• Title/Summary/Keyword: 나지사면

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Soil erosion and sediment in the construction area (도로공사지역의 토양침식 및 토사유출)

  • Park, Sang-Deog;Ji, Min-Gyu;Shin, Seung-Sook;Kim, Ho-Sup;Lee, Jong-Seol
    • Proceedings of the Korea Water Resources Association Conference
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    • 2010.05a
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    • pp.1760-1763
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    • 2010
  • 산지환경급변지역에서 집중호우에 의한 다량의 토사유출은 하천유역내 사회기반시설을 파괴하는 재해요인으로 작용할 수 있다. 본 연구에서는 산지환경급변지역 중 인위적인 지표교란 지역으로 대표되는 도로공사지역을 선정하여 집중호우가 발생하는 6월, 7월, 8월의 강우사상별 강우에너지와 토양침식 및 토사유출의 관계를 조사하였다. 조사결과 강우에너지가 커질수록 토양침식 및 토사유출량이 증가하는 결과를 나타내고 있다. 토양침식 조사를 위한 조사구에서 토양침식량은 식생요인과 관리상태에 따라 크게 영향을 받았다. 일반적으로는 강우에너지 증가에 따라 토양침식량이 증가한다. 도로공사지역에서는 심각한 지표교란뿐만 아니라 선행강우, 세류의 존재 여부, 그리고 외부적 요인들 때문에 상대적으로 작은 규모의 강우에 대해서도 다량의 토양침식량이 발생하는 것을 확인할 수 있었다. 교란이 발생하지 않은 인근 산지의 대조구와 공사에 의한 교란 나지사면 조사구를 비교해보았을 때, 평균 토양침식량은 약 7,352배의 차이를 보였으며, 섬유매트처리 및 사면포장처리 조사구처럼 인공적인 관리를 수행한 조사구와는 약 132배의 차이를 보였다. 또한, 인공적인 관리를 수행한 조사구는 지표사면관리의 영향과 야생종의 유입으로 지표가 안정되어 나지사면 조사구에 비해 상대적으로 적은 양의 토양침식이 발생하였다. 이는 지표교란이 심한 공사활동 지역에서는 지표특성에 따른 적합한 사면 응급처리 기법의 적용이 중요함을 나타내는 것이다.

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Characteristics of soil erosion from steep slope of sandy loam (사양토 급사면의 토양침식 특성)

  • Hwang, Yoonhee;Park, Sang Deog;Shin, Seung Sook;Yoon, Yun Minu
    • Proceedings of the Korea Water Resources Association Conference
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    • 2017.05a
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    • pp.137-137
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    • 2017
  • 우리나라는 산지가 64%를 차지하고 있기 때문에 토양침식 위험성이 큰 급경사지가 많다. 산지사면 토양은 대부분 사질토와 사양토로 이루어졌다. 급경사면에서의 토양침식이 많이 발생함에도 이에 대한 연구결과는 부족한 실정이다. 본 연구에서는 사양토로 구성된 나지사면에 대한 토양침식 특성을 파악하고자 강우모의 실험을 수행하였다. 강우모의 실험의 강우강도는 전국의 확률강우분포 3~200년 빈도의 30분 강우강도인 60mm/hr~130mm/hr의 범위였다. 사면경사는 급경사지 범위을 대표하는 $24^{\circ}$$28^{\circ}$에서 실험을 하였다. 실험은 발생하는 지표유출과 지표하유출를 수집하여 측정하였으며, 지표표면에 잉크를 뿌린 다음 실험을 동영상 촬영하여 속도를 측정하였다. 지표유출량을 건조로에 넣고 건조시켜 토양침식량을 측정하였다. 그리고 강우운동에너지는 광학디스트로메터(Pasivel)을 이용하여 측정하였다. 강우운동에너지를 측정한 결과 $800J/m^2{\sim}1700J/m^2$ 범위였다. 강우강도가 클수록 지표유출량과 토사유출량은 증가하였다. 경사가 증가함에 따라 지표유출량은 큰 변화가 없으나, 토양침식량은 크게 증가하였다. 지표하유출량은 강우강도와 경사가 증가하여도 큰 변화가 없었으며, 강우 발생이 멈추면 즉시 감소하였다. 사양토의 점토성분이 강우의 침투를 저해하고, 모래보다 많은 양의 물을 함유하는 있는 것으로 파악 되었다. 그러나 사질토보다 토양입자가 작은 사양토에서 상대적으로 많은 토양침식이 발생하였다. 강우에너지가 증가하면 유사농도는 감소하는 경향을 보였다. 이는 강우에너지가 증가함에 따라 지표유출량의 증가율에 비해 토양침식량의 증가율이 작기 때문인 것으로 판단된다.

