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Translated title of the contribution: Analyzing the Spatial Change of Urban Green Spaces with CellBased Spatial Metrics - A Case Study of Daegu -

Hyun-Jin Seo, Byong-Woon Jun

Research output: Contribution to journalArticlepeer-review

Abstract

This study analyzed the spatial change of urban green spaces in Daegu from 1989 to 2009 using cell based spatial metrics. To do so, the conversion process of land covers during the past 20 years was explored using a land cover change detection matrix. The synoptic analysis with a moving window sampling strategy was conducted to quantify cell based spatial metrics related to size, shape, cohesion, and diversity and to explain the spatial change at the local level. Difference maps were then generated by subtracting the 1989 maps of spatial metrics from the 1998 maps and the 1998 maps from the 2009 maps. The gradient analysis was performed to identify the directional change of spatial metrics along an urban development axis in Daegu. The results from this study show that urban green spaces in Daegu during the past 20 years have been gradually fragmented around the new town housing development districts such as Dalseong-gun, Seongseo, and Ansim. Forests were most prominently fragmented in the Hwawon area while most rapidly in the Chilgok area. Grasslands were largely fragmented in many areas due to the decrease in size and cohesion indices and most fragmented in the Ansim area. The spatial pattern of the decreased and fragmented urban green spaces identified by this study can be used as a base data for establishing the environment-friendly urban development strategy in Daegu.
Translated title of the contributionAnalyzing the Spatial Change of Urban Green Spaces with CellBased Spatial Metrics - A Case Study of Daegu -
Original languageKorean
Pages (from-to)136-150
JournalJournal of the Korean Association of Regional Geographers
Volume23
Issue number1
DOIs
StatePublished - 28 Feb 2017

Keywords

  • Urban Green Space
  • Spatial Metrics
  • Moving Window
  • Difference Map
  • Gradient Analysis

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