• 제목/요약/키워드: Farmland improvement

검색결과 65건 처리시간 0.029초

수상 태양광발전 시스템의 데이터 분석을 통한 실증에 관한 연구 (Data Analysis of Water Through the Photovoltaic Solar System to the Empirical Study)

  • 김은기;최형철;이종석;신강욱
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2011년도 제42회 하계학술대회
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    • pp.1402-1403
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    • 2011
  • Photovoltaic solar energy policy in the keynote of the world in the development of new technologies in terms of renewable energy sources has been a great interest. Solar energy is the energy density, low light intensity, temperature, and a lot of areas affected by the difference, the effective use difficult. For the installation of photovoltaic solar power systems to develop farmland or forest land resulting from deforestation has become such a problem. In this paper, a way to resolve these issues as part of the development of the reservoir water through the efficient use of land and water resources through the eco-friendly energy production, water quality improvement, the cooling effect of solar modules, solar water system has the advantage of was installed. Terrestrial solar systems installed under the same conditions and solar radiation, power, module temperature, ambient temperature and analyzed. Through this award to demonstrate the effectiveness of the solar system is.

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논의 배수물꼬의 유량에 관한 기초연구 (A Study on the Outlet Drain Discharge from Paddy Field)

  • 최진규;김현영;손재권
    • 한국농공학회지
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    • 제39권2호
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    • pp.134-142
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    • 1997
  • This study was performed to evaluate the drain runoff characteristics from one paddy field, and to provide the basic data required for the determination of flood discharge and unit drainage water for drainage improvement and farmland consolidation. For this purpose, under the assumption that drain discharge from paddy field was similar to outflow of reservoir, runoff model based on storage equation was applied to the experimental field, and simulated results were compared to the measured discharge at weir point. To estimate effective storage volume of paddy field with water depth, 4 regression formula were examined such as linear, exponential, power, and combined. From the observed runoff characteristics, it was shown to be 3.3~16.3${\ell}$/sec in weir discharge, 57.2~98% in runoff ratio, and relative error of simulated result was 3.0~39.4%, 8.5 ~56.0 % for peak flow and runoff ratio, respectively. Curve number by SCS method was calculated as mean value of 96.4 using measured rainfall and runoff data, it was considered relatively high because paddy field has generally flooding depth contrary to the upland watershed area.

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한강수계 관개용 저수지의 공급량 조사 (Surveying Water Supply from Irrigation Reservoirs in the Han River Basin)

  • 임상준;강민구;박승우;박창언
    • 한국농공학회지
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    • 제42권6호
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    • pp.37-44
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    • 2000
  • The objectives of the research were to modify and validate a daily water balance model, DIROM, for irrigation reservoirs using field data, and to estimate daily water supply from the reservoirs in the Han river basin. Modified DIROM was applied to three test sites, and validated with field data. The relative errors between the simulated and observed water supply were less than 10 percent. Historical records on daily or ten-day’s storage for 110 reservoirs from the twenty Farmland Improvement Associations, FIA were collected and used to estimate the daily water supply during 1993 to 1997. The results were applied to the other 723 reservoirs that are not owned by FIA. The five-year averaged annual water supply from the reservoirs was estimated to be 180 million ㎥/yr. Maximum yearly water supply was recorded to be 190 million ㎥/yr in 1996.

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수리시설물의 특성조사 연구 (A Study on the Characteristics of Irrigation Facilities)

  • 김선주;이광야;박재홍
    • 한국농공학회지
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    • 제39권6호
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    • pp.41-53
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    • 1997
  • It is important to build new irrigation facilities as a countermeasure against new water demand, however the effective use of existing facilities is rather advantageous economi cally and socially.Since many irrigation facilities were constructed before 1960's, the functions of them have been declined and rehabilitation of deteriorated facilities needs great expenses. To operate the irrigation facilities efficiently, the criteria for the maintenance and repair of irrigation facilities should be established according to the importance of structures. for the reasonable evaluation of the irrigation facilities, the Irrigation Facility Inquiry System(IFIS) was developed. The present status of the irrigation facilities are grouped by the type and scale of structures, and the characteristics of irrigation facilities under control of Farmland Improvement Association(FIA) were analysed.

