• Title/Summary/Keyword: cropland

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Soil Erosion Assessment Tool - Water Erosion Prediction Project (WEPP) (토양 침식 예측 모델 - Water Erosion Prediction Project (WEPP))

  • Kim, Min-Kyeong;Park, Seong-Jin;Choi, Chul-Man;Ko, Byong-Gu;Lee, Jong-Sik;Flanagan, D.C.
    • Korean Journal of Soil Science and Fertilizer
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    • v.41 no.4
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    • pp.235-238
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    • 2008
  • The Water Erosion Prediction Project (WEPP) was initiated in August 1985 to develop new generation water erosion prediction technology for federal agencies involved in soil and water conservation and environmental planning and assessment. Developed by USDA-ARS as a replacement for empirical erosion prediction technologies, the WEPP model simulates many of the physical processes important in soil erosion, including infiltration, runoff, raindrop detachment, flow detachment, sediment transport, deposition, plant growth and residue decomposition. The WEPP included an extensive field experimental program conducted on cropland, rangeland, and disturbed forest sites to obtain data required to parameterize and test the model. A large team effort at numerous research locations, ARS laboratories, and cooperating land-grant universities was needed to develop this state-of-the-art simulation model. The WEPP model is used for hillslope applications or on small watersheds. Because it is physically based, the model has been successfully used in the evaluation of important natural resources issues throughout the United State and in several other countries. Recent model enhancements include a graphical Windows interface and integration of WEPP with GIS software. A combined wind and water erosion prediction system with easily accessible databases and a common interface is planned for the future.

A Plot Scale Experiment to Assess the NPS Reduction for Non-irrigated Cropland (밭 비점오염 저감효과 평가를 위한 포장실험 연구)

  • Park, Tae-Yang;Kim, Sung-Jae;Jang, Jeong-Ryeol;Choi, Kang-Won;Kim, Sang-Min
    • Proceedings of the Korea Water Resources Association Conference
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    • 2011.05a
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    • pp.313-313
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    • 2011
  • 오염물질은 배출원의 형태에 따라 점오염물질과 비점오염물질로 구분하고 있고 점오염물질은 생활하수, 산업폐수, 축산폐수, 환경기초시설 방류수 등으로 발생원이 명확하고 수집하여 처리 및 관리가 용이하나 비점오염물질은 배출위치가 명확하지 않으며, 강우 시 일시적으로 대량 배출되는 특징을 가진 농경지, 도로, 대지, 임야 등에서 배출되는 오염물질을 말한다. 우리나라에서 비점오염은 전체 수질오염의 42~67%(2003년)를 차지하는 것으로 나타났고, 2015년에는 전체 수질오염의 65~75%에 이를 것으로 예상되고 있다. 이 중 농업 비점오염원은 총 수질 오염량의 30%이상을 차지할 것으로 추정하고 있으나 이를 저감하기 위한 최적관리방법의 효과검증에 관한 연구는 아직 미미한 상태이다. 이에 본 연구에서는 농경지 중 밭에서 발생하는 비점오염을 저감하기 위한 기법으로 다양한 규모와 형태의 Silt Fence/식생밭두렁/침사구를 설치하여 밭 비점오염에 대한 저감효과를 평가하고 제어대책을 개발하여 최적관리기법을 제시하고 이에 대한 매뉴얼을 개발하기 위한 기초연구를 실시하려 한다. Silt Fence는 주로 건설공사현장에서 홍수유출 발생 시 인접한 하천 및 호소 등으로 유사 및 오염물질이 유입되는 것을 방지하기 위해 임시적으로 설치하는 시설로 합성 직물 필터를 나무나 금속 막대로 연결하여 등고선 방향으로 설치하는 것으로 대상 지역의 토양이 교란되기 전에 그 지역 아래쪽에 설치한다. 식생밭두렁은 밭의 이랑의 길이가 길어질수록 강우 시 빗물이 하단에 이를 때 늘어난 유량과 빠른 유속으로 토양침식이 가중되는데, 이때 30~35m간격으로 식생밭두렁을 설치하게 되면 상부와 하부의 침식정도가 유사한 경향을 보여 식생밭두렁을 설치하지 않은 지역에 비해 토양의 침식정도가 작게 나타나게 된다. 이러한 Silt Fence/식생밭두렁/침사구의 밭 비점오염의 저감효과 평가 및 제어대책 개발을 위한 기초 실험을 수행하기 위해 경상남도 사천시 용현면 선진리 일대에 시험포장을 조성 하였으며, 시험포장내에 6개의 Plot을 만들어 하단부에 포장에서의 유출수의 유량을 측정하기 위해 플룸을 설치하였고 실내실험을 통해 플룸의 수위-유량관계 곡선을 작성하였다. 포장의 토양특성을 판별하기 위해 Plot별로 토양시료를 채취하여 특성을 분석 한 결과 6개 Plot모두 모래함량이 많은 점토질 사질토로 분류되었다. 향후 강우 시 시험포장에서 발생하는 유출수의 수질을 분석하고 Silt Fence/식생밭두렁/침사구의 오염물질 저감효과를 분석하여 제어대책을 개발하게 되면 농업수자원확보를 위한 관리방안 선정을 위한 정책수립에 활용될 수 있으며 비점오염 배출을 최소화시켜 수질의 개선에 기여할 뿐만 아니라 우리나라 농업에 적합한 최적영농관리기술을 개발 할 수 있을 것으로 사료된다.

