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Understanding the macro-micro dynamics of urban densification: A case study of different sized Indian cities

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  • Shukla, Anugya
  • Jain, Kamal
  • Ramsankaran, RAAJ
  • Rajasekaran, Eswar

Abstract

Indian cities face unplanned and rapid urbanization, yet limited studies investigate their urban growth dynamics systematically. Urban land density (ULD) analysis is crucial for developing countries worldwide, especially for populous countries like India. To understand the complexities of urban structure and its expansion, we propose a framework for quantifying urban densification by integrating its macro structure and micro dynamics. Five Indian cities are chosen as study areas based on economic categorization and city size. The macro-structure analysis is performed through a non-linear fitting of concentric density zones to derive an urban land density function (ULDF). The parameters of ULDF define the compactness and dispersion of urban expansion. The micro-urban form analysis is carried out by examining the spatial configuration of ULD. The study reveals that Tier-I city suffered from high compact urban growth. In contrast, Tier-II city with the elevated topography is found to have the highest urban land density at the city center in all studied years compared to the remaining chosen cities. The study also reveals that Tier-II city with plane topography has shown a significant increase in urban land density at boundaries. The rest of the chosen cities of Tier-III have contributed more toward dispersive growth. The spatial configuration of urban densities indicates that Tier-I and Tier-II cities have a close relationship in urban patches and class dynamics. Overall results from macro structure analysis depict that Tier-I and Tier-II cities are interrelated and consistent w.r.t. the ULDF, whereas, Tier-III city and town are explainable inconsistent. This inconsistency can be explained through a micro-urban form analysis. The study reveals the varied characteristics of developing cities, which would help policymakers and urban planners enhance the quality of urbanization and promote sustainable development.

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  • Shukla, Anugya & Jain, Kamal & Ramsankaran, RAAJ & Rajasekaran, Eswar, 2021. "Understanding the macro-micro dynamics of urban densification: A case study of different sized Indian cities," Land Use Policy, Elsevier, vol. 107(C).
  • Handle: RePEc:eee:lauspo:v:107:y:2021:i:c:s0264837721001927
    DOI: 10.1016/j.landusepol.2021.105469
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    References listed on IDEAS

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    1. Rolf Pendall & John I. Carruthers, 2003. "Does density exacerbate income segregation? Evidence from U.S. metropolitan areas, 1980 to 2000," Housing Policy Debate, Taylor & Francis Journals, vol. 14(4), pages 541-589, January.
    2. R White & G Engelen, 1993. "Cellular Automata and Fractal Urban Form: A Cellular Modelling Approach to the Evolution of Urban Land-Use Patterns," Environment and Planning A, , vol. 25(8), pages 1175-1199, August.
    3. Duque,Juan Carlos & Lozano Gracia,Nancy & Patino,Jorge E. & Restrepo Cadavid,Paula & Velasquez,Wilson A., 2019. "Spatio-Temporal Dynamics of Urban Growth in Latin American Cities : An Analysis Using Nighttime Lights Imagery," Policy Research Working Paper Series 8702, The World Bank.
    4. Eduardo Gomes & Arnaud Banos & Patrícia Abrantes & Jorge Rocha, 2018. "Assessing the Effect of Spatial Proximity on Urban Growth," Sustainability, MDPI, vol. 10(5), pages 1-14, April.
    5. Manjula Ranagalage & Ronald C. Estoque & Hepi H. Handayani & Xinmin Zhang & Takehiro Morimoto & Takeo Tadono & Yuji Murayama, 2018. "Relation between Urban Volume and Land Surface Temperature: A Comparative Study of Planned and Traditional Cities in Japan," Sustainability, MDPI, vol. 10(7), pages 1-17, July.
    6. Harrison, David Jr. & Kain, John F., 1974. "Cumulative urban growth and urban density functions," Journal of Urban Economics, Elsevier, vol. 1(1), pages 61-98, January.
    7. Martin Herold & Joseph Scepan & Keith C Clarke, 2002. "The Use of Remote Sensing and Landscape Metrics to Describe Structures and Changes in Urban Land Uses," Environment and Planning A, , vol. 34(8), pages 1443-1458, August.
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    2. Anasua Chakraborty & Sujit Sikder & Hichem Omrani & Jacques Teller, 2022. "Cellular Automata in Modeling and Predicting Urban Densification: Revisiting the Literature since 1971," Land, MDPI, vol. 11(7), pages 1-19, July.

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