• 제목/요약/키워드: soil runoff

검색결과 810건 처리시간 0.024초

식생체류지의 원지반 침투율이 유출량 저감효과에 미치는 영향모의 (The Effects of Infiltration Rate of Foundation Ground Under the Bioretention on the Runoff Reduction Efficiency)

  • 전지홍;정광욱
    • 한국물환경학회지
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    • 제35권1호
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    • pp.72-77
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    • 2019
  • Soil type in LID infiltration practices plays a major role in runoff reduction efficacy. In this study, the effects of infiltration rate of foundation ground under bioretention on annual runoff reduction rate was evaluated using LIDMOD3 which is a simple excel based model for evaluating LID practices. A bioretention area of about 3.2 % was required to capture surface runoff from an impervious area for a 25.4 mm rainfall event. The relative error of runoff from bioretention using LIDMOD3 is 10 % less than that of SWMM5.1 for a total rainfall event of 257.1 mm during the period of Aug. 1 ~ 18, 2017, hence, the applicability of LIDMOD3 was confirmed. Annual runoff reduction rates for the period 2008 ~ 2017 were evaluated for various infiltration rates of foundation ground under the bioretention which ranged from 0.001 to 0.600 m/day and were converted to annual runoff reduction for hydrologic soil group. The runoff reduction rates within hydrologic soil group C and D were steeply increased through increased infiltration rate but not steep within hydrologic A and B with reduction rates ranging from 53 ~ 68 %. The estimated time required to completely empty a bioretention which has a storage depth of 0.632 m is 3.5 ~ 6.9 days and we could assume that the annual average of antecedent rainfall is longer than 3.5 ~ 6.9 days. Therefore, we recommended B type as the minimum hydrologic soil group installed LID infiltration practices for high runoff reduction rate.

Effects of Lignocellulosic Growing Media to The Prevention of Forest Soil Erosion

  • Jo, Jong-Soo;Ha, Si Young;Jung, Ji Young;Kim, Ji-Su;Nam, Jeong Bin;Yang, Jae-Kyung
    • Journal of the Korean Wood Science and Technology
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    • 제45권4호
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    • pp.419-431
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    • 2017
  • The forest slopes cause substantial local changes in soil properties and an increase in soil erosion after extreme rainstorms. The high soil erosion rates on forest slopes need the effective use of growing media to control the soil runoff. Therefore, we prepared six different lignocellulosic growing media such as peat, perlite, and wood meal as the base materials and carboxymethyl cellulose (CMC), glucomannan, starch, old corrugated containerboard, and computer printout as the additional materials for the prevention of simulated rainfall-induced runoff. The growing media containing old corrugated containerboard efficiently reduced the percentage of soil runoff; however, it could not completely cushion the influence of crust. The best results for plant growth, except in the leaf area, were also obtained with the growing media containing old corrugated containerboard, suggesting an interesting way of paper recycling and an economic benefit for plant or crop growth in forest slope.

흙 지붕 표층 두께에 따른 빗물의 유출 수질 평가 (Assessments of Rainwater Runoff Quality from Soil Roofs According to Layer Thickness)

  • 박종석;심춘석;문병석
    • 한국물환경학회지
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    • 제27권3호
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    • pp.300-305
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    • 2011
  • This study aimed at analyzing the runoff quality by the layer thickness and material of soil roof to make best use of the rainwater falling on it in terms of safety and efficiency and resulted in the following assessments. It turned out that the concentrations decreased more in T-N, $NO_3$-N, $NH_4$-N, T-P and $PO_4$-P in roof rainwater except 30 cm for the RW1 soil roof after passing through it than those of first rainwater. On the other hand, the concentrations in rainwater passing through gravel roof turned out to be equal or same to those of the first rainwater. As a result of analysis of metallic stuff in runoff, there was no indication of Cd, Cr, Mn and Pb as well. The concentration of Cu, Fe and Zn in rainwater through soil roof became less than that of the first rainwater. In this research, the soil roof showed the good efficiency in lowering the concentration of such components as nitrogen, phosphorus and metals. Based on the results from this work, more practical study would be required further in the future in relation to soil roof when installing the rainwater-utilizing facilities.

