Futuristic Analysis of Urban Land Use Changes Using Satellite Image Analysis
(A Case of Tabriz)
Subject Areas :
Hamid Norash
1
,
Karim Hosseinzadeh Dalir
2
,
Ali Azar
3
1 - PhD student of Geography & Urban Planning, Marand Branch, Islamic Azad University, Marand, Iran
2 - Professor of Department of Geography and Urban Planning, Marand Branch, Islamic Azad University, Marand, Iran
3 - Associate Professor, Department of Architecture and Urban Planning, Maragheh Branch, Islamic Azad University, Maragheh, Iran
Received: 2021-01-02
Accepted : 2021-02-23
Published : 2023-10-23
Keywords:
Tabriz,
Land Use Change,
Urban Development,
Satellite Images,
Futurism,
Abstract :
Understanding the trend of land use change and its influencing factors stands as a paramount concern in contemporary urban studies. The vicinities surrounding cities bear the impact of urban growth, triggering alterations in the roles, functions, and configurations of these ecological complexes. Tabriz, being a pivotal metropolis in the country, has undergone notable changes in land use in recent years. The urban expansion has transformed the surrounding lands, including gardens and agricultural areas. This study aims to scrutinize the patterns of land use change in Tabriz from 1986 to 2016. Employing a descriptive-analytical research approach with documentary and field data collection methods, Landsat satellite images, ENVI 4.8 software, and Arc GIS 10.2 geographic information system were utilized to analyze the changes in Tabriz's urban lands over three decades. The findings reveal that Tabriz, in pursuit of its development, has predominantly encroached upon green spaces and agricultural lands, leading to a decline in their share over time.
References:
اکبری، ا، زنگنه اسدی، م، ع، تقوی مقدم، ا، (2016)، پایش تغییرات کاربری اراضی با استفاده از روشهای مختلف تئوری آموزش آماری منطقه نیشابور، آمایش جغرافیایی فضا، 6(20)، 35-50.
امیرانتخابی، ش، جوان، ف، حسنی مقدم، ح، (1396)، آشکارسازی تغییرات کاربری اراضی و عوامل مؤثر بر آن با استفاده از شبکه عصبی مصنوعی (مورد مطالعه: شهرستان تالش)، کاربرد سیستم اطلاعات جغرافیایی و سنجش از دور در برنامهریزی، 8(3)، 1-11.
بصیری م، زینالیعظیم ع، (1398)، تأثیر مبلمان شهری برکیفیت محیط زیست شهری (مطالعه موردی محدوده خیابان امام تبریز از میدان ساعت تا آبرسان)، جغرافیا (برنامهریزی منطقهای)، 9(3)، 229-248.
خوش لهجه، م، رنجگر ب، مقیمی آ، بهشتیفر س، مقصودی ی، محمدزاده ع، (1398)، مروری بر روشها و مدلهای مورد استفاده در شناسایی تغییرات کاربری اراضی با تکیه بر سنجش از دور و GIS (با تأکید بر مطالعات صورت گرفته در کشور ایران)، علوم و فنون نقشه برداری، 9(2)، 225-242.
شریفی، ل، رسولی، ع. ا، حجازی، م. ا، رستمزاده، ه، (1392)، آشکارسازی تغییرات کاربری/پوشش اراضی با پردازش شئگرای تصاویر ماهوارهای (مطالعه موردی: شهرستان تبریز)، جغرافیا و برنامهریزی، 17(44)، 203-214.
شفیعی ثابت، ن و محمدی، ا، شکیبا، ع. ر، (1398)، در مطالعه آشکارسازی و پیشبینی تغییرات کاربری اراضی با استفاده از مدلCA-Markov، محور کلانشهر تهران دماوند، اطلاعات جغرافیایی (سپهر)، 28(111)، 175-190.
فرامرزی م، زینالیعظیم ع، (1397)، ارزیابی عملکرد مدیریتی شهر تبریز پس از استقرار شورای اسلامی شهر تبریز، جغرافیا (برنامهریزی منطقهای)، 9(1)، 445-458.
Alawamy, J. S., Balasundram, S. K., Mohd. Hanif, A. H., & Boon Sung, C. T. (2020). Detecting and Analyzing Land Use and Land Cover Changes in the Region of Al-Jabal Al-Akhdar, Libya Using Time-Series Landsat Data from 1985 to 2017. Sustainability, 12(11), 4490. https://doi.org/10.3390/su12114490.
Amir Siddique M, Dongyun L, Li P, Rasool U, Ullah Khan T, Javaid Aini Farooqi T, Wang L, Fan B, Rasool MA. (2020). Assessment and simulation of land use and land cover change impacts on the land surface temperature of Chaoyang District in Beijing, China. PeerJ 8:e9115 https://doi.org/10.7717/peerj.9115.
Anderson, W.P., Kanaroglou, P.S. and Miller, E.J. (1996).Urban form, energy and the environment: a review of issues, evidence.
Basiri, Mostafa, Ali Zeynali Azim, and Mina Farrokhi. (2017). Smart City Solution for Sustainable Urban Development. European Journal of Sustainable Development 6 (1):71. https://doi.org/10.14207/ejsd.2017.v6n1p71.
Chang, Y.; Hou, K.; Li, X.; Zhang, Y.; Chen, P. (2018), Review of Land Use and Land Cover Change research progress. IOP Conf. Ser. Earth Environ. Sci. 113, 1–6.
Deng, Y., & Srinivasan, S. (2016). Urban land use change and regional access: A case study in Beijing, China. Habitat International, 51, 103–113.http://dx.doi.org/10.1016/j.habitatint.2015.09.007.
