed to design a new ecological model to be used in ecological land evaluation studies, using careful planning and sustainable resource in the region to develop a sustainable and comprehensive guide. The results show that the study area has grade 1 and 2 urban sustainable planning. Capability Grade 1 has area 149,724.25 hectares equal 22.2% that is stretched from East to West Range. Capability Grade2 has area about 18533.28 hectares equal 2.7% that located in the South, East and South-East. The results show that the greater extent of this range is the unsustainable site, which extends over 506,664.81 hectares, equivalent to 75.1% that areas compliance by the Environmental Protection area. Another important result of this study is unsuitable area for urban development and the range of services already seating workshops and industrial units. This is due to the arrival of adverse environmental effects. Therefore, this study has been focusing on reform of the status of land of use and the optimal use of the ecological potential.
References
[1]
Rasoli, M. and Salman Mshini, A.R. (2017) Determining Factors Influencing Urban Growth in SLEUTH Model for the City of Aliabad, Ramian and Azad shahr. Geographic Space Planning, 6, n21.
[2]
Al-Sheikh, A. and Josie, A. (2006) The New Model Is Designed to Evaluate the Ecological Potential of Iran to Establish Urban Development and Services. Science and Technology of the Environment, 4, 127-138.
[3]
Makhdoom, M., Jafarzadeh, H. and Darvishsefat, A. (2007) Environmental Assessment and Planning with Geographic Information System (GIS). Tehran University, Tehran.
[4]
Rossiter, D. (1996) A Theoretical Frame Work for Land Evaluation. Geoderama, 72, 165-190. https://doi.org/10.1016/0016-7061(96)00031-6
[5]
Monavari, M. (2007) Environmental Impact Assessment, Mitra.
[6]
Berling-Wolff, S. and Wu, J. (2004) Modeling Urban Landscape Dynamics: A Review. Ecological Research, 19, 119-129. https://doi.org/10.1111/j.1440-1703.2003.00611.x
[7]
Verburg, P.H., Veldkamp, A. and Bouma, J. (1999) Land Use Change under Conditions of High Population Pressure: The Case of Java. Global Environmental Change, 9, 303-312. https://doi.org/10.1016/S0959-3780(99)00175-2
[8]
Kamyab, H., Salman Mshini, A.R., Hossaini, M. and Gholamalifard, M. (2011) Artificial Neural Network Modeling Urban Development (Case Study: Gorgan). Human Geography, 76.
[9]
Han, J., Hayashi, Y., Cao, X. and Imura, H. (2009) Application of an Integrated System Dynamics and Automata Model for Urban Growth Assessment: A Case Study of Shanghai, China. Landscape & Urban Planning, 91, 133-141. https://doi.org/10.1016/j.landurbplan.2008.12.002
[10]
Marengo, M.C. (2014) Analysis-Methodology in a Project of Urban Renewal. Current Urban Studies, 2, 298-305. http://dx.doi.org/10.4236/cus.2014.23028
[11]
Dematteis, G. (2004) En la Encrucijada de la Territorialidad Urbana. Bitacora Urbano Territorial, 1, 53-63.
[12]
Jozie, A. (2009) The New Model Is Designed to Evaluate the Ability of Iran to Establish Urban Development and Services (Case Study: Zone 22 in Tehran). Environmental Science and Technology, 11, 4.
[13]
Planning Department Zanjan (2007) Housing Census Statistics. The Statistical Center of Iran, Zanjan.
[14]
Water District of Zanjan (2007) Studies of Land Use Planning. Water District of Zanjan, Zanjan.
[15]
Makhdoom, M. (2005) Land Use Planning. Tehran University, Tehran.
[16]
Adhami, M.M. (1989) Comparison of Three Methods of Evaluating Natural Resources. Master’s Thesis, Natural Resources Faculty of Tehran University, Tehran.
[17]
Naveh, Z. and Lieberman, A.S. (1984) Landscape Ecology, Springer Series on Environmental Management. Springer-Verlag, New York, 153.
[18]
Miller, C.D. (1987) I Live in the Environment. Tehran University, Tehran, 394.
[19]
Soror, R. (2004) Using the AHP Method in the Geographical Location (Case Study: Positioning for the Future Development of the Miandoab City). Geographical Journal, 36, 38-39.
[20]
Bihamta, N. (2014) Using the Sleuth Urban Growth Model to Simulate Future Urban Expansion of the Isfahan Metropolitan Area, Iran. Journal of the Indian Society of Remote Sensing, 43, 407-414. https://doi.org/10.1007/s12524-014-0402-8