• 제목/요약/키워드: Soil erosion mass

검색결과 28건 처리시간 0.018초

한국형 토양유실공식에 의한 토양유실량 현장예측 (Application of KORSLE to Estimate Soil Erosion at Field Scale)

  • 송재민;양재의;임경재;박윤식
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제24권5호
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    • pp.31-41
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    • 2019
  • In 2013, the Ministry of Environment in South Korea promulgated a new regulatory bulletin that contained revised enforcement ordinance on soil management protocols. The bulletin recommends the use of Universal Soil Loss Equation (USLE) for the soil erosion estimation, but USLE has limited applicability in prediction of soil erosion because it does not allow direct estimation of actual mass of soil erosion. Therefore, there is a great need of revising the protocol to allow direct comparison between the measured and estimated values of soil erosion. The Korean Soil Loss Equation (KORSLE) was developed recently and used to estimate soil loss in two fields as an alternative to existing USLE model. KORSLE was applied to estimate monthly rainfall erosivity indices as well as temporal variation in potential soil loss. The estimated potential soil loss by KORSLE was adjusted with correction factor for direct comparison with measured soil erosion. The result was reasonable since Nash-Stucliff efficiency were 0.8020 in calibration and 0.5089 in validation. The results suggest that KORSLE is an appropriate model as an alternative to USLE to predict soil erosion at field scale.

강우 및 태양광 씨뮤레이터를 이용한 침식방지 브랑켓들의 침식방지 효과와 식물성장의 촉진효과 확인을 위한 실험 (Tests of Different Erosion Control Blankets for Erosion Control and Plant Growth Enhancement under Simulated Rain and Sunlight)

  • 장창학
    • 한국환경복원기술학회지
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    • 제1권1호
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    • pp.133-140
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    • 1998
  • The following conclusions are based upon data collected and visual observations made during the performance of the tests : 1. The performance of the erosion control products tested was for a particular set of conditions, and may be expected to differ if any or all of the test parameters were to be changed. If even just one parameter is changed from one test to the next, the results can be expected to be different. 2. Due to the fact that only two replications of each product were tested, we believe that the results presented herein are indicative only and not conclusive. 3. The ECB SC produced the least amount of soil erosion followed by ECB S, ECB C, and Coir No. 2, in that order. 4. All of the erosion control blankets tested significantly reduced soil erosion rates with respect to the bare soil controls. 5. The ECB S produced the smallest water runoff rate, followed closely by ECB SC. Next in order were ECB C and Coir No. 2. 6. All of the erosion control blankets reduced the water runoff rate with respect to the bare soil control. 7. Mesh 2cm There was not much difference in plant height for the four erosion control blankets and the bare soil control plots. the ECB S produced slightly taller plants than the rest of the materials tested. 8. The four erosion control blankets(ECB C, ECB SC, ECB S, and Coir No. 2) produced a larger plant mass than the bare soil plots. The difference between the plant mass for the four erosion control blankets, however, is minimal. 9. The ECB C produced the least percentage of lost seed and the largest percentage of germinating seed. 10. The ECB SC had the second smaller percentage of seed lost, followed closely by ECB S, and then by Coir No. 2. 11. All erosion control blankets had a smaller percentage of seed lost than the bare soil control plots. 12. The ECB C had the second largest percentage of germinating seed, followed closely by ECB SC and Coir No. 2. 13. All erosion control blankets had a larger percentage of germinating seed than the bare soil control plots. 14. The ECB C had the smallest percentage of non-germinating seed, followed by ECB S, Coir No. 2, and ECB SC, in that order. 15. All erosion control blankets had smaller percentages of non-germinating seed than the bare soil control plots.