Fragkias, M., & Seto, K. C. (2009). Evolving rank-size distributions of intrametropolitan urban clusters in South China, Computers. Environment and Urban Systems, 33(3), 189e199.
Irwin, E. G., Jayaprakash, C., & Munroe, D. K. (2009). Towards a comprehensive framework for modeling urban spatial dynamics. Landscape Ecology, 24(9), 1223–1236 https://doi.org/10.1007/s10980-009-9353-9.
Lambin, E. F., Turner, B. L., Geist, H. J., Agbola, S. B., Angelsen, A., Bruce, J. W., et al. (2001). The causes of land-use and land-cover change: moving beyond the myths. Global environmental change, 11(4), 261-269.
Lark, T.J., Mueller, R.M., Johnson, D.M., Gibbs, H.K., (2017). Measuring land-use and land cover change using the US department of agriculture's cropland data layer: cautions and recommendations. Int. J. Appl. Earth Obs. Geoinf. 62, 224–235. http://dx.doi.org/10.1016/j.jag.2017.06.007.
Li, Y., & Liu, G. (2017). Characterizing Spatiotemporal Pattern of Land Use Change and Its Driving Force Based on GIS and Landscape Analysis Techniques in Tianjin during 2000–2015. Sustainability, 9(6), 894. https://doi.org/10.3390/su9060894.
Lillesand, T.M., & Kiefer, R.W., (2001), Remote Sensing and Image Interpretation, 4thed, John Wiley and Sons, Inc. USA, ISBN: 0471255157.
Hu, Y., Batunacun, Zhen, L., & Zhuang, D. (2019). Assessment of Land-Use and Land-Cover Change in Guangxi, China. Scientific Reports, 9(1). https://doi.org/10.1038/s41598-019-38487-w.
Nath, B., Wang, Z., Ge, Y., Islam, K., P. Singh, R., & Niu, Z. (2020). Land Use and Land Cover Change Modeling and Future Potential Landscape Risk Assessment Using Markov-CA Model and Analytical Hierarchy Process. ISPRS International Journal of Geo-Information, 9(2), 134. https://doi.org/10.3390/ijgi9020134.
Nath, B., Niu, Z., & Singh, R. (2018). Land Use and Land Cover Changes, and Environment and Risk Evaluation of Dujiangyan City (SW China) Using Remote Sensing and GIS Techniques. Sustainability, https://doi.org/10(12),4631.10.3390/su10124631.
Nulpponen, J, (2016), Scenario analysis in strategic regional land use planning, Master’s Thesis Lahti University of Applied Sciences Faculty of Technology Master Degree Programme in Environmental Technology
Omar, P.J.; Gupta, N.; Tripathi, R.P.; Shekhar, S.S. (2017), A study of change in agricultural and forest land in Gwalior city using satellite imagery. S-JPSET, 9, 109–112.
Pokhrel, Y., Burbano, M., Roush, J., Kang, H., Sridhar, V., and Hyndman, D. W. (2018a). A review of the integrated effects of changing climate, land use, and dams on Mekong River. Hydrology 10:266. https://doi.org/10.3390/w1003.
Owar Othow, O., Legesse Gebre, S., & Obsi Gemeda, D. (2017). Analyzing the Rate of Land Use and Land Cover Change and Determining the Causes of Forest Cover Change in Gog District, Gambella Regional State, Ethiopia. Journal of Remote Sensing & GIS, 06(04). https://doi.org/10.4172/2469-4134.10002.
Qian, Y., & Wu, Z. (2019). Study on Urban Expansion Using the Spatial and Temporal Dynamic Changes in the Impervious Surface in Nanjing. Sustainability, 11(3), 933. https://doi.org/10.3390/su11030933.
Sharma, R., Nguyen, T., & Grote, U. (2018). Changing Consumption Patterns-Drivers and the Environmental Impact. Sustainability, 10(11), 4190. https://doi.org/10.3390/su10114190.
Sleeter, B. M., Liu, J., Daniel, C., Rayfield, B., Sherba, J., Hawbaker, T. J, Loveland, T. R. (2018). Effects of contemporary land-use and land-cover change on the carbon balance of terrestrial ecosystems in the United States. Environmental Research Letters, 13(4), 045006. https://doi.org/10.1088/1748-9326/aab540.
Schirpke, U., Kohler, M., Leitinger, G., Fontana, V., Tasser, E., & Tappeiner, U. (2017). Future impacts of changing land-use and climate on ecosystem services of mountain grassland and their resilience. Ecosystem Services, 26, 79–94. https://doi.org/10.1016/j.ecoser.2017.06.008.
Spruce, J., Bolten, J., Mohammed, I. N., Srinivasan, R., & Lakshmi, V. (2020). Mapping Land Use Land Cover Change in the Lower Mekong Basin From 1997 to 2010. Frontiers in Environmental Science, 8. https://doi.org/10.3389/fenvs.2020.00021.
Teixeira, Z., Teixeira, H., & Marques, J. C. (2014). Systematic processes of land use/land cover change to identify relevant driving forces: Implications on water quality. Science of The Total Environment, 470-471, 1320–1335.
Tendaupenyu, P., Magadza, C. H. D., & Murwira, A. (2016). Changes in landuse/landcover patterns and human population growth in the Lake Chivero catchment, Zimbabwe. Geocarto International, 32(7), 797–811. https://doi.org/10.1080/10106049.2016.1178815.
Wang, Z., Yang, X., Lu, C., & Yang, F. (2018). A scale self-adapting segmentation approach and knowledge transfer for automatically updating land use/cover change databases using high spatial resolution images. International Journal of Applied Earth Observation and Geoformation, 69, 88–98. https://doi.org/10.1016/j.jag.2018.03.001.
_||_