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Volume 21 Issue 6
Dec 2010
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Article Contents
Wahren Andreas, Berkhoff Karin, Münch Albrecht, Herrmann Sylvia, Karl-Heinz Feger. A Setup for a Scenario-Driven Water Balance at Landscape Scale—Assessment with AKWA-M®-Embedded in a Model Framework for Land-Use Planning's Decision Support in Mountainous Southwest China. Journal of Earth Science, 2010, 21(6): 974-978. doi: 10.1007/s12583-010-0151-8
Citation: Wahren Andreas, Berkhoff Karin, Münch Albrecht, Herrmann Sylvia, Karl-Heinz Feger. A Setup for a Scenario-Driven Water Balance at Landscape Scale—Assessment with AKWA-M®-Embedded in a Model Framework for Land-Use Planning's Decision Support in Mountainous Southwest China. Journal of Earth Science, 2010, 21(6): 974-978. doi: 10.1007/s12583-010-0151-8

A Setup for a Scenario-Driven Water Balance at Landscape Scale—Assessment with AKWA-M®-Embedded in a Model Framework for Land-Use Planning's Decision Support in Mountainous Southwest China

doi: 10.1007/s12583-010-0151-8
Funds:

the German Federal Ministry of Education and Science (BMBF) 0330797A

More Information
  • Corresponding author: Andreas Wahren, wahren@forst.tu-dresden.de
  • Received Date: 13 Jun 2010
  • Accepted Date: 20 Aug 2010
  • Publish Date: 01 Dec 2010
  • Land-cover changes cause a loss of natural vegetation in many parts of the world. In the Xishuangbanna (西双版纳) district (Yunnan (云南) Province), rubber plantations replace tropical rainforests covering already an area of about 10% of the study area (2007). There, land-use allocation is mostly driven by economic considerations. Thus, local planning authorities need decision support for land-use planning issues, which integrate socio-economic and ecological aspects. Within the NabanFrame, an agro-economic, ecological and social model was applied, which, altogether, interacted with a land allocation model via defined interfaces. Effects on the water cycle, ecological conditions as well as socio-economic should be considered by integrating the spatially distributed rainfall-runoff and water balance model AKWA-M® in the model setup.

     

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  • Berkhoff, K., Herrmann, S., 2009. Modeling Land Use Change: A GIS Based Modeling Framework to Support Integrated Land Use Planning (NabanFrame). In: Association of Geographic Information Laboratories for Europe, ed., Advances in GIScience. Proceedings of the 12th AGILE Conference. Springer, Dordrecht. 309-328
    Golf, W., Luckner, K., 1991. AKWA-ein Modell zur Berechnung Aktueller Wasserhaushaltsbilanzen Kleiner Einzugsgebiete im Erzgebirge. Acta Hydrophysica, 32(1): 5-20 (in German)
    Guardiola-Claramonte, M., Troch, P. A., Ziegler, A. D., et al., 2008. Local Hydrologic Effects of Introducing Non-native Vegetation in a Tropical Catchment. Ecohydrology, 1(1): 13-22 doi: 10.1002/eco.3
    Münch, A., 2004. AKWA-M®-Teilflächen Basiertes Wasserhaushalts-und Hochwassermodell. Dr. Dittrich & Partner Hydro-Consult GmbH, Bannewitz (in German)
    Münch, A., Dittrich, I., Wahren, A., 2007. The Effects of Changes in Tree Species Composition and of Afforestation on Water Budget and Flood Dynamics Calculated with AKWA-M®, Ore Mountains. In: Feger, K. H., Wang, Y., Bernhofer, C., et al., eds., Progress in Hydro Science and Engineering. Dresden Water Center, Dresden. 3: 331-337
    NNNR, 2006. Naban River Watershed National Nature Reserve. In: Xishuangbanna Nabanhe National Natural Reserve, Yunnan Provincinal Environmental Protection Bureau, ed. . http://www.nbh.gov.cn/ReadNews.Asp?ID=84&BigClassID=3&SmallClassID=3
    Verburg, P. H., 2006. Conversion of Land Use and Its Effects (CLUE) Model. In: Geist, H., ed., Our Earth's Changing Land: An Encyclopedia of Land-Use and Land-Cover Change. Greenwood Press, Westport (Connecticut, USA). 1(A-K): 144-146
    Verburg, P. H., Soepboer, W., Veldkamp, A., et al., 2002. Modeling the Spatial Dynamics of Regional Land Use: The CLUE-S Model. Environmental Management, 30(3): 391-405 doi: 10.1007/s00267-002-2630-x
    Wahren, A., Schwärzel, K., Feger, K. H., et al., 2007. Identification and Model Based Assessment of the Potential Water Retention Caused by Land Use Changes. Adv. Geosci. , 11: 49-56 doi: 10.5194/adgeo-11-49-2007
    Wu, Z. L., Liu, H. M., Liu, L. Y., 2001. Rubber Cultivation and Sustainable Development in Xishuangbanna, China. International Journal of Sustainable Development and World Ecology, 8(4): 337-345 doi: 10.1080/13504500109470091
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