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Comparison of Runoff and Sediment Yield According to Factors to Environmental Change in Mountainous Watersheds (산지유역 환경변화 요인에 따른 유출 및 토사유출 특성 비교)

  • Park, Sang Deog;Shin, Seung Sook;Kim, Seon Jeong;Lee, Jong Seol
    • 한국방재학회:학술대회논문집
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    • 2011.02a
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    • pp.201-201
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    • 2011
  • 산지유역의 지표 환경이 급격히 교란된 지역에서 집중 호우가 발생하면, 과대한 토사유출로 인해 하천유역 홍수 재해요인으로 작용할 수 있다. 본 연구에서는 산불발생지역, 벌목지역, 도로공사지역과 같이 산지환경이 급변한 지역을 토사유출 시험유역으로 운영하였다. 세 개의 시험유역 중에 지표교란이 심각한 도로공사시험유역에서 강우유출 및 토사유출이 가장 크게 발생하였다. 그림 1은 각 시험유역별 강우강도에 따른 첨두유량 관계를 나타낸 것이다. 또한 산불 후 10년이 경과된 급경사 산불시험유역이 벌목시험유역보다 유출 및 토사유출량이 많았다. 벌목시험유역은 벌목이후 잔류물과 빠른 식생회복으로 지표상태가 빠르게 안정화되어 유출 및 토사유출량이 적게 발생하였다. 도로공사 시험유역 나지사면에서 시행된 사면처리 공법 시공 전 후로 토사유출량의 변화가 현저히 크며(그림 2), 이는 공사를 진행하는 중에 적절한 사면관리 처리를 통한 토사유출량 저감이 필요하다는 것을 나타낸다.

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Effects of Surface Compaction Treatment on Soil Loss from Disturbed Bare Slopes under Simulated Rainfalls (인공강우 시 나지교란사면 토사유출에 미치는 다짐처리의 영향)

  • Park, Sang Deog;Shin, Seung Sook;Kim, Seon Jeong;Choi, Byoungkoo
    • Journal of Korea Water Resources Association
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    • v.46 no.5
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    • pp.559-568
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    • 2013
  • Surface compaction significantly impacts runoff and soil erosion under rainfall since it leads to changes of soil physical characteristics such as increase of bulk density and shear stress, change of microporosity, and decrease of hydraulic conductivity. This study addressed surface compaction effects on runoff and soil loss from bare and disturbed soils that are commonly distributed on construction sites. Thirty-six rainfall simulations from three replicates of each involving rainfall intensities (68.5 mm/hr, 95.6 mm/hr) and plot gradients ($5^{\circ}$, $12.5^{\circ}$, $20^{\circ}$) were conducted to measure runoff and soil loss for two different soil surface treatments (compacted surface, non-compacted surface). Compacted surface increased significantly soil bulk density and soil strength. However, the effect of surface treatments on runoff changed with rainfall intensity and plot gradient. Rainfall intensity and plot gradient had a positive effect on mean soil loss. In addition, the effect of surface treatments on soil loss responded differently with rainfall intensity and plot gradient. Compacted surfaces increased soil loss at gentle slope ($5^{\circ}$) while they decreased soil loss at steep slope ($20^{\circ}$). These results indicate that there exists transitional slope range ($10{\sim}15^{\circ}$) between gentle and steep slope by surface compaction effects on soil loss under disturbed bare soils and simulated rainfalls.

Studies on the Effects of Several Factors on Soil Erosion (토양침식(土壤侵蝕)에 작용(作用)하는 몇가지 요인(要因)의 영향(影響)에 관(關)한 연구(硏究))