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The riparian vegetation community models according to hydrologic and soil environments - Case of Daecheongho lake reservoirs - (수문 및 토양환경을 고려한 수변식생군락 조성 모델 - 대청호 저수지를 사례로 -)

  • Park, Miok
    • Journal of Wetlands Research
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    • v.19 no.1
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    • pp.144-154
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    • 2017
  • The riparian vegetation is one of corridor type ecosystems, an ecotone and able to improve the ecological soundness by structural and functional link. And they act as habitats, sources and sinks of species, conduits, filters and barriers. This study was carried out to develop the vegetation model for the fluctuation areas of lake reservoirs consider of hydrologic and soil environments according to the vegetation structure of the reference ecosystem. To develop the case study, 2 sites within 10degree slope of the Daecheong Lake were selected. The riparian vegetation models were built by the results of GIS analysis, remote satellite analysis, field survey results, consider of water level, flooded frequency, soil and topographic index, land cover or land use etc. 1) study area varied from FWL to -5m of NFWL, 2) slope 10% below, 3) vegetations flooded below 100days yearly are Salix koreensis, Salix chaenomeloides, Salix gracilistyla, 4)land cover type classified wildlife grassland, abandoned paddy field, cropland according to landuse (or landcover), 5)finally model was constructed as ecological landscape forest. The model designs were suggested by 2 types in Daecheong lake reservoir. The model for the riparian vegetation corridors could be the basic and useful data to improve the ecological and landscape properties.

Impact Assessment of Sea_Level Rise based on Coastal Vulnerability Index (연안 취약성 지수를 활용한 해수면 상승 영향평가 방안 연구)

  • Lee, Haemi;Kang, Tae soon;Cho, Kwangwoo
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.27 no.5
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    • pp.304-314
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    • 2015
  • We have reviewed the current status of coastal vulnerability index(CVI) to be guided into an appropriate CVI development for Korean coast and applied a methodology into the east coast of Korea to quantify coastal vulnerability by future sea_level rise. The CVIs reviewed includes USGS CVI, sea_level rise CVI, compound CVI, and multi scale CVI. The USGS CVI, expressed into the external forcing of sea_level rise, wave and tide, and adaptive capacity of morphology, erosion and slope, is adopted here for CVI quantification. The range of CVI is 1.826~22.361 with a mean of 7.085 for present condition and increases into 2.887~30.619 with a mean of 12.361 for the year of 2100(1 m sea_level rise). The index "VERY HIGH" is currently 8.57% of the coast and occupies 35.56% in 2100. The pattern of CVI change by sea_level rise is different to different local areas, and Gangneung, Yangyang and Goseong show the highest increase. The land use pattern in the "VERY HIGH" index is dominated by both human system of housing complex, road, cropland, etc, and natural system of sand, wetland, forestry, etc., which suggests existing land utilization should be reframed in the era of climate change. Though CVI approach is highly efficient to deal with a large set of climate scenarios entailed in climate impact assessment due to uncertainties, we also propose three_level assessment for the application of CVI methodology in the site specific adaptation such as first screening assessment by CVI, second scoping assessment by impact model, and final risk quantification with the result of impact model.

