DOI QR코드

DOI QR Code

An Estimation of the Spatial Development Patterns based on the Characteristic City Indicators - The Case of Gangnam District -

도시특성지표 기반 공간개발 패턴 추정에 관한 연구 - 강남지역을 대상으로 -

  • Jang, Seongman (Dept. of Urban Planning and Design, University of Seoul) ;
  • Yi, Changhyo (Dept. of Urban Planning and Design, University of Seoul)
  • Received : 2014.11.18
  • Accepted : 2015.06.10
  • Published : 2015.06.30

Abstract

Most data used for urban planning is aggregated by administrative district. Thus, a fundamental limit to analysing the changes of micro-geographical units exists. The object of this study is to estimate spatial development patterns based on characteristic city indicators. Gangnam, an area that was analysed, was divided into hexagon polygons. The development density and characteristic city indicators were input into each polygon. Moreover, this study analysed the influence of characteristic city indicators on development density using multinomial regression analysis. According to the results, distance between a polygon and both a road and a bus stop led to a decrease of development density in the polygon. However, distance between a polygon and a river led to an increase of development intensity. The method of this analysis and the results can be used to disaggregate the zonal data in the urban planing area.

현재 계획단계에서 구득하여 활용할 수 있는 토지이용 관련 정보는 시도, 시군구, 그리고 읍면동과 같은 집계된 단위의 자료가 주를 이루고 있어, 미시적 공간단위에서의 변화 양상을 파악하기에는 근본적인 한계가 존재한다. 본 연구의 목적은 존 내 물리적 도시특성지표를 바탕으로 공간 개발패턴을 추정하는 방법론을 개발하는데 있다. 본 연구에서는 강남지역을 육각형 픽셀로 분할하고 각 공간분석단위별로 판매 및 업무의 건축물 개발강도를 단계별로 구분하여 도시의 공간적 특성이 판매 및 업무에 어떠한 영향을 미치는가를 다항 로지스틱 회귀분석을 통해 수행하였다. 분석결과 도로와 버스정류장과의 거리가 증가하면 밀도 개발 확률이 감소하며, 수계와의 거리가 증가하면 밀도 개발 확률이 높아짐을 확인하였다. 본 연구의 방법론과 결과물은 도시계획분야에서 집계된 자료를 미시적 공간으로 세분하는 방법론으로 활용될 것으로 판단된다.