산지소유역에서 임지이용이 토사유출에 미치는 영향 (Effect of Forest Land Use on Soil Runoff in Small Watershed)

  • 마호섭;강원석;강은민
    • 한국산림과학회지
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    • 제101권2호
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    • pp.220-225
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    • 2012
  • 산지소유역에 있어서 밤나무림, 소나무림, 개벌조림지로 이용되고 있는 산림을 대상으로 임분별 유출토사량과 토사유출에 영향을 미치는 인자를 구명하기 위하여 분석한 결과를 요약하면 다음과 같다. 임분별 유출토사량 변화를 살펴보면 개벌조림지, 밤나무림, 소나무림 순으로 나타나 임분별 차이를 알 수 있었다. 임분별 유출토사량과 누적강우량간 선형회귀식의 설명력($R^2$)은 밤나무림 70%, 소나무림 60%, 개벌조림지 60%로서 비교적 높게 나타났다. 임분별 유출토사량과 환경인자간의 상관성을 분석한 결과 경사, 임상, 토양경도, 유역면적, 유로길이는 유의수준 1%, 누적강우량은 유의수준 5%에서 정의 상관관계가 나타났고, 피복율은 유의수준 1%에서 부의 상관관계를 나타내었다. 산지소유역에서 임지이용에 따른 유출토사량의 발생에 많은 영향을 미치는 인자는 피복율, 누적강우량 및 임상의 순으로 나타났으며, 다중회귀식은 Y = 31.250 - 1.140(피복율) + 0.413(누적강우량) + 20.829(임상)으로 추정되었다. 산림지역에 있어서 유출토사량의 증가는 하류의 하천 및 호소의 수질 등 계류생태계에 많은 영향을 미치므로 사방조림과 사방댐 및 골막이 등 적절한 사방구조물 도입을 통한 토사유실 방지 대책이 필요하다.

분포형 유역 일유출 모형의 개발 및 적용성 검토 (Development of a Grid-based Daily Watershed Runoff Model and the Evaluation of Its Applicability)

  • 홍우용;박근애;정인균;김성준
    • 대한토목학회논문집
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    • 제30권5B호
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    • pp.459-469
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    • 2010
  • 본 연구에서는 GIS 공간자료(수치표고모델, 토지이용도, 토양도)와 Terra MODIS(Moderate Resolution Imaging Spectroradiometer) 위성영상에 의한 식생활력도를 이용하여 유역의 일단위 유출량을 모의하는 격자기반의 분포형 일유출 모형을 개발하고 그 적용성을 평가하였다. 모형은 격자단위로 지표유출, 중간유출 및 기저유출, 증발산량 그리고 토양수분의 시간적 변화와 공간적 분포를 모의할 수 있다. 모형은 크게 유출, 증발산, 토양수분의 3개 주요모듈로 구성하였다. 유출은 강우전의 토양수분을 추적하여 지표하 저류능을 계산하므로서, 총 유출체적에서 각 유출량을 배분하는 감수곡선을 도입하여 모의하도록 하였으며, 증발산은 MODIS 엽면적지수(Leaf Area Index; LAI)를 고려한 Penman-Monteith 증발산량을 산정하도록 하였다. 매일의 토양수분은 전일의 토양수분에서 당일의 유출량과 증발산량을 계산하는 물수지 방정식을 이용하여 추적하도록 하였다. 이 모형에 대한 적용성 평가는 유역면적 930 $km^2$의 용담댐 유역을 대상으로 수행하였다. 공간해상도를 1 km로 맞춘 GIS 입력자료(토지피복도, 토양도, 경계자료 등)와 RS 입력자료(LAI)를 구축하였으며, 2000년부터 2008년까지의 기상자료를 수집하여 IDW 방법으로 공간분포화 하여 모형에 적용하였다. 검보정은 유역 출구 지점의 유출량 자료를 모의치와 비교하여 수행되었고, 보정결과에 따른 모형의 적합성과 상관성을 판단하기 위한 목적함수로는 결정계수($R^2$)와 평균제곱근오차 (RMSE : Root Mean Square Error)를 사용하였으며, 모형의 효율성 검증을 위해 Nash와 Sutcliffe(1970)가 제안한 모형 효율성 계수를 사용하였다. 유출량에 대한 Nash-Sutcliffe 모형효율은 0.78~0.93로 모의치가 실측치의 경향을 잘 표현하는 것으로 나타났다. 유출량 분포도는 강우와 토양에 매우 민감하게 모의 되었다.