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원격탐사 데이타의 정확도 향상을 위한 Bitemporal Classification 기법의 적용 (Application of Bitemporal Classification Technique for Accuracy Improvement of Remotely Sensed Data)

  • 안철호;안기원;윤상호;박민호
    • 한국측량학회지
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    • 제5권2호
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    • pp.24-33
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    • 1987
  • 본 논문은 원격탐사 Data를 이용한 분야에서 보다 효과적인 좌상처리 기법 및 보다 정확한 분류화상을 얻는 것을 목적으로 하고 있다. 이의 실행을 위해 여름 좌상과 겨울 화상을 합성한 토지이용 분류결과와 여름 화상만의 분류결과를 비교분석 하였다. 위의 분석결과로부터 Bitemporal Classification 기법과 $tan^{-1}$변환이 유효함을 알아내었다. 특히 Bitemporal Classification 기법을 적용함으로써 농경지를 논과 밭으로 구별하여 분류하는 것이 보다 가능하였다.

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설계강우의 지속시간 및 시간분포에 따른 배수개선 농경지 침수 영향 분석 (Effects of Duration and Time Distribution of Probability Rainfall on Paddy Fields Inundation)

  • 전상민;김귀훈;이현지;강기호;유승환;최진용;강문성
    • 한국농공학회논문집
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    • 제64권2호
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    • pp.47-55
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    • 2022
  • The objective of this study was to analyze the effect of the duration and time distribution of probability rainfall on farmland inundation for the paddy fields in the drainage improvement project site. In this study, eight drainage improvement project sites were selected for inundation modeling. Hourly rainfall data were collected, and 20- and 30-year frequency probability rainfalls were estimated for 14 different durations. Probability rainfalls were distributed using Intensity-Duration-Frequency (IDF) and Huff time distribution methods. Design floods were calculated for 48 hr and critical duration, and IDF time distribution and Huff time distribution were used for 48 hr duration and critical duration, respectively. Inundation modeling was carried out for each study district using 48 hr and critical duration rainfalls. The result showed that six of the eight districts had a larger flood discharge using the method of applying critical duration and Huff distribution. The results of inundation depth analysis showed similar trends to those of design flood calculations. However, the inundation durations showed different tendencies from the inundation depth. The IDF time distribution is a distribution in which most of the rainfall is concentrated at the beginning of rainfall, and the theoretical background is unclear. It is considered desirable to apply critical duration and Huff time distribution to agricultural production infrastructure design standards in consideration of uniformity with other design standards such as flood calculation standard guidelines.

고로폐광산 주변 농경지 토양 및 하천 퇴적토의 중금속 오염 분포 및 복원 대책 설계 (Distribution and remediation design of heavy metal contamination in farm-land soils and river deposits in the vicinity of the Goro abandoned mine)

  • 이민희;최정찬;김진원
    • 자원환경지질
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    • 제36권2호
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    • pp.89-101
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    • 2003
  • 경상북도 군위군에 위치하는 고로 폐아연광산의 광미 및 광폐석 유실에 의한 주변 농경지 토양 및 하천 퇴적토의 오염을 조사하였다. 폐광산하부에서부터 하천을 따라 직선길이 약 12 km 구간에서 퇴적토 및 토양을 표토와 심토로 나누어 채취하였으며, 토양시료에 대한 분석은 0.1N(비소의 경우만 만 HCl 약산 추출법인 토양오염공정시험법으로 실시하였다. 폐광산 하부 주 하천의 표층 퇴적토는 카드뮴과 납에 대하여 하천 상류 지역에서 토양오염우려기준치를 초과하였으며, 비소는 총 표토 시료 14개 중 6개(43%)에서 토양오염우려기준치를 초과하였고, 이중 4지점은 토양오염대책기준치를 초과하였다. 특히 폐광산과의 거리에 관계없이 하천 전체에 걸쳐 퇴적토의 표토들이 비소에 폭 넓게 오염되어있어서 이들에 대한 복원 대책이 시급한 것으로 나타났다. 폐광산 주변 농경지 토양 분석 결과 표토와 심토 모두 비소를 제외한 중금속의 오염은 토양오염우려기준치이하로 나타났으나, 비소의 경우 표토 시료 채취 8 지점 중 4지점에서 토양오염우려기준치를 초과하였으며, 이중 3지점에서 토양오염대책기준치를 초과함으로서 주변 농경지 토양의 표토도 비소로 심하게 오염되어있음을 알 수 있었다. 폐광산 하부 주 하천 수질 조사 결과, 폐광산 갱내수와 침전지 주변을 제외하고는 하천 수질은 모든 중금속에 대해 매우 낮은 것으로 나타나, 폐광산 주변의 토양오염은 하천수질에 의한 오염이기보다는 폐광산 주변에 적재된 폐광석과 광미들이 우기시 하천을 범람하며 유출되어 진행되었을 것으로 판단되었다. 폐광산 주변 지역의 오염 정도를 토양환경보전법에 명시된 오염 등급(Pollution Grade)으로 평가한 결과, 비소의 경우 토양오염우려기준 이상의 농도를 나타내는 농경지 토양과 하천퇴적토 지역이 많아, 향후 비소에 대한 토양 복원이 필요한 것으로 나타났다. 오염분석 결과와 현장 농경지 조사를 바탕으로 복원이 필요한 하천 퇴적토 및 농경지 토양 면적을 산정하였으며, 하천 퇴적토의 경우 토양세척법을 이용하여 비소와 납을 제거하고, 농경지 토양의 경우 석회를 첨가한 반전객토법을 실시하는 토양 복원 대책을 수립하였다.