Effect of Land Use on Urban Thermal Environments in Incheon, Korea (인천시에서 토지이용이 도시 열 환경에 미치는 영향)

  • Kong, Hak-Yang;Kim, Seog Hyun;Cho, Hyungjin
    • Ecology and Resilient Infrastructure
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    • v.3 no.4
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    • pp.315-321
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    • 2016
  • To identify the relationship between land use and thermal environment in an urban area, the air temperature was measured at different places of land use, and the changes of land use and air temperature were traced for 40 years in Incheon City. The relationship between land use and temperature was also investigated using satellite image data. The results of temperature measurements on a forest, a cropland (rice paddy), a bareland (school ground), and an urban area (asphalt road) from 19 to 21 August 2014 showed that air temperature was the highest on a pavement road. The temperature increased by about $1.4^{\circ}C$ ($0.035^{\circ}C/year$) for 40 years from 1975 to 2014 in Incheon. The changes in land use patterns of Incheon for the past 40 years showed that urban dry land, bareland and grassland have increased and cultivated land, wetland and forest land have decreased gradually. The land surface temperature (LST) was correlated with the normalized difference vegetation index (NDVI) and normalized difference built-up index (NDBI) extracted from Landsat satellite image. The land surface temperature was lower at higher NDVI, and higher at higher NDBI. Therefore, it is important to conserve and restore the land use of greenery, wetlands, and agricultural land in order to mitigate the heat island effect and improve the thermal environment in an urban area.

Surface Runoff Loss of Nitrogen and Phosphorus from Peach Orchard (복숭아 과수원에서 측정된 강우에 의한 질소와 인의 지표면 유실)

  • Kim, Min-Kyeong;Kim, Bok-Jin;Chung, Jong-Bae
    • Applied Biological Chemistry
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    • v.43 no.2
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    • pp.124-129
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    • 2000
  • Nitrogen and P in surface runoff and eroded sediment from cropland areas can contaminate streams and lakes. Runoff losses of N and P were determined in a small field plot $(14.3{\times}24.8\;m)$ of peach orchard from March to November in 1999. Nitrogen and P were applied in the rate of 172 and 46 kg/ha using chemical fertilizer and mixed oil cake fertilizer. During the season, in 26 rainfall events, $421.5\;m^3/ha$ of runoff including 1,989 kg/ha of soil loss was collected. Concentrations of total-N, $NO_3-N$, $NH_4-N$, total-P and $PO_4-P$ in runoff samples were in the range of $4.7{\sim}171.0,\;0.1{\sim}188.0,\;0.13{\sim}3.36$, $0.58{\sim}4.99$ and $0.05{\sim}3.71\;mg/l$, respectively. Total loss of N was 16.39 kg/ha and 75% of the loss was $NO_3-N$. Total loss of P was 1.04 kg/ha, and $PO_4-P$ and sediment bound P accounted for 47 and 27% of the total loss, respectively. The losses of N and P were about 9.5 and 2.3% of the applied N and P in the plot, respectively. Although the loss of N or P would be relatively small in agricultural aspect, considering the high concentrations of N and P in runoff, loss of N and P from croplands should be controlled to reduce the eutrophication problem of stream waters.

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Factors affecting Crop Damage by the Wild Boar (Sus scrofa) : A case study in Geochang County, Gyeongnam Province, Korea (멧돼지(Sus scrofa)에 의한 농작물 피해 요인 분석 -경남 거창군 사례를 중심으로-)

  • Lee, Seong-Min;Lee, Eun-Jae;Park, Hee-Bok;Seo, Chang-Wan
    • Korean Journal of Environment and Ecology
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    • v.32 no.2
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    • pp.140-146
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    • 2018
  • Wild boars have expanded their habitats in Korea in recent years and caused serious social problems such as crop damage and appearance in urban areas. This study was carried out from May to October 2012 to investigate the environmental factors that affect crop damage based on actual cases reported in Geochang County of Gyeongnam Province, Korea. The analysis showed that the damages by wild boars occurred mainly between August and September, and rice was damaged most often while sweet potatoes were damaged most intensely. The results indicated that the damages were related to the wild boars' preference of crop and the seasonal availability of crops. Other factors that affected the crop damage included the slope, the topographic relief, and the distances from forest, stream, road, and residential area. There was no significant difference of environmental factor according to damage intensity, suggesting that the wild boars tended to attack the same cropland repeatedly and thus accumulating the damage. Our study suggests that reducing crop damages by wild boars will require cultivating crops less preferred by wild boars, installing electric fences, and controlling wild boar population with hunting and trapping.

