Araştırma Makalesi
BibTex RIS Kaynak Göster

Investigation on slope and canopy closure effects to minimize sediment movement in riparian buffer zone

Yıl 2018, Cilt: 68 Sayı: 1, 70 - 77, 01.01.2018

Öz

In this study, factors
affecting the width of buffer zone used to minimize the sediment movement in
the productive forests, have been evaluated. For this purpose, sediment traps
were constructed in Istanbul University Education Research and Practice Forest.  Sediment data was obtained from sample plots
established depending on the different canopy closure, slope length, slope
area, rainfall and slope. In this context, a statistical model was developed to
estimate the sediment yield depending on slope and canopy closure. The accuracy
of the model was tested with various statistical analyses.  According to the results, sediment value can
be highly estimate depending on slope classes.
According to results, in the developed regression
models to estimate effects of slope percentage on sediment values, the smallest
R2 value was found as 0.79 on 20 % slope area and the highest R2
value was found as 0.97 on 80 % and 100 % slope area. Also, as the slope
increases, the accuracy of the regression model of sediment yield increases.
And it is concluded that there is a very close relationship between 80 % and
100 % slope. In the developed regression models to estimate effects of canopy
closure effects on sediment values, it is seen that the lowest R2
value was calculated on canopy closure 71-100 %, and the highest R2
values were calculated on canopy closure 41-70 % and cutting areas. Sediment
yield increases with the decrease of the canopy closure and the accuracy of the
model increases.


Kaynakça

  • Akgul, M., 2012, Üretim ormanlarında tampon zon kriterlerinin belirlenmesi, İÜ Fen Bilimleri Enstitüsü, Doktora Tezi.
  • Bentrup, G., 2008, Conservation buffers: design guidelines for buffers, corridors and greenways, Gen. Tech. Rep. SSRS-109. Asheville, NC: Department of Agriculture, Forest Service, Southern Research Station. 110 p.
  • Dillaha, T.A., Sherrard, J.H., Lee, D., Mostaghimi, S., Shanhotz, V.O., 1988, Evaluation of vegetative filter strips as a best management practice for feed lots, Journal of the water pollution control federation 60(7):1231-1238.
  • Dillaha, T. A., Reneau, R.B., Mostaghimi, S., Lee, D., 1989, Vegetative filter strips for agricultural nonpoint source pollution control, Transactions of the Asae 32(2):513-519.
  • Gregory, S. V., F. J. Swanson, A. McKee and K. W. Cummins. 1991. An Ecosystem Perspective of Riparian Zones: Focus on links between land and water. Bioscience 41(8): 540-551.
  • Krumine, M. 2004. Riparian buffers de-mystified! Tributary Times, 3(5). Delaware Department of Natural Resources and Environmental Control, Division of Water Resources.
  • Lowrance, R., G. Vellidis, R. D. Wauchope, P. Gay and D. D. Bosch. 1997. Herbicide transport in a managed riparian forest buffer system. Transactions of the ASAE 40 (4): 1047-1057. Malanson, G. P. 1993. Riparian Landscapes. Cambridge, UK: Cambridge University Press.
  • Mayer, P., Reynolds, S., Canfield, T., 2005, Riparian buffer width, vegetative cover and nitrogen removal effectiveness: A review of current science and regulations, United States environmental protection agency.
  • Naiman, R. J., H. Decamps and M. Pollock. 1993. The role of riparian corridors in maintaining regional biodiversity. Ecological Applications 3(2): 209-212.
  • Odum, E. P. 1978. Ecological importance of the riparian zone. Pp 2-4 in: Johnson and McCormick (tech. coords.), Strategies for Protection and Management of Floodplain Wetlands and Other Riparian Ecosystems. U.S. Dept. of Agriculture Forest Service Gen. Tech. Report WO-12.
  • Rudek, J., M. E. Taylor, D. S. Wilcove, J. B. Preyer, M. A. Duval, R. Bonnie and X. Riva. 1998. Soiled Streams: Cleaning Up Sediment Pollution in North Carolina. Environmental Defense Fund. Raleigh, NC. 73pp.
  • Schueler, T., 1995, The Architecture of urban stream buffers. Watershed protection techniques 1(4).
  • Trimble, G. R. and R. S. Sartz. 1957. How far from a stream should a logging road be located? Journal of Forestry 55: 339-341.
  • Welsch, D. J. 1991. Riparian Forest Buffers: Function and Design for Protection and Enhancement of Water Resources. Radnor, PA: USDA Forest Service
  • Wenger, S., 1999, A Review of the scientific literature on riparian buffer width, extent and vegetation, Institute of ecology, University of Georgia, Athens, Georgia, 30602-2202.
  • Wenger, S., Fowler, L., 2000, Protecting stream and river corridors, Carl Vinson institute of government, The University of Georgia, United States of America.
  • Wood, P.J., Armitage, P. D., 1997, Biological effects of fine sediment in the lotic environment, Environmental Management 21(2):203-217.