산림의 토사유출 방지기능에 관한 연구 (Study on Quantifying Erosion Control Function of Forest)

  • 윤호중;이창우;정용호
    • 한국환경복원기술학회지
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    • 제10권1호
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    • pp.36-43
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    • 2007
  • This study was carried out to know how erosion control function of forests varies as forests develop in watersheds. The erosion control function among the forest welfare functions can be estimated by comparing sediment yield in stocked with non-stocked area. Sediment yield of reservoirs in stocked area were collected from farmland improvement associations. The sediment yields in non-stocked area were using USLE (Universal Soil Loss Equation) in the same reservoirs. Forests' erosion control function estimated by differences of the sediment yield between stocked and non-stocked area was static model because of no consideration on forest aging. Dynamic model was developed to consider a forest stand age. The model comprises the relationship between average forest age in watershed and sediment yield. The amount of sediment yield was different depending mother rocks. It decreased exponentially according to the forest's grow up. In case of igneous rock, the volume of sediment yield $Y_{ig}=1.4431e\;^{0.023x}$(x=average forest age), metamorphic rock $Y_{me}=4.7115e\;^{0.0694x}$, and sedimentary rock $Y_{se}=1.2808e\;^{0.028x}$.

DeNitrification-DeComposition (DNDC) Improvement through Model Coupling and Sub-model Development Considering Agricultural Land Use and Future Climate Change

  • Min, Hyungi;Hwang, Wonjae;Kim, Min-Suk;Kim, Jeong-Gyu
    • 환경생물
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    • 제35권1호
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    • pp.37-46
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    • 2017
  • Climate change is the biggest concern of the $21^{st}$ century. Greenhouse gas (GHG) emissions from various sectors are attracting attention as a cause of climate change. The DeNitrification-DeComposition (DNDC) model simulates GHG emissions from cropland. To study future GHG emissions using this simulation model, various factors that could change in future need to be considered. Because most problems are from the agricultural sector, DNDC would be unable to solve the factor-changing problem itself. Hence, it is necessary to link DNDC with separate models that simulate each element. Climate change is predicted to cause a variety of environmental disasters in the future, having a significant impact on the agricultural environment. In the process of human adaptation to environmental change, the distribution and management methods of farmland will also change greatly. In this study, we introduce some drawbacks of DNDC in considering future changes, and present other existing models that can rectify the same. We further propose some combinations with models and development sub-models.

수리시설물 최적관리 시스템 개발 (Development of Optimum Management System for Irrigation Facilities)

  • 김선주;윤춘경;박성열;이광야
    • 한국농공학회지
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    • 제39권2호
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    • pp.86-94
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    • 1997
  • For the efficient operation and maintenance( 0 & M), irrigation facilities were graded on the basis of their indices related to the 0 & M condition and the characteristics of reservoirs managed by Farmland Improvement Association(FIA) were examined. The results obtained are summarized as follows : 1. Characteristics of reservoirs include effective storage capacity, irrigation area, basin area, height and length of bank. Each characteristic is scored by the principle component analysis method. Variables which compose one index are categorized on the basis of their unit and each variable is scored so that the score of each unit sums to 100 for each index. 2. The Optimum MAnagement System of Irrigation Facilities(OMASIF) for Pyoungtaek area was developed by connecting general data of the irrigation facilities to image data. The database system is divided into three tables; LookUp Table, Facility Table, and Image Table. Image Table is again divided into five sub-tables, Image Table, Construction Cost Table, Acreage Table, 0 & M Cost Table, and Specification Table. 3. The evaluating criteria for the 0 & M of irrigation facilities can be established using the OMASIF. Irrigation facilities evaluated as poor state by the criteria should be repaired.

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