Assessment of sediment and total phosphorous loads using SWAT in Oenam watershed, Hwasun, Jeollanam-do (SWAT 모델을 이용한 외남천 유역의 토사 및 총인 유출량 분석)

  • Lee, Taesoo
    • Journal of the Korean association of regional geographers
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    • v.22 no.1
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    • pp.240-250
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    • 2016
  • Monitoring for water quantity and quality was conducted in this study for 2 years (2012~2013) in Oenam Stream which is a tributary of Seomjin River and upstream of Juam Lake. Suspended solid and total phosphorous(TP) were monitored and analyzed, then water quantity and quality as well as their relation with landuses were identified based on the previous study. Flow showed the similar pattern with precipitation but some discrepancies existed due to the distance between weather station(Gwangju) and study area. Watershed was modeled based on observed data using SWAT(Soil and Water Assessment Tool). Model calibration was conducted using data obtained in 2012 and validation was conducted using data in 2013. The coefficient of determination ($R^2$) between observed and modeled showed 0.6644 and 0.5176 for flow and TP, respectively for model calibration period. For validation period, $R^2$ was 0.7529 for flow and 0.7057 for TP, which were higher than calibration period. Hot spots were determined for watershed management by analyzing the amount of sediment and TP outcome from each sub-watershed. TP loading by landuse determined that cropland, of which the area takes only 5% from entire watershed, generated 53.6% of TP and residential and cowshed was responsible for 23.5% of TP loading.

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Improving Accuracy of Land Cover Classification in River Basins using Landsat-8 OLI Image, Vegetation Index, and Water Index (Landsat-8 OLI 영상과 식생 및 수분지수를 이용한 하천유역 토지피복분류 정확도 개선)

  • PARK, Ju-Sung;LEE, Won-Hee;JO, Myung-Hee
    • Journal of the Korean Association of Geographic Information Studies
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    • v.19 no.2
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    • pp.98-106
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    • 2016
  • Remote sensing is an efficient technology for observing and monitoring the land surfaces inaccessible to humans. This research proposes a methodology for improving the accuracy of the land cover classification using the Landsat-8 operational land imager(OLI) image. The proposed methodology consists of the following steps. First, the normalized difference vegetation index(NDVI) and normalized difference water index(NDWI) images are generated from the given Landsat-8 OLI image. Then, a new image is generated by adding both NDVI and NDWI images to the original Landsat-8 OLI image using the layer-stacking method. Finally, the maximum likelihood classification(MLC), and support vector machine(SVM) methods are separately applied to the original Landsat-8 OLI image and new image to identify the five classes namely water, forest, cropland, bare soil, and artificial structure. The comparison of the results shows that the utilization of the layer-stacking method improves the accuracy of the land cover classification by 8% for the MLC method and by 1.6% for the SVM method. This research proposes a methodology for improving the accuracy of the land cover classification by using the layer-stacking method.

Pathogenic E. coli Inactivation in Upland Soils to a Change of Soil Moisture Content and Temperature (밭토양에서 토양수분과 온도변화에 따른 분변성 대장균 사멸율 변화)

  • Kim, Min-Kyeong;Kim, Min-Young;Choi, Chul-Man;Ko, Byong-Gu;Kwon, Soon-Ik;Weon, Hang-Yeon
    • Korean Journal of Soil Science and Fertilizer
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    • v.43 no.1
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    • pp.90-95
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    • 2010
  • The application of livestock manure to cropland is a practice that has been used for centuries. Agricultural crops can utilize nutrients from manure, and the producer can utilize land for disposal, although in a "sustainable system" the concept is manure utilization and not waste disposal. However, meeting regulatory criteria regarding microbial quality remains an expensive and time consuming process. The purpose of this study was to quantify the level of environmental impact of soil moisture and temperature on fecal coliform (Escherichia coli or E. coli) survival in upland soils for sound application of livestock manure. Samples were collected up to 30 days depending on the given conditions. The inactivation rate of E. coli increased linearly with increased temperature while the inactivation rate gradually decreased with decreased soil moisture level. The overall findings of this study showed that the temperature was the limited factor on E. coli survival in soils over soil moisture content. This study will provide useful and practical guidelines to applicators of soil in deciding appropriate handling and time frames for land application for sustainable agriculture.