Keywords

References

  1. An, Y; Jang, S; Lee, S. 2012, A Study on the Distribution Pattern of Commercial Facilities around a Subway Station Using GIS Network Analysis - Focused on Sillim Station of Seoul Subway Line 2 -, Journal of Korea Planners Association, 47(1):199-213.
  2. Barredo, J. I; Demicheli, L; Lavalle, C; Kasanko, M; McCormick, N. 2004, Modelling future urban scenarios in developing countries: an application case study in Lagos, Nigeria, Environment and Planning B, 31(1):65-84. https://doi.org/10.1068/b29103
  3. Batty, M; Longley P; Fotheringham S. 1989, Urban growth and form: scaling, fractal geometry, and diffusion-limited aggregation. Environment and Planning A, 21:1447-1472. https://doi.org/10.1068/a211447
  4. Chae, G. 2010, Social Science Statistical analysis (vol.3), Yangseowon, Paju.
  5. Cho D. 2008, Cellular Automata Based Urban Landuse Change Modeling Considering Development Density, Journal of Korean Geographical Society, 43(1):117-133.
  6. Choi, C. G. 2004, An Analysis on the Physical Control Factors Affecting Building Envelope by Modeling Simplified Permissible Bulk Formation, Journal of the Korea Real Estate Analysts Association, 10(2):95-106.
  7. Choi, M. J; Kim, J. Y. 1999, Urban Development Density with Infrastructure Constrains, Journal of Korea Planners Association, 34(3):61-73.
  8. Harris, B. 1985, Urban simulation models in regional science, Journal of Regional Science, 25(4):545-567. https://doi.org/10.1111/j.1467-9787.1985.tb00322.x
  9. Jang, S; An, Y; Lee S. 2014, Empirical Study on The Effect of The Building Density Change in Station Influence Area on Pedestrian Network Distance -Using Distance Decay Function-, Paper presented at the Korea planning association Fall Conference 2014, October 25.
  10. Jang, S; Yu, Y. Z; Yi, C. 2012, Estimation of the spatial development patterns based on determination factors of the city form - Focused on Gangnam, Paper presented at the Urban Design Institute of Korea Fall Conference 2012, October 20.
  11. Jeong, J; Lee, C; Kim, Y. 2002, Developments of Cellular Automata Model for the Urban Growth, Journal of Korea Planners Association, 37(1):27-43.
  12. Kaiser, E. J; David, R. G; Chapin, F. S. 1995, Urban land use planning (vol.4), University of Illinois Press, Urbana.
  13. Kang Y; Park S. 2000, A Study on the Urban Growth Forecasting for the Seoul Metropolitan Area, Journal of Korean Geographical Society, 35(4):621-639.
  14. Kim, A. J. 2001, An Urban Design Method Based upon Development Capacity under Infrastructure Constraints -the Case of Suji-Eup, Yongin City, Korea, Master degree dissertation. Department of Urban Engineering, The Graduate School of Chung-Ang University.
  15. Kim, M. Y. 2005, Urban and GIS - Urban Information System, Sungandang, Paju.
  16. Kim, N. Y; Kim, K. H; Park, Y. G. 2011, Development of GIS-based Integrated DB Management System for the Analysis of Climate Environment Change, Journal of Korea Spatial Information Society, 19(6):89-99.
  17. Korea Planners Association. 2008, Introduction to URBAN PLANNING, Bosungkag, Seoul.
  18. Lee, H. C; Kim, K. H. 2001, A Study on the Factor Analysis of Development Density in Residential Zone for the Purpose of Classified Zoning Control in Seoul, Journal of Korea Planners Association, 36(5):73-88.
  19. Lee, M. 2000, Adaptability of Land Use Control as Settlement Policy in CBD, Journal of Korea Planners Association, 35(5):29-38.
  20. Lee, S. 2001, Umweltvertragliche Stadtentwicklung fur Kwangju: alternative Strukturen der Nachhaltigkeit fur eine Stadtregion in Sudkorea, Inst. f. Raumplanung, Univ.
  21. Lee, S; Lee, S. W; Hong, B. Y; Eom, H; Shin, H. S; Kim, K. 2014, Representation of Population Distribution based on Residential Building Types by using the Dasymetric Mapping in Seoul, Journal of Korea Spatial Information Society, 22(3):89-99.
  22. Spiekermann, K; Wegener, M. 1999, Freedom from the tyranny of zones: towards new GIS-based spatial models, Spatial Models and GIS: New Potential and New Models.
  23. Sung, H; Choi, M. J. 2014, An Effect of Rail Station Accessibility on Building Development Density, Journal of Korea Planners Association, 49(3):63-77.
  24. Suzuki, H; Cervero, R; Iuchi, K. 2013, Transforming cities with transit: Transit and land-use integration for sustainable urban development, World Bank Publications.
  25. White, R; Engelen, G. 1993, Cellular automata and fractal urban form: a cellular modelling approach to the evolution of urban land-use patterns, Environment and planning A, 25(8):1175-1199. https://doi.org/10.1068/a251175
  26. Yeo, C. H; Kim, J. I. 2007, Linking Urban Development Density with Infrastructure Capacity, Journal of the Korean Association of Geographic Information Studies, 10(4):46-59.

Cited by

  1. Analysis of Seoul Station Overpass Pedestrianization Project’s Influence on Walking Accessibility and Floating Population Movement Patterns in the Surrounding Area vol.3, pp.1, 2015, https://doi.org/10.30902/jrea.2017.3.1.119
  2. A Study on the Spatial Characteristics of the Long-term Survival Commercial Facilities Location : Focused on Ordinary Restaurants in Gangnam-gu, Seoul vol.53, pp.2, 2015, https://doi.org/10.17208/jkpa.2018.04.53.2.161
  3. A Comparative Study on Spatial Characteristics of Parcel by Type of Building Construction vol.54, pp.6, 2015, https://doi.org/10.17208/jkpa.2019.11.54.6.27