실내인공강우기를 이용한 경사지 밭의 토양유실량과 오염부하 모의 (Simulation of generable muddy water quantity and pollutant loads in sloping field using artificial rainfall simulator)

  • 신민환;최용훈;서지연;이재운;최중대
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2009년도 학술발표회 초록집
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    • pp.986-990
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    • 2009
  • Using artificial rainfall simulator, the soil loss, which is deemed as most cause of muddy water problem among Non-point source(NPS) pollutant, was studied by the analysis of direct runoff flow, groundwater runoff, and groundwater storage properties concerned with rainfall intensity, slope of area, and land cover. The direct runoff showed increasing tendency in both straw covered and bared boxes which are 5%, 10%, and 20% sloped respectively. Also the direct runoff volume from straw covered surface boxes were much lower than bared surface boxes. It's deemed as that the infiltration capacity of straw covered surface boxes were increased, because the surface sealing by fine material of soil surface didn't occurred due to the straw covering. Under the same rainfall intensity and slope condition, 2.4 ${\sim}$ 8.2 times of sediment yield were occurred from bared surface boxes more than straw covered surface boxes. The volume of infiltrated were increased due to straw cover, the direct runoff flow were decreased with decreasing of tractive force in surface. To understand of relationship the rate of direct runoff flow, groundwater runoff, and groundwater storage by the rainfall intensity, slope, and land cover, the statistical test was performed. It shows good relationship between most of factors, expect between the rate of groundwater storage and rainfall intensity.

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농경지 토양유실 및 수질오염물질 유출에 대한 침사구 조성 효과 (The Performances of Sediment Trap for Reducing Water Pollutants and Soil Loss from Rainfall Runoff in Cropland)

  • 박세인;박현진;김한용
    • 한국환경농학회지
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    • 제38권4호
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    • pp.307-313
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    • 2019
  • BACKGROUND: An intensive farming system may be of the most important source for agricultural non-point source (NPS) pollution, which is a major concern for agricultural water management in South Korea. Various management practices have therefore been applied to reduce NPS loads from upland fields. This study presents performances of sediment trap for reducing NPS and soil loss from rainfall runoff in cropland. METHODS AND RESULTS: In 2018 and 2019, three sediment traps (L1.5 m × W1.0 m × D0.5 m = 0.75 ㎥) and their controls were established in the end of sloped (ca. 3%) upland field planted with maize crops. Over the seasons, runoff water was monitored, collected, and analyzed at every runoff. Soils deposited in sediment traps were collected and weighed at the season end. Sediment traps reduced runoff amount (p<0.05) and NPS concentrations, though the decreased NPS concentrations were not always statistically significant. In addition, sediment traps had a significant prevention effect on soil loss from rainfall runoff in a sloped cropland. CONCLUSION: The results suggest that the sediment trap could be a powerful and the best management practice to reduce NPS pollution and soil loss in a sloped upland field.

볏짚거적과 토양개량제를 활용한 경사지 밭의 비점오염원 저감평가 (Evaluations of NPS Reduction using the Rice Straw Mats and Soil Amendments from Steep Sloped Field)