  • Woo, Bo Myeong
    • Journal of Korean Society of Forest Science
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    • v.29 no.1
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    • pp.54-101
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    • 1976
  • This study was conducted on the major factors affecting soil erosion and surface run-off. In order to investigate the processes and mechanisms of soil erosion on denuded forest-land in Korea, and to systematize the magnitudes of influences and interactions between individual factors, the five major factors adopted in these experiments are soil textures (coarse sand and clay loam), slope steepness ($10^{\circ}$, $20^{\circ}$, $30^{\circ}$ and $40^{\circ}$), rainfall intensities (50, 75 and 100mm/hr), slope mulching methods (bare, coarse straw-mat mulching, grass mulching and anti-erosion liquid mulching) and vegetation densities (sparse, moderate and dense). The processes and mechanisms of soil erosion, and the effects of mulchings on soil erosion as well as surface run-off rates were studied algebraically with four parts of laboratory experiments under the simulated rainfall and another part of field experiment under the natural rainfall. The results in this study are summarized as follows: 1. Experiment factors and surface run-off rates The surface run-off rates under the natural rainfall were resulted about 24.7~28.7% from the bare slopes, about 14.0~16.4% from the straw-mat mulched slopes, about 7.9~9.1% from the liquid mulched slopes, and about 5.6~7.2% from the grass mulched slopes respectively. The surface run-off rates under the simulated rainfall differed greatly according to the rainfall intensity and the mulching method. 2. Magnitudes of influences and interactions of the individual factor on the surface run-off rates. The experimental analyses on the major factors(soils, slopes, rainfalls, mulchings and vegetations) affecting the rates of surface run-off, show that the mean differences of surface run-off rate are significant at 5% level between the soil texture factors, among the slope steepness factors, among the rainfall intensity factors, among the mulching method factors, and among the vegetation density factors respectively. The interactions among the individual factor have a great influence(significant at 1% level) upon the rate of surface run-off, except for the interactions of the factors between soils and slopes; between slopes and vegetations; among soils, slopes and rainfalls; and among soils, slopes and mulchings respectively. On the bare slopes under the simulated rainfall, the magnitude of influences of three factors(soils, slopes and rainfalls) affecting the rate of surface run-off is in the order of the factor of rainfalls, soils and slopes. The magnitude of influences of three factors (soils, rainfalls and mulchings) affecting the rate of surface run-off, on the mulched slopes under the simulated rainfall is in the order of the factor of mulchings, rainfalls and soils and that of influences of the factor of soils, slopes and mulchings is in the order of the factor of mulchings, soils and slopes. On the vegetation growing slopes under the simulated rainfall, the magnitude of influences of three factors (soils, slopes and vegetations) affecting the rate of surface run-off is in the order of the factor of vegetations, soils and slopes. In the same condition of treatments on the field experiment under the natural rainfall, the order of magnitude of influences affecting the rate of surface run-off is the factor of mulchings, soils and slopes. 3. Experiment factors and soil losses The soil losses of the experiment plots differed according to the factors of soil texture, slope steepness, rainfall intensity and mulching method. The soil losses from the coarse soil were increased about 1.1~1.3 times as compared with that of fine soil under the natural rainfall, while the soil losses from the fine soil were increased about 1.2~1.3 times compared with that of coarse soil under the simulated rainfall. The equation of $E=aS^b$ (a, b are constant) between the slope steepness (log S) and soil losses (log E) under the simulated rainfall were developed. The equation of $E=aI^b$ (a, b are constant) between the rainfall intensity (log I) and soil losses (log E) were developed, and b values have a decreasing tendency according to the increase of the slope steepness and rainfall intensity. The soil losses under the natural rainfall were appeared about 38~41% from the coarse straw-mat mulched slopes, about 20~22% from the liquid mulched slopes, about 14~15% from the grass mulched slopes as compared with that of the bare slopes respectively. The soil loss from the vegetation plots showed about 7.1~16.4 times from the sparse plot, about 10.0~17.9 times from the moderate plot and about 11.1~28.1 times from the dense plot as compared with that of the bare slopes. 4. Magnitudes of influences and interactions of the individual factor on the soil erosion. The experimental analyses on the major factors(soils, slopes, rainfalls, mulchings and vegetations) affecting the soil erosion, show that the mean differences of soil losses are highly significant between the soil texture factors, among the slope steepness factors, among the rainfall intensity factors, among the mulching method factors and among the vegetation density factors respectively. The interactions among the individual factor have mostly great influences upon the soil erosion. The magnitude of influences of three factors (soils, slopes and rainfalls) affecting the soil erosion on the bare slopes under the simulated rainfall is in order of the factor of rainfalls, soils and slopes. On the mulched slopes under the simulated rainfall, the magnitude order of influences of three factors(soils, rainfalls and mulchings) affecting the soil erosion is the factor of mulchings, rainfalls and soils, and the order of influences of factor of soils, slopes and mulchings is the factor of mulchings, soils and slopes. On the vegetation growing slopes under the simulated rainfall, the magnitude of influences of three factors (soils, slopes and vegetations) affecting the soil erosion is in the order of the factor of slopes. vegetations and soils. In the same condition of treatments on the field experiment under the natural rainfall, the order of magnitude of influences of three factors (soils, slopes and mulchings) affecting the soil erosion is the factor of mulchings, of slopes and of soils.