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Sediment Erosion and Transport Experiments in Laboratory using Artificial Rainfall Simulator

  • Regmi, Ram Krishna;Jung, Kwansue;Nakagawa, Hajime;Kang, Jaewon;Lee, Giha
    • 한국지반환경공학회 논문집
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    • 제15권4호
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    • pp.13-27
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    • 2014
  • Catchments soil erosion, one of the most serious problems in the mountainous environment of the world, consists of a complex phenomenon involving the detachment of individual soil particles from the soil mass and their transport, storage and overland flow of rainfall, and infiltration. Sediment size distribution during erosion processes appear to depend on many factors such as rainfall characteristics, vegetation cover, hydraulic flow, soil properties and slope. This study involved laboratory flume experiments carried out under simulated rainfall in a 3.0 m long ${\times}$ 0.8 m wide ${\times}$ 0.7 m deep flume, set at $17^{\circ}$ slope. Five experimental cases, consisting of twelve experiments using three different sediments with two different rainfall conditions, are reported. The experiments consisted of detailed observations of particle size distribution of the out-flow sediment. Sediment water mixture out-flow hydrograph and sediment mass out-flow rate over time, moisture profiles at different points within the soil domain, and seepage outflow were also reported. Moisture profiles, seepage outflow, and movement of overland flow were clearly found to be controlled by water retention function and hydraulic function of the soil. The difference of grain size distribution of original soil bed and the out-flow sediment was found to be insignificant in the cases of uniform sediment used experiments. However, in the cases of non-uniform sediment used experiments the outflow sediment was found to be coarser than the original soil domain. The results indicated that the sediment transport mechanism is the combination of particle segregation, suspension/saltation and rolling along the travel distance.

한국 서해 남부 함평만의 해안선 변화 연구 I. 해안절벽의 침식과 후퇴 (A Study on Shoreline Change in Hampyung Bay, Southwestern Coast of korea I. Sea-Cliff Erosion and Retreat)

  • 임동일;정회수;추용식;박광순;강시환
    • 한국해양학회지:바다
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    • 제7권3호
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    • pp.148-156
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    • 2002
  • 서해 남부 함평만에서 해안선의 지형 특성과 해안절벽의 침식과정을 조사하기 위해 야외관찰과 정밀 측량을 실시하였다. 함평만 해안선은 급경사면 그리고 불안정한 토양층이나 연약한 풍화암층으로 이루어진 높이 l0m미만의 해안절벽(sea-cliff)들로 대부분 구성되며, 매우 활발한 침식을 받고있다. 톱날모양의 해안선 형태, 해빈 표면에 노출된 잔류풍화기반암 및 "Island Stack"등 독특한 해안선 지형 특성들이 활발한 해안침식 증거들로 나타난다. 함평만에서의 해안선 후퇴는 해안절벽 기저부의 침식 사태(landslide or mass wasting), 테일러스(talus)형성 그리고 테일러스의 침식(소멸)의 순차적 과정이 반복되어 나타난 결과로 해석된다. 본 연구에서 테일러스가 여름철에 침식.제거되는 현상은 정상적인 해양조건에서 일어나는 계절적 해수면 상승에 의한 것으로 판단된다. 이는 겨울철 폭풍과 함께 해안 침식의 또 다른 중요 요인으로 제시된다.요인으로 제시된다.

Applicability of the Wind Erosion Prediction System for prediction of soil loss by wind in arable land

  • Lee, Kyo-Suk;Seo, Il-Hwan;Lee, Sang-Phil;Lim, Chul-Soon;Lee, Dong-Sung;Min, Se-Won;Jung, Hyun-Gyu;Yang, Jae-Eui;Chung, Doug-Young
    • 농업과학연구
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    • 제47권4호
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    • pp.845-857
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    • 2020
  • The precise estimation of accelerated soil wind erosion that can cause severe economic and environmental impacts still has not been achieved to date. The objectives of this investigation were to verify the applicability of a Wind Erosion Prediction System (WEPS) that expressed the soil loss as mass per area for specific areas of interest on a daily basis for a single event in arable lands. To this end, we selected and evaluated the results published by Hagen in 2004 and the soil depth converted from the mass of soil losses obtained by using the WEPS. Hagen's results obtained from the WEPS model followed the 1 : 1 line between predicted and measured value for soil losses with only less than 2 kg·m-2 whereas the values between the measured and predicted loss did not show any correlation for the given field conditions due to the initial field surface condition although the model provided reasonable estimates of soil loss. Calculated soil depths of the soil loss by wind for both the observed and predicted ones ranged from 0.004 to 3.113 cm·10 a-1 and from 0 to 2.013 cm·10 a-1, respectively. Comparison of the soil depths between the observed and predicted ones did not show any good relationship, and there was no soil loss in the predicted one while slight soil loss was measured in the observed one. Therefore, varying the essential model inputs and factors related to wind speed and soil properties are needed to accurately estimate soil loss for a given field in arable land.