  • 원철희;신민환;최용훈;신재영;박운지;이수인;최중대
    • 한국농공학회논문집
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    • 제55권2호
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    • pp.29-36
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    • 2013
  • The objective of the research was to describe the effect of straw mat cover and soil amendments on the reduction of runoff and non-point source load from steep sloped highland agricultural fields. Four $5{\times}30$ m plots on sandy loam soil with 28 % slope were prepared. Experimental treatments were bare (control), rice straw mat cover (3,000 kg/ha) (S), PAM (5 kg/ha)+Gypsum (1 ton/ha) (PG) and rice straw mat cover+PAM+Gypsum (SPG). A variety of lettuce was cultivated and runoff was monitored during a growing season in 2011. Natural monitoring was conducted to three times. Runoff rate of S, PG and SPG plots were significantly lower than those of control plot. Especially, the runoff rate is zero in SPG plot at a first rainfall events. The reduction rate of runoff from the S, PG and SPG plots was 30.8 %, 29.0 % and 81.8 % compared to control plots, respectively. The reduction rate of NPS pollution load of S, PG and SPG was ranged of 50~90 %, 30~70 % and 90~100 %, respectively. Yield of lettuce from S, PG and SPG plots was respectively 400 (567 kg/ha), 320 (453 kg/ha) and 760 (1,067 kg/ha) that of compared to control plots greater than that from control plots (140 kg/ha). We speculated that the experimental treated plots could hold more nutrients and moisture than the control and helped the crop grow healthier. When analyzing the above results, in terms of reduction of runoff and NPS pollution load and crop yields, SPG experimental treatment had the best effect. It was concluded that the use of rice straw mats cover and soil amendments on soil surface could not only reduce the NPS pollution loads in receiving waters but also help increase the crop yield.

SCS방법 및 회귀분석에 의한 유출 강우량 결정 (Determination of Effective Rainfall by US SCS Method and Regression Analysis)

  • 선우중호;윤용남
    • 물과 미래
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    • 제10권2호
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    • pp.101-111
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    • 1977
  • The analysis performed here is aimed to increase the familiarity of hydrologic process especially for the small basins which are densely gaged. Kyung An and Mu Shim river basins are selected as a represectative basin according to the criteria which UNESCO has establisheed back in 1964 and being operated under the auspice of Ministry of Construction. The data exerted from these basins is utilized for the determination of the characteristics of precipitation and runoff phenomena for the small basin, which is considerred as a typical Korean samll watershed. The methodology developed by Soil Conservation Service, USA for determination of runoff value from precipitation is applied to find the suitability of the method to Korean River Basin. The soil cover complex number or runoff curve number was determined by considering the type of soil, soil cover, land use and other factor such as antecent moisture content. The averag values of CN for Kyung An and Mushim river basins were found to be 63.9 and 63.1 under AMC II, however, the values obtained from soil cover complex was less than those from total precipitation and effective precicpitation by 10-30%. It may be worth to note that an attention has to be paid in the application of SCS method lo Korean river basin by adjusting 10-30% increase to the value obtained from soil cover complex. Finally, the design flood hydrograph was consturcted by employing unit hydrograph technique to the dimensionless mass curve. Also a stepwise multiple regression was performed to find the relationship between runoff and API, evapotranspiration rate, 5 days antecedent precipitation and daily temperature.

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고랭지 밭의 비점오염부하 저감을 위한 지표피복재와 토양개량제의 효과 (Effects of Surface Cover and Soil Amendments on the NPS load Reduction from Alpine Fields)

  • 원철희;신민환;이수인;금동혁;임경재;최중대
    • 한국농공학회논문집
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    • 제56권3호
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    • pp.47-53
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    • 2014
  • We investigated the effect of straw mat cover and soil amendments on the reduction of runoff, non-point source pollution load and yield of a Chinese cabbage from alpine fields. Two plots on sandy loam soil were prepared. Experimental treatments were control and rice straw mat cover (3,300 kg/ha)+Polyacrylamide (PAM) (5 kg/ha)+Gypsum (1 ton/ha) (SPG). A variety of Chinese cabbage was cultivated and runoff was monitored during a growing season in 2012. Monitoring was conducted to seven times. Runoff rate of SPG plot was lower than those of control plot. The reduction rate of runoff from SPG plot was 29.4 % compared to control plot. The reduction rate of suspended solids (SS), total nitrogen (TN) and total phosphorus (TP) load of SPG plot was 86.5 %, 34.7 % and 39.1 %, respectively. Yield of a Chinese cabbage from SPG plot (39,646 kg/ha) was greater than that of control plots (28,482 kg/ha). It was concluded that the use of SPG on soil surface could not only reduce the NPS pollution loads in receiving waters but also help increase the crop yield.