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A Study on Landslide in the Slope of the Forest Road (임도사면(林道斜面)의 붕괴(崩壞)에 관(關)한 연구(硏究))

  • Oh, Jae-Man;Chun, Kun-Woo
    • Journal of Forest and Environmental Science
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    • v.7 no.1
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    • pp.35-41
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    • 1990
  • This study was conducted to find out the suitable gradient and length of the slope from the landslide of banking slope and cutting slope caused by rainfall. The survey was carried out on forest road built in 1986. And the period of survey was from June, 1989 to August, 1989 after dividing the forest road into A and B. The survey plots consisted of the 12 banking slopes and 6 cutting slopes. The results obtained from the study were summarized as follows; 1. The rate of landslide appeared 75% in A forest road, 50% in B forest road, and then the average 67% in A and B forest road. But the value of landslide showed considerably low. 2. Because of landslide chiefly occuring on banking slope of $36^{\circ}{\sim}38^{\circ}$ and on cutting slope of $42^{\circ}{\sim}43^{\circ}$, it is suitable to decide the banking slope and cutting slope below each $36^{\circ}$ and $40^{\circ}$. 3. Landslide was the same on banking slopes through the length of slope. The best suitable length of slope is below 4m in cutting slope.

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The effect on interrill erosion of the surface cover to control raindrops impact (강우입자 충돌을 제어하기 위한 지표커버가 세류간 토양침식에 미치는 영향)

  • Shin, Seung Sook;Nam, Myeong Jun;Lee, Seung Kyu;Park, Sang Deog
    • Proceedings of the Korea Water Resources Association Conference
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    • 2015.05a
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    • pp.448-448
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    • 2015
  • 급경사면의 세류간 토양침식은 지표면과의 강우입자 충돌에 의한 튀김현상과 면상흐름에 의한 토사이송 능력의 상호작용에 의해 영향을 받는다. 강우운동에너지와 면상흐름이 세류간 토양침식 및 토사유출 발생에 있어서 상대적인 기여도에 대한 연구는 국내뿐만 아니라 전 세계적으로도 미흡하다. 본 연구에서는 강우현상을 재현할 수 있는 강우모의 실험장비와 사면 토양침식 실험을 위한 소규모 토양플롯을 제작하여 실험에 사용하였다. 강우모의에 의한 강우운동에너지는 자연강우의 운동에너지 산정식의 계산결과와 비교했을 때, 약 0.58배의 규모를 재현했다. 강우입자의 충돌을 제어하기 위한 스트립을 토양플롯에 올려놓은 경우와 커버가 없는 나지상태에서 강우모의 실험을 한 경우 사면에서 발생한 지표유출수, 지표하유출수 및 토사유출 자료를 측정하고 분석하였다. 강우강도가 증가함에 따라 지표유출량은 증가하고, 지표하유출량은 상대적으로 감소했다. 지표커버는 지표유출의 첨두유량 발생시간을 지연시켰으며, 지표유출량과 지하수량의 변화를 초래했다. 지표커버에 의해 지표유출량은 평균 1.82배 감소하지만, 토사유출량은 평균 4.93배로 상대적으로 크게 감소하였다. 단위수류력과 토사유출량과 관계를 분석한 결과 강우운동에너지는 토양입자의 튀김현상에 의한 침식을 증가시킬 뿐만 아니라 지표유출수의 유속을 증가시켜 토사이송능력을 가중시키는 것을 확인하였다.

