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Fast Identification of Urban Sprawl Based on K-Means Clustering with Population Density and Local Spatial Entropy

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  • Lingbo Liu

    (Department of Urban Planning, School of Urban Design, Wuhan University, Wuhan 430072, China)

  • Zhenghong Peng

    (Department of Graphics and Digital Technology, School of Urban Design, Wuhan University, Wuhan 430072, China)

  • Hao Wu

    (Department of Graphics and Digital Technology, School of Urban Design, Wuhan University, Wuhan 430072, China)

  • Hongzan Jiao

    (Department of Graphics and Digital Technology, School of Urban Design, Wuhan University, Wuhan 430072, China)

  • Yang Yu

    (Department of Urban Planning, School of Urban Design, Wuhan University, Wuhan 430072, China)

  • Jie Zhao

    (Department of Urban Planning, School of Urban Design, Wuhan University, Wuhan 430072, China)

Abstract

As urban sprawl is proven to jeopardize the sustainability system of cities, the identification of urban sprawl is essential for urban studies. Compared with previous related studies which tend to utilize more and more complicated variables to recognize urban sprawl while still retaining an element of uncertainty, this paper instead proposes a simplified model to identify urban sprawl patterns. This is a working theory which is based on a diagram interpretation of the classic urban spatial structure patterns of the Chicago School. The method used in our study is K-means clustering with gridded population density and local spatial entropy. The results and comparison with open population data and mobile phone data verify the assumption and furthermore indicate that the accuracy of source population data will limit the precision of output identification. This article concludes that urban sprawl is mainly dominated by population and surrounding unevenness. Moreover, the Floating Catchment Area (FCA) local spatial entropy method presented in this research brings about an integration of Shannon entropy, Tobler’s first law of geography and the Moore neighborhood, improving the spatial homogeneity and locality of Batty’s Spatial Entropy model which can only be used in a general scope.

Suggested Citation

  • Lingbo Liu & Zhenghong Peng & Hao Wu & Hongzan Jiao & Yang Yu & Jie Zhao, 2018. "Fast Identification of Urban Sprawl Based on K-Means Clustering with Population Density and Local Spatial Entropy," Sustainability, MDPI, vol. 10(8), pages 1-16, July.
  • Handle: RePEc:gam:jsusta:v:10:y:2018:i:8:p:2683-:d:161014
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    References listed on IDEAS

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    1. Marcy Burchfield & Henry G. Overman & Diego Puga & Matthew A. Turner, 2006. "Causes of Sprawl: A Portrait from Space," The Quarterly Journal of Economics, President and Fellows of Harvard College, vol. 121(2), pages 587-633.
    2. Liu, Yong & Fan, Peilei & Yue, Wenze & Song, Yan, 2018. "Impacts of land finance on urban sprawl in China: The case of Chongqing," Land Use Policy, Elsevier, vol. 72(C), pages 420-432.
    3. Amnon Frenkel & Maya Ashkenazi, 2008. "The integrated sprawl index: measuring the urban landscape in Israel," The Annals of Regional Science, Springer;Western Regional Science Association, vol. 42(1), pages 99-121, March.
    4. Burchell, R.W. & Mukherji, S., 2003. "Conventional Development Versus Managed Growth: The Costs of Sprawl," American Journal of Public Health, American Public Health Association, vol. 93(9), pages 1534-1540.
    5. Jan K. Brueckner, 2000. "Urban Sprawl: Diagnosis and Remedies," International Regional Science Review, , vol. 23(2), pages 160-171, April.
    6. Hao Wu & Lingbo Liu & Yang Yu & Zhenghong Peng, 2018. "Evaluation and Planning of Urban Green Space Distribution Based on Mobile Phone Data and Two-Step Floating Catchment Area Method," Sustainability, MDPI, vol. 10(1), pages 1-11, January.
    7. Dan Vickers & Phil Rees, 2007. "Creating the UK National Statistics 2001 output area classification," Journal of the Royal Statistical Society Series A, Royal Statistical Society, vol. 170(2), pages 379-403, March.
    8. Lingbo Liu & Zhenghong Peng & Hao Wu & Hongzan Jiao & Yang Yu, 2018. "Exploring Urban Spatial Feature with Dasymetric Mapping Based on Mobile Phone Data and LUR-2SFCAe Method," Sustainability, MDPI, vol. 10(7), pages 1-15, July.
    9. Zhongqiang Bai & Juanle Wang & Mingming Wang & Mengxu Gao & Jiulin Sun, 2018. "Accuracy Assessment of Multi-Source Gridded Population Distribution Datasets in China," Sustainability, MDPI, vol. 10(5), pages 1-15, April.
    10. Nicholas A Phelps & Cristian Silva, 2018. "Mind the gaps! A research agenda for urban interstices," Urban Studies, Urban Studies Journal Limited, vol. 55(6), pages 1203-1222, May.
    11. Heckman, C.J., 2017. "Public Parks and Shady Areas in Times of Climate Change, Urban Sprawl, and Obesity," American Journal of Public Health, American Public Health Association, vol. 107(12), pages 1856-1858.
    12. Marina Alberti, 2005. "The Effects of Urban Patterns on Ecosystem Function," International Regional Science Review, , vol. 28(2), pages 168-192, April.
    13. Michael Batty, 2008. "Fifty Years of Urban Modeling: Macro-Statics to Micro-Dynamics," Springer Books, in: Sergio Albeverio & Denise Andrey & Paolo Giordano & Alberto Vancheri (ed.), The Dynamics of Complex Urban Systems, pages 1-20, Springer.
    14. Takahashi, Takaaki, 2014. "Location competition in an Alonso–Mills–Muth city," Regional Science and Urban Economics, Elsevier, vol. 48(C), pages 82-93.
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    7. Yiming Wang & Pengcheng Xiang, 2018. "Urban Sprawl Sustainability of Mountainous Cities in the Context of Climate Change Adaptability Using a Coupled Coordination Model: A Case Study of Chongqing, China," Sustainability, MDPI, vol. 11(1), pages 1-20, December.
    8. Uijeong Hwang & Myungje Woo, 2020. "Analysis of Inter-Relationships between Urban Decline and Urban Sprawl in City-Regions of South Korea," Sustainability, MDPI, vol. 12(4), pages 1-23, February.

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