Tampon zonlarda sediment üretimini en aza indirmek için eğim ve meşcere kapalılığının etkisi üzerine bir araştırma

Yıl 2018, Cilt: 68 Sayı: 1, 70 - 77, 01.01.2018

Öz

Bu çalışmada,
üretim ormanlarındaki sediment hareketini en aza indirgemek için kullanılan
tampon zon alanlarının genişliğini etkileyen faktörler değerlendirilmiştir. Bu
amaçla, İstanbul Üniversitesi Eğitim Araştırma ve Uygulama Ormanı
nda sediment kapanları tesis edilmiştir. Farklı meşcere
kapalılığı, yamaç uzunluğu, yamaç alanı, yağış ve eğime bağlı olarak tesis
edilen deneme alanlarından sediment verisi alınmıştır. Bu kapsamda, sediment
verimini hesaplamak amacıyla istatiksel bir model ortaya konmuştur. Modelin doğruluğu
çeşitli istatistiksel analizlerle sınanmıştır. Sonuçlara göre, eğim sınıflarına
bağlı olarak sediment değeri yüksek oranda tahmin edilebilmektedir. Elde edilen
sonuçlara göre, eğim yüzdesine bağlı olarak olarak sediment tahmini için geliştirilen
regresyon modeli sonuçlarında en düşük R2 değeri %20 eğim sınıfında 0.79, en yüksek
R2 değeri %80 ve %100 eğim sınıflarında 0,97 olarak bulunmuştur. Ayrıca eğim
arttıkça regresyon modelinin doğruluğu arttığı görülmüş ve %80 ile %100 eğim sınıfları
arasında çok yakın bir ilişki bulunmuştur. Ayrıca meşcere kapalılığının
sediment üretimi üzerindeki etkisini araştırmak için üretilen regresyon
modelinde en düşük R2 değeri %71-100 meşcere kapalılığında, en yüksek R2 değerleri
ise %41-70 kapalılıkta ve traşlama kesimlerinin yapıldığı alanlarda hesaplanmıştır.
Meşcere kapalılığının azalmasıyla birlikte sediment üretimi ve modelin doğruluğu
artmaktadır.

