Journal of Geographical Sciences

, Volume 16, Issue 4, pp 415–422 | Cite as

Driving factors of forest landscape change in Yiluo River basin

Article

Abstract

The expansion of agriculture is posited as one of the main dynamics of forest landscape change globally, and the robust modeling of these processes is important for policy as well as academic concern. This paper concerns a relatively small area of Yiluo River catchment where considerable attention has been paid to slow down the process of the expansion of agriculture into the remaining natural forests. In the present study, we reconstructed the former forest landscape structure and elucidated the landscape change during a period of about 15 years. Three sets (1987, 1996 and 2002) of maps derived from Landsat-5 images were used for analyses. The result showed that there was a decrease in the area of the forest landscape from 995.60 km2 in 1987 to 650.50 km2 in 2002. Then we examined the degree to which forest landscape conversion could be attributed to a set of factors identified as significant at broader scales, namely topography, distribution of the village clusters (centroids), distance from villages (centroids), and distance from forest edge (1987). By using “spatial analysis” in Arc/gis 8.3, the correlation between forest landscape change and driving factors was constructed. This study found that forest landscape conversion in this region was largely explained by elevation, slope and proximity to village.

Key words

Luoning County agricultural expansion driving factors landscape change 

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References

  1. Chang Jie, Li Huidian, Huang Yujie et al., 2004. Spatial structure change of land use on middle-sized basin on RS and GIS: a case study of Luoning County in central Yiluo River basin. Journal of Institute of Surveying and Mapping, 21(1): 42–45. (in Chinese)Google Scholar
  2. Ding Shengyan, Qian Lexiang, Cao Xinxiang et al., 2003. Forest landscape pattern dynamics of Yihe-Luohe River Basin. Acta Geographica Sinica, 58(3): 354–362. (in Chinese)Google Scholar
  3. Editorial Committee of China Encyclopedia, 1990. China Encyclopedia. Beijing: Encyclopedia of China Publishing House. (in Chinese)Google Scholar
  4. Geist H, Lambin E F, 2002. Proximate causes and underlying driving forces of tropical deforestation. BioScience, 52(2): 143–150.CrossRefGoogle Scholar
  5. Goudie A, Viles H, 1997. The Earth Transformed: An Introduction to Human Impacts on the Environment. Oxford: Blackwell.Google Scholar
  6. Kaimowitz D, Angelsen, A, 1996. A Guide to Economic Models of Tropical Deforestation. Centre for International Forestry Research, Jakarta.Google Scholar
  7. Kim Y M, Zerb S, Kowarik I, 2002. Human impact on flora and habitats in Korean rural settlements. Preslia, Praha, 74: 409–419.Google Scholar
  8. Krausmann F, Haberl H, Schulz N B et al., 2003. Land-use change and socio-economic metabolism in Austria. Part I. Driving forces of land-use change: 1950–1995. Land Use Policy, 20: 1–20.CrossRefGoogle Scholar
  9. Lambin E F, 1994. Modelling of deforestation processes: a review. TREES Publication Series B. Research Report No. 1. European Commission, Brussels, EUR 15744 EN.Google Scholar
  10. Lambin E F, Baulies X, Bockstael N et al., 1999. Land use and cover change implementation strategy. IGBP Report No. 48/IHDP, Report No. 10. IGBP, Stockholm.Google Scholar
  11. Lambin E F, Turner II B L, Geist H J et al., 2001. The causes of land-use and land-cover change: moving beyond the myths. Global Environmental Change, 11: 261–269.CrossRefGoogle Scholar
  12. Li X J, Jim P, Liu G J et al., 2001. Assessing regional sustainability: the case of land use and land cover change in the middle Yiluo River catchment of the Yellow River basin, China. Applied Geography, 21: 87–106.CrossRefGoogle Scholar
  13. Liu Jingyu, Chang Jie, Zhao Hhuifeng, 2005. Studies of human driving force of cultivated land change: a case study of Luoning County. Agricultural Science of Henan Province, 9: 58–61. (in Chinese)Google Scholar
  14. Mertens B, Lambin E F, 2000. Land-cover-change trajectories in southern Cameroon. Ann. Assoc. Am. Geogr., 90(3): 467–494.CrossRefGoogle Scholar
  15. Qian Lexiang, Li Shuang, Zhang Xiaowei, 2005. Change on the vegetation landscape pattern in the typical Yiluo River River valley: a case study from Luoning County, Henan Province. Chinese Journal of Eco-Agriculture, 13(1): 49–52. (in Chinese)Google Scholar
  16. Turner M G, 1990. Spatial and temporal analysis of landscape patterns. Landscape Ecology, 4(1): 21–30.Google Scholar
  17. Turner II B L, Moss R H, Skole D L, 1993. Relating land use and global land-cover change: a proposal for IGBP-HDP Core Product. IGBP Report 24, Stockholm, Sweden, HDP Report 5.Google Scholar
  18. Veldkamp A, Lambin E, 2001. Predicting land use change. Agriculture Ecosystem and Environment, 85(1–3): 1–6.CrossRefGoogle Scholar
  19. Vitousek P M, 1992. Global environmental change: an introduction. Annu. Rev. Ecol. Syst., 23: 1–14.CrossRefGoogle Scholar
  20. Vitousek P M, Mooney H A, Lubchenko J et al., 1997. Human domination of earth’s ecosystems. Science, 277: 494–499.CrossRefGoogle Scholar
  21. Yellow River Conservancy Commission, 1989. The Atlas of Yellow River Basin. Beijing: China Cartographic Publishing House. (in Chinese)Google Scholar
  22. Wrbka T, Erb K H, Schulz N B et al., 2004. Linking pattern and process in cultural landscapes: an empirical study based on spatially explicit indicators. Land Use Policy, 21: 289–306.CrossRefGoogle Scholar

Copyright information

© Science in China Press 2006

Authors and Affiliations

  1. 1.Institute of Natural Resources and Environmental Science ResearchHenan UniversityKaifengChina
  2. 2.College of Environment & PlanningHenan UniversityKaifengChina

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