Calculation of average skidding distance on sloping terrain with GIS tools

Cilt: 12 Sayı: 2 17 Kasım 2011
  • Oğuz Çoban
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Calculation of average skidding distance on sloping terrain with GIS tools

Öz

To determine skidding productivity and costs for skidding operation, it is necessary to estimate real skidding route and to calculate average skidding distance. This study was intended to expose how the real average skidding distance was to be calculated and which operation process was to be followed up for harvesting units/blocks having irregular shapes as three dimensions. Compartments, harvesting stands, were divided into sub-compartment polygons called harvesting blocks with respect to transport borders determined according to road location, stream flow, and topographic structure of mountainous terrain. To calculate average skidding distance based on surface length between the most suitable existing road segments and centroids of the polygons, a selective process was followed. In this study, vector and raster Geographic Information System (GIS) tools were used. To compare with other approaches and evaluate of the calculus algorithm, various skidding distance determination strategy were improved and applied on the same test area. In this study, spatial analyses have been made for 17 compartments selected from Pamucak Forest Planning Unit of Isparta Forest Region, in Southern of Turkey. According to the results the mean difference between real average skidding distance (ASDR) and shortest average skidding distance (ASDS) was found amount 24 meters for the test area. It has been considered that the ASDR amount calculated in this study is too close to real skidding distance used for harvesting operations. Keywords: Average skidding distance, Transport boundary, GIS, ArcHydro tool

Anahtar Kelimeler

Kaynakça

  1. Balcı, İ., Çoban, H. O., Eker, M., 2000. Geographic Information System. Süleyman Demirel University, Faculty of Forestry Journal, A (1), 115-132.
  2. Bayoğlu, S., 1972. A study on forest transportation and development possibilities. Istanbul University, Faculty of Forestry, 1747/185, 73p.
  3. Contreras, M. and Chung, W., 2007. Computer approach to finding an optimal log landing location and analyzing influencing factors for ground-based timber harvesting. Canadian Journal of Forest Research, 37(2), 276-292.
  4. Clark, M.M., 1998. The forest harvesting problem: integrating operational and tactical planning. Auburn University, Industrial and System Engineering (PhD dissertation), USA, 296 p.
  5. CRWR, 2011. ArcHydro: GIS for water resources, center for research in water resources. University of Texas at Austin, http://www.crwr.utexas.edu/giswr/hydro/, (Last visit:16 April 2011), USA.
  6. Çoban, H.O., 2004. Production of thematic forest maps supported by computer system. Süleyman Demirel University, Faculty of Forestry Journal, A (2), 83-96.
  7. Donnelly D.M., 1978. Computing average skidding distance for logging areas with irregular boundaries and variable log density. GTR-RM-58, Rocky Mountain Forest and Range Experiment Station Forest Service, USDA, 10 p.
  8. Eker, M., 2004. Development of annual operational planning model for timber harvesting. Karadeniz Technical University (PhD dissertation), Trabzon, 239 p.

Ayrıntılar

Birincil Dil

İngilizce

Konular

-

Bölüm

-

Yazarlar

Oğuz Çoban Bu kişi benim

Yayımlanma Tarihi

17 Kasım 2011

Gönderilme Tarihi

9 Ağustos 2011

Kabul Tarihi

-

Yayımlandığı Sayı

Yıl 2011 Cilt: 12 Sayı: 2

Kaynak Göster

APA
Çoban, O. (2011). Calculation of average skidding distance on sloping terrain with GIS tools. Turkish Journal of Forestry, 12(2), 98-103. https://doi.org/10.18182/tjf.58966
AMA
1.Çoban O. Calculation of average skidding distance on sloping terrain with GIS tools. Turkish Journal of Forestry. 2011;12(2):98-103. doi:10.18182/tjf.58966
Chicago
Çoban, Oğuz. 2011. “Calculation of average skidding distance on sloping terrain with GIS tools”. Turkish Journal of Forestry 12 (2): 98-103. https://doi.org/10.18182/tjf.58966.
EndNote
Çoban O (01 Kasım 2011) Calculation of average skidding distance on sloping terrain with GIS tools. Turkish Journal of Forestry 12 2 98–103.
IEEE
[1]O. Çoban, “Calculation of average skidding distance on sloping terrain with GIS tools”, Turkish Journal of Forestry, c. 12, sy 2, ss. 98–103, Kas. 2011, doi: 10.18182/tjf.58966.
ISNAD
Çoban, Oğuz. “Calculation of average skidding distance on sloping terrain with GIS tools”. Turkish Journal of Forestry 12/2 (01 Kasım 2011): 98-103. https://doi.org/10.18182/tjf.58966.
JAMA
1.Çoban O. Calculation of average skidding distance on sloping terrain with GIS tools. Turkish Journal of Forestry. 2011;12:98–103.
MLA
Çoban, Oğuz. “Calculation of average skidding distance on sloping terrain with GIS tools”. Turkish Journal of Forestry, c. 12, sy 2, Kasım 2011, ss. 98-103, doi:10.18182/tjf.58966.
Vancouver
1.Oğuz Çoban. Calculation of average skidding distance on sloping terrain with GIS tools. Turkish Journal of Forestry. 01 Kasım 2011;12(2):98-103. doi:10.18182/tjf.58966