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dc.contributor.authorHarjadi, Beny
dc.date.accessioned2012-04-27T09:20:16Z
dc.date.available2012-04-27T09:20:16Z
dc.date.issued2010
dc.identifier.citationAronoff,S. (1989) Geographical Information System. A Management Perspective. Ottawa Canada: WDL Publication. Asdak, C. 1995. Hidrologi dan Pengelolaan Daerah Aliran Sungai. Yogyakarta: Gadjah Mada University Press. Berrios, P.H. (2004) Spatial Analysis of The Differences Between Forest Land Use and Forest Cover Using GIS and RS. A case study in Telake Watershed, Pasir district, East Kalimantan. MSc Thesis. The Netherlands: ITC. BPDASSOLO dan PUSPICS (2002) Pemantauan dan Evaluasi Pengelolaan Daerah Aliran Sungai Solo (Laporan Akhir). Harjadi, B. (2009a) Terrain Characterization and Soil Erosion Risk Asessment for Watershed Prioritization Using Remote Sensing and GIS. A Case Study of Nawagaon Maskara Rao Watershed, saharanpur, India. Forum Geografi. vol. 23, no. 1, Juli, pp. 86-98. Harjadi, B. (2009b) Monitoring dan Evaluasi Daerah Aliran Sungai dengan Penginderaan Jauh dan Sistem Informasi Geografis. Forum Geografi. vol. 23, no. 2, Desember, pp. 139-152. Peraturan Presiden(PerPres) No.7 tahun 2005 tentang Rencana Pembangunan Jangka Menengah Nasional Tahun 2004-2009 tanggal 19 Januari 2005 Tim Peneliti BP2TPDAS-IBB (2004) Pedoman monitoring dan Evaluasi Pengelolaan Daerah Aliran Sungai (edisi revisi). Proyek Penelitian dan Pengembangan Teknologi Pengelolaan Daerah Aliran Sungai Kawasan Barat Indonesiaen_US
dc.identifier.issn0852-2682
dc.identifier.urihttp://hdl.handle.net/11617/1171
dc.description.abstractCatchments area can be analyzed as management system. Catchments area acquire input and it processed by the system to produce output. Land covers in catchments area are closely related to land use pattern and to management system. Land use changes to building area, agriculture and another activity are related to anthropological characters effected by change in fungtion from vegetated land to unvegetated land. This condition have negative influences to the condition of carchment area. The damaged level of catchment area can be reflected by flood susceptibility, droughness, erosion and sedimentation, related impact onsite and offsite, so it is need a comprehensive management system from up land to low land river. To give information of land use in catchments area it needs accurate data about land cover in wide range. Remote sensing and Geographic Information System (GIS) are applicable to monitor land coverage of management catchments area. The aim of this paper is to analyse land cover using remote sensing and GIS to catchments area monitoring and evaluation. Land use in watershed connection with the pattern of nature resources by the community and the management of watershed. Total area of landuse Grindulu watershed was 65.539 ha. From the map of land use could be seen that the spreading of the equitable meeting forest from the upstream to lower, and most property of the people. Landuse became 8 classes, that is: Agroforestry (20%), Open Land (12%), Rare Forest (1%), Dense Forest (29%), Village (34%), Paddy (0.4%), River (0.2%), and Field (3%)en_US
dc.publisherlppmumsen_US
dc.subjectLand Coverageen_US
dc.subjectRemote Sensingen_US
dc.subjectGISen_US
dc.subjectGrindulu Catchments Areaen_US
dc.titleMonitoring Penutupan Lahan di DAS Grindulu dengan Metode Penginderaan Jauh dan Sistem Informasi Geografisen_US
dc.title.alternativeLand Cover Analysis in Grindulu Catchmnts Area Using Remote Sensing and Geographic Information Systemen_US
dc.typeArticleen_US


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