강우로 인한 철도 연변사면의 활동분석 : 실내모형실험 (Analysis on the Rainfall Driven Slope Failure Adjacent to a Railway : Flume Tests)

  • 사공명;김민석;김수삼;이인용
    • 한국지반공학회논문집
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    • 제22권5호
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    • pp.83-91
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    • 2006
  • 최근 지구온난화현상으로 인해 발생하는 국지성 호우는 철도 연변사면 활동 및 활동 토체로 인한 선로매몰 그리고 선로유실 등의 불안정성을 초래하는 요인으로 대두되고 있다. 강우로 인한 사면의 거동에 대한 현장조사 결과 토층의 두께 및 사면의 형태적 특성 등에 따라 서로 다른 활동특성이 관측되었다. 이와 같은 활동특성을 천층 활동타입, 중간층 활동타입, 우곡부 활동타입, 암반 경계부 활동타입 4가지로 분류하였다. 이러한 관측과 관련하여 각 타입의 활동메커니즘을 규명하고 강우시 사면의 거동특성을 분석하고자 실내모형실험을 수행하였다. 실내모형실험은 미립분함량, 초기함수비, 경사각, 다짐에너지를 고정 변수로 취하고 토피고, 강우강도, 사면표면의 형태를 변화시키는 조건으로 수행되었다. 실내모형실험의 결과 천층 활동은 주로 표층에서 발생하며 침식에 의한 활동임을 알 수 있었다. 또한 초기 침식이 상대적으로 다른 활동타입에 비해서 늦게 발생하였으나 침식의 진행은 빨랐다. 우곡부 활동타입은 우곡부로 집수된 빗물로 인하여 침식 정도가 더 심하게 진행되었으며 사면내 위치하는 전석이 드러날 정도였다. 전석층까지 침식이 발생한후 전석의 존재로 인하여 추가적인 침식이 상대적으로 그 이전보다 느리게 발생하였다. 암반 경계부 활동타입의 경우 본 실험에서 가장 빨리 초기 활동 발생이 관측되었다. 각 활동타입에서 공통적으로 관측된 사항은 사면의 하단부에서 초기 변형이 관측되었으며 이러한 관측은 사면내 침투수의 사면방향의 흐름을 의미한다.

GIS를 이용한 토사이송 및 퇴적분포 예측기법 개발 (Modelling of Sediment Transportation and Deposition in GIS)

  • 손광익
    • 한국수자원학회논문집
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    • 제38권3호
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    • pp.223-233
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    • 2005
  • 본 연구에서는 분포형 모형과 셀의 유입, 유출 및 저류량에 대한 질량보존의 법칙을 이용하여 토사의 이송 및 퇴적분포예측기법을 개발하였다. 모형은 (a) 토사침식 예측 (b) 흐름방향 및 유출량 산정 그리고 (c) 토사에 대한 질량보존의 법칙에 따른 셀별 토사이동량 산정의 세 단계로 구성되었다. 토양침식은 범용토양손실공식(USLE)을 활용하였으며 분포형 모형에서의 경사장(L) 산정은 일방향(SF)과 다방향 흐름 알고리즘(MF)을 사용하였다. 경사(S) 산정을 위해서는 Maximum Downhill Slope Method (MDS) and the Neighborhood Method (NBH) 기법을 활용하였고 셀별 토양의 이동은 Ferro등(1998)과 Swift (2000)의 토사전달률(DR)개념을 적용하였다. 개발된 모형은 시험유역의 실측 토사량과의 비교검토를 통하여 검증하였다. 3개의 농업용 저수지 유역에 적용한 결과, Ferro의 토사전달률 산정공식과 MDS, MF 기법을 이용한 해석이 저수지의 운영기록과 가장 유사한 결과를 제시한다는 사실을 확인할 수 있었다.

