Browse > Article

Characteristics of Surface Flow on the Forest Fire Sites by Using Rainfall Simulator  

Lee, Heon Ho (Dept. of Forest Resources, College of Natural Resources Yeungnam University)
Joo, Jae duk (Dept. of Forest Resources, College of Natural Resources Yeungnam University)
Publication Information
Journal of Korean Society of Forest Science / v.95, no.3, 2006 , pp. 350-357 More about this Journal
Abstract
For the purpose of this study, the characteristics of surface flow through the survey of rainfall intensity and degree of slope on fire sites by using rainfall simulator was examined and analysed. And also the relationship between the amount of surface flow and rainfall intensity, degree of slope and elapsed year after forest fire occurrence influencing on the surface flow were analysed. The results obtained were as follows: 1. The amount of surface flow by year of occurrence of forest fire was increased 2,2 to 3,2 times as rainfall intensity was increased by 30 mm/hr, and 1.5 to 1.9 times as degree of slope was increased by $10^{\circ}$, 2, Even though ground vegetation in forest fire sites was recovered more than 80%, the amount of surface flow in initial rainfall was relatively much and it seemed that vegetation didn't play substantial roles in reducing runoff. 3, The amount of surface flow by rainfall intensity and degree of slope in accordance with elapsed years after forest fire was reduced 22,3% to 41,8% in three years after fire as compared to the first year of fire occurrence. The amount of surface flow were significantly differentiated by rainfall intensity and degree of slope in the first year of fire occurrence and the difference were gradually reduced afterwards. 4. In the analysis on influences of each factors on the amount of surface flow on forest fire sites, the amount of surface flow was significant differences in major impacts of each rainfall intensity, degree of slope and elapsed year after fire and interaction of rainfall intensity ${\times}$ degree of slope and rainfall intensity ${\times}$ elapsed year after fire, but no differences were observed in interaction of degree of slope ${\times}$ elapsed year after tire and rainfall intensity ${\times}$ degree of slope ${\times}$ elapsed year after tire. Rainfall intensity was the most affecting factor on the amount of surface flow and followed by degree of slope and elapsed year after fire.
Keywords
forest fire sites; surface flow; rainfall simulator;
Citations & Related Records
Times Cited By KSCI : 2  (Citation Analysis)
연도 인용수 순위
1 岩崎勇作, 材井 宏.石井正典. 1982. ライシメタによる 地被別の水土流出試験(II)-林木牧草およぴ裸地區の流出量と土壌水分の比較. 日林構集 93: 431-434
2 種田行男. 1960. 人工降雨装置による降雨強度ならびに傾斜と土壌浸蝕との関係. 土壤改良10(8): 854-861
3 Izzard, C.F. and M.T. Augustine. 1943. Preliminary report on analysis of runoff resulting from simulated rainfall on a paved plot. Trans. Am. Geo. Union, Part II. 24: 500-509   DOI
4 대구직할시. 1994. 팔공산 자연공원 생태계 조사 보고서: 37-73
5 정원옥. 1997. 산불이 토양침식 및 계류수질과 식생변화에 미치는 영향. 경상대학교 대학원 석사학위논문. 43pp
6 Baver, L.D. 1933. Some soil factors affecting erosion. Agric. Eng. 14(2): 51-52
7 中野秀章. 1971. 森林伐採および伐採地の植生變化が流出に及ぼす影響. 林試硏報 240: 1-251
8 Bissonnais, Y.L. and J .S. Michael. 1992. Crust runoff and erosion to soil eater content and successive rainfalls. Soil Sci. Soc. Am. J. 56: 1898-1903   DOI   ScienceOn
9 이헌호. 1996. 산불이 임지의 수저류 특성에 미치는 영향, 한국임학회지 85(1): 66-75
10 Young, R.A. and C.K. Mutchler. 1969. Effect of slope shape on erosion and runoff. Trans. Am. Soc. Agric. Eng. 12(2): 231-233   DOI
11 곽경만. 1999. 강우가 지표 유출에 미치는 영향. 지리교육논집 42: 14-23
12 Neal, J. H. 1938. The effect of the degree of slope and rainfall characteristics on runoff and soil erosion. Agric. Eng. 19: 1-5
13 조병진, 윤충섭. 1983. 강우에 의한 토양침식량 예측에 관하여. 경상대학교 논문집(이공계열) 22: 133-138
14 Cooke, R.U. and J. C. Doornkamp. 1990. Geomorphology in Environmental Management. Clarendon Press: 96-98
15 Farmer, E.E. and B.P. Van Haveren. 1971. Soil erosion by overland flow and raindrop splash on three mountain soils. USDA Forest Serv. Res. Pap. INT-100. pp. 14
16 우보명. 1976. 토양침식에 작용하는 몇가지 요인의 영향에 관한 연구. 한국임학회지 29: 54-101