Kaynakça

  • Akgul, M., 2012, Üretim ormanlarında tampon zon kriterlerinin belirlenmesi, İÜ Fen Bilimleri Enstitüsü, Doktora Tezi.
  • Bentrup, G., 2008, Conservation buffers: design guidelines for buffers, corridors and greenways, Gen. Tech. Rep. SSRS-109. Asheville, NC: Department of Agriculture, Forest Service, Southern Research Station. 110 p.
  • Dillaha, T.A., Sherrard, J.H., Lee, D., Mostaghimi, S., Shanhotz, V.O., 1988, Evaluation of vegetative filter strips as a best management practice for feed lots, Journal of the water pollution control federation 60(7):1231-1238.
  • Dillaha, T. A., Reneau, R.B., Mostaghimi, S., Lee, D., 1989, Vegetative filter strips for agricultural nonpoint source pollution control, Transactions of the Asae 32(2):513-519.
  • Gregory, S. V., F. J. Swanson, A. McKee and K. W. Cummins. 1991. An Ecosystem Perspective of Riparian Zones: Focus on links between land and water. Bioscience 41(8): 540-551.
  • Krumine, M. 2004. Riparian buffers de-mystified! Tributary Times, 3(5). Delaware Department of Natural Resources and Environmental Control, Division of Water Resources.
  • Lowrance, R., G. Vellidis, R. D. Wauchope, P. Gay and D. D. Bosch. 1997. Herbicide transport in a managed riparian forest buffer system. Transactions of the ASAE 40 (4): 1047-1057. Malanson, G. P. 1993. Riparian Landscapes. Cambridge, UK: Cambridge University Press.
  • Mayer, P., Reynolds, S., Canfield, T., 2005, Riparian buffer width, vegetative cover and nitrogen removal effectiveness: A review of current science and regulations, United States environmental protection agency.
  • Naiman, R. J., H. Decamps and M. Pollock. 1993. The role of riparian corridors in maintaining regional biodiversity. Ecological Applications 3(2): 209-212.
  • Odum, E. P. 1978. Ecological importance of the riparian zone. Pp 2-4 in: Johnson and McCormick (tech. coords.), Strategies for Protection and Management of Floodplain Wetlands and Other Riparian Ecosystems. U.S. Dept. of Agriculture Forest Service Gen. Tech. Report WO-12.
  • Rudek, J., M. E. Taylor, D. S. Wilcove, J. B. Preyer, M. A. Duval, R. Bonnie and X. Riva. 1998. Soiled Streams: Cleaning Up Sediment Pollution in North Carolina. Environmental Defense Fund. Raleigh, NC. 73pp.
  • Schueler, T., 1995, The Architecture of urban stream buffers. Watershed protection techniques 1(4).
  • Trimble, G. R. and R. S. Sartz. 1957. How far from a stream should a logging road be located? Journal of Forestry 55: 339-341.
  • Welsch, D. J. 1991. Riparian Forest Buffers: Function and Design for Protection and Enhancement of Water Resources. Radnor, PA: USDA Forest Service
  • Wenger, S., 1999, A Review of the scientific literature on riparian buffer width, extent and vegetation, Institute of ecology, University of Georgia, Athens, Georgia, 30602-2202.
  • Wenger, S., Fowler, L., 2000, Protecting stream and river corridors, Carl Vinson institute of government, The University of Georgia, United States of America.
  • Wood, P.J., Armitage, P. D., 1997, Biological effects of fine sediment in the lotic environment, Environmental Management 21(2):203-217.
Toplam 17 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Bölüm Araştırma Makalesi (Research Article)
Yazarlar

Mustafa Akgül

Mesut Hasdemir

Yayımlanma Tarihi 1 Ocak 2018
Yayımlandığı Sayı Yıl 2018 Cilt: 68 Sayı: 1

Kaynak Göster

APA Akgül, M., & Hasdemir, M. (2018). Investigation on slope and canopy closure effects to minimize sediment movement in riparian buffer zone. Journal of the Faculty of Forestry Istanbul University, 68(1), 70-77.
AMA Akgül M, Hasdemir M. Investigation on slope and canopy closure effects to minimize sediment movement in riparian buffer zone. J FAC FOR ISTANBUL U. Ocak 2018;68(1):70-77.
Chicago Akgül, Mustafa, ve Mesut Hasdemir. “Investigation on Slope and Canopy Closure Effects to Minimize Sediment Movement in Riparian Buffer Zone”. Journal of the Faculty of Forestry Istanbul University 68, sy. 1 (Ocak 2018): 70-77.
EndNote Akgül M, Hasdemir M (01 Ocak 2018) Investigation on slope and canopy closure effects to minimize sediment movement in riparian buffer zone. Journal of the Faculty of Forestry Istanbul University 68 1 70–77.
IEEE M. Akgül ve M. Hasdemir, “Investigation on slope and canopy closure effects to minimize sediment movement in riparian buffer zone”, J FAC FOR ISTANBUL U, c. 68, sy. 1, ss. 70–77, 2018.
ISNAD Akgül, Mustafa - Hasdemir, Mesut. “Investigation on Slope and Canopy Closure Effects to Minimize Sediment Movement in Riparian Buffer Zone”. Journal of the Faculty of Forestry Istanbul University 68/1 (Ocak 2018), 70-77.
JAMA Akgül M, Hasdemir M. Investigation on slope and canopy closure effects to minimize sediment movement in riparian buffer zone. J FAC FOR ISTANBUL U. 2018;68:70–77.
MLA Akgül, Mustafa ve Mesut Hasdemir. “Investigation on Slope and Canopy Closure Effects to Minimize Sediment Movement in Riparian Buffer Zone”. Journal of the Faculty of Forestry Istanbul University, c. 68, sy. 1, 2018, ss. 70-77.
Vancouver Akgül M, Hasdemir M. Investigation on slope and canopy closure effects to minimize sediment movement in riparian buffer zone. J FAC FOR ISTANBUL U. 2018;68(1):70-7.