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Slow Mass Movement on a Subalpine Slope of Mount Halla, Jeju Island (한라산 아고산대에서의 사면 물질 이동)

  • Kim, Tae-Ho
    • Journal of the Korean Geographical Society
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    • v.45 no.3
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    • pp.375-389
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    • 2010
  • In order to investigate the rates and factors of slow mass movement on a subalpine slope of Mount Halla, two painted stone lines were monitored in a bare patch at 1,710 m a.s.l. The mean movement of surface gravels is 58.2 cm, equivalent to 0.24 cm/day. However, the rates of movement vary with seasons. Compared with 0.05 cm/day of a non-frozen season, a frozen season shows 0.3 cm/day. It implies that the movement of surface gravels could be largely controlled by periglacial processes during a frozen season. In particular, frost creep including needle ice creep plays a main role in the movement of gravels under the thermal and soil conditions which are favorable for needle ice development. Since line II is located at a steeper slope than line I, the movement of line II was always larger than that of line I. However, slope gradient is not the most dominant factor contributing the movement of gravels, which can be interrupted by downslope big gravels and vegetation patches. The size and specific weight of gravels also can influence the movement of gravels. Porous and light scoriae result in relatively quick movement of gravels on the subalpine slope of Mount Halla.

Use Impacts on Environmental Deteriorations on and around Trails in Odaesan National Park (오대산 국립공원 이용에 따른 등산로 및 주변환경훼손)

  • 권태호;오구균;이준우
    • Korean Journal of Environment and Ecology
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    • v.9 no.2
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    • pp.211-220
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    • 1996
  • 5 major trails of Odaesan National Park were selected to investigate the use impacts on environmental deterioration of trail accreding to the different amunt of use. The entire width, bare width, maximum depth and slope of trail as the trail comdition surveyed at the total of 120 points were significantly greater on the more heavily-used trail. Major deterioration types of trail were root-exposure, rock-exposure, deepening and divergence in order of frquency and trail conditions of deteriorated points were significantly different from those of non-deteriorated points. The damaged area more severe than Class 4 on trail reached about 379m$^{2}$/km in total, and especcially about 1,196m$^{2}$/km in the section between Chodmyolbogung and Pirobong of Sangwonsa trail. The dominant trees of trail edge vegetation could be Quercus mongolica in upper layer, but in lower layer Rhododecdron schilipenbachii for slope and Actinidia arguta for ridge. Coverage and number of individuals of lower vegetation in trail edge were the lowest on the Sangwonsa trail of the largest use amount, and each trail was dissimilar in species composition of lower layer of edge vegetation.

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Rainfall and Inflow Simulation for Rill Erosion of Sand Soil (마사토의 세류침식에 대한 강우와 유입수 모의실험)

  • Sang Jin Son;Sang Deog Park;Seung Sook Shin
    • Proceedings of the Korea Water Resources Association Conference
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    • 2023.05a
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    • pp.194-194
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    • 2023
  • 세류침식은 급경사 나지사면에서 증가하는 지표흐름에 의해 빈번하게 발생하고, 과도한 토사유출로 인해 홍수 및 토사재해 위험 증가와 수질오염 등의 문제를 야기한다. 본 연구는 개발지역의 마사토를 활용하여 1.2 m × 5.5 m 규모의 3개 중규모 플롯에서 세류발달 특성, 유출 및 토사유출량을 파악하고자 강우와 유입수 모의실험을 수행하였다. 경사 조건 15°와 20°에서 유입수 유무에 따른 4회의 반복실험이 진행되었으며 마사토의 평균입경은 0.89 mm이다. 강우강도 범위는 90~140 mm/hr이며, 유입수 유량은 합리식으로 계산하였으며 100~130 ml/sec이다. 하천 차수분석방법인 Horton방법을 사용하여 세류별 차수를 나누었다. 세류절개는 유입수가 없는 경우 실험 시작 약 1분 후에 발생하였고, 최대 2차수까지 세류가 발달하였으며, 유입수가 있는 경우 약 30초 후 발생하였고, 최대 3차수까지 세류가 발달하였다. 세류발달에 대한 수리학적 특성을 파악하기 위하여 염료 추적방법에 의한 동영상 이미지 분석결과 유속은 0.06~0.43 m/s의 범위를 보였다. 유입수와 강우가 함께 공급되는 경우 강우모의 공급수량에 비해 1.32~1.69배 증가했고, 이에 따라 지표유출수는 1.13~3.93배로 증가폭의 범위가 넓었다. 세류발달에 의한 토사유출량은 유입수 유무에 따라 6.7~32.3배로 증가하였다. 결론적으로 강우와 유입수가 상호작용하는 경우 강우에 의한 박리현상보다 유입수에 의한 측벽붕괴 활동이 활발하게 진행되었고 이는 세류 발달 과정에서 지배적으로 이루어졌기 때문으로 판단된다.

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