초강천의 퇴적물 분석을 이용한 총인 및 질소의 유달 특성 평가 (Evaluation of Phosphorus and Nitrogen Delivery Characteristics of Chogang Stream Sediments)

  • 강선홍;서동일
    • 상하수도학회지
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    • 제11권4호
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    • pp.99-109
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    • 1997
  • To estimate the nutrients delivery characteristics of Chogang stream to Keum River, sediment and soil characteristics were analyzed in the stream and in the stream bank. Along the stream, soil samples from river sediment were collected and tested monthly for phosphorus and nitrogen concentrations. Nitrogen concentration in the sediment is much lower than that of soil in the river bank especially in summer presumably due to the high desorption characteristics of nitrogen by the increasing rainfall energy during summer. Instead, the concentrations of phosphorus were similar for the sediment and the soil in the river bank due to the strong adsorption characteristics of phosphorus. Batch tests were performed to evaluate the desorption potential of the sediments. Universal Soil Loss Equation (USLE) was applied to quantify soil erosion in each watershed due to rainfall. It was estimated that approximately 25% of total phosphorus by mass basis could be released from the sediment if the water was disturbed vigorously. The mass load of nitrogen and phosphorus into the Chogang Stream from the watershed were evaluated from the USLE and release ratio of phosphorus.

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급경사면의 세류간 침식에서 빗물튀김과 면상흐름의 상호작용 (Interaction between Raindrops Splash and Sheet Flow in Interrill Erosion of Steep Hillslopes)

  • 남명준;박상덕;이승규;신승숙
    • 한국수자원학회논문집
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    • 제48권7호
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    • pp.595-604
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    • 2015
  • 강우에 의한 세류간 토양침식은 운동에너지를 갖는 빗방울이 지표면을 타격하여 발생하는 빗물튀김의 박리현상과 지표유출수의 면상흐름에 의한 토사입자의 운반으로 구분할 수 있다. 강우운동에너지는 토양입자를 토양체로부터 분리시키기 위한 강우의 잠재적인 능력의 지표로 널리 사용되고 있다. 본 연구에서는 강우운동에너지가 세류간 토양침식에 미치는 영향을 파악하기 위해 강우의 충돌을 제어하는 스트립 커버를 이용한 토양침식 강우모의 실험을 수행하였다. 강우모의에 의한 강우운동에너지는 자연강우에 비해 0.58배 규모로 재현되었다. 강우강도가 증가함에 따라 지표유출량은 증가하고 지표하유출량은 상대적으로 감소하였다. 지표커버가 없는 사면으로부터 발생한 지표유출량이 지표커버가 있는 경우에 비해 평균 1.82배 증가하였다. 강우운동에너지는 지표유출 및 지표하유출 발생시간에도 영향을 끼쳤다. 빗물튀김과 면상흐름의 상호작용으로 토사유출량이 3.6~5.9배 증가하였으며 그 증가폭은 강우강도의 증가에 따라 감소하였다. 단위수류력과 토사유출량의 관계분석 결과 강우운동에너지는 빗물튀김에 의한 토양입자의 분리침식을 증가시킬 뿐만 아니라 지표유출수 증가에 따른 토사이송능력을 가중시켜 토사유출량을 크게 증가시키는 것으로 확인되었다.

계류생태계 보전을 고려한 환경친화적 사방 전략(I) (Consideration on Environmentally Friendly Erosion Control Strategy for Conservation of Stream Valley Ecosystem (I))

  • 박재현
    • 한국환경복원기술학회지
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    • 제5권5호
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    • pp.67-75
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    • 2002
  • This study was carried out to introduce current status to discuss erosion control strategy for the conservation of stream valley ecosystem. To restore stream valley ecosystem, we should establish restoration plans to keep the original shape of stream. It is necessary to use environmentally sound materials with conservation of valley stability. Valley construction for erosion control works should be evaluated continuously based on concepts of conservation and development of stream valley ecology. It is categorized in point of the important of class of stream valley conservation ahead planning and constructure. We suggest that the development of stream valley construction needs to prevent mass movement of soil sediments. In addition, it is established the basal strategy to protect macro and micro aquatic organisms in stream valley ecosystem.