• Title/Summary/Keyword: Irrigation Facilities

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An Analysis on the Prospects and Realities of Local Governments' Project Promotions according to the Changes in Financial Policy of Agricultural Infrastructure Improvement Projects (농업기반정비사업의 재정정책변화에 따른 지방자치단체의 사업추진 전망 및 실태 분석)

  • Bae, Seung-Jong;Kim, Dae-Sik;Kim, Soo-Jin;Kim, Seong-Pil
    • Journal of The Korean Society of Agricultural Engineers
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    • v.61 no.5
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    • pp.49-55
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    • 2019
  • This study attempted to investigate the changes in the perception of local government officials about agricultural infrastructure improvement projects due to the financial policy changes. A total of 141 local government officials were surveyed on the priority, the current status of the agricultural infrastructure improvement projects. Irrigation facilities renovation project and Small drainage improvement project had generally high priority, while Support project of cultivation basis for upland crops in paddy, Large scale land readjustment project, and Upland infrastructure improvement project had low priorities. After the introduction of the block grant system, agricultural infrastructure improvement projects had often been conducted by collecting opinions from local residents. The officials in charge of local governments recognized that the agricultural infrastructure improvement projects were reduced due to lack of financial resources and project potential sites. In response to the changes in the agricultural infrastructure improvement projects, most of the surveys showed that the influence of cities and provinces was strengthened. In addition, respondents most needed to improve the subsidy rate and there were a large number of cases requiring differential support to meet the characteristics of the local government. Therefore, it will be necessary to present a new perspective on the agricultural infrastructure improvement projects and to suggest differentiated projects for each regions.

Simulation of Water Redistribution for the Resized Beneficiary Area of a Large Scale Agricultural Reservoir (대규모 농업용저수지 수혜면적 변화에 따른 효율적 용수재분배 모의)

  • Sung, Muhong;Jeung, Minhyuk;Beom, Jina;Park, Taesun;Lee, Jaenam;Jung, Hyoungmo;Kim, Youngjoo;Yoo, Seunghwan;Yoon, Kwangsik
    • Journal of The Korean Society of Agricultural Engineers
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    • v.63 no.3
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    • pp.1-12
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    • 2021
  • Optimal water management is to efficiently and equally supply an appropriate amount of water by using irrigation facilities. Therefore, it is necessary to evaluate water supply capacity through distribution simulation between the designed distribution rate and re-distributed rate according to the changed farming conditions. In this study, we recalculated the agricultural water supply amount of Geumcheon main canal, which beneficiary area was reduced due to the development of Gwangju-Jeonnam innovation city, and we constructed a canal network using the SWMM model to simulate the change in supply rate of each main canal according to the re-distributed rate. Even though the supply amount of the Geumcheon main canal was reduced from 1.20 m3/s to 0.90 m3/s, it showed a similar supply rate to the current, and the reduced quantity could be supplied to the rest of the main canal. As a result, the arrival time at the ends of all main canal, except for the Geumcheon main canal, decreased from 1 to 3 hours, and the supply rate increased from 4 to 17.0% at the main canal located at the end of the beneficiary area of Naju reservoir.

Research for the Selection of Agricultural environment in Papua New Guinea (파푸아뉴기니 농업 환경 기초조사)

  • Chang, Kwang Jin;Koo, Hyun Jung;Choi, Jang-Nam
    • Journal of Practical Agriculture & Fisheries Research
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    • v.17 no.1
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    • pp.183-204
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    • 2015
  • Papua New Guinea, birthplace of the South Pacific, is a natural nation which have potential of increasing crops output because it has optimum condition for crop growth as tropical rain forest climate under hot and humid climate. Farming village of Papua New Guinea want to produce crops for create income beyond the self-sufficiency. It needs the technological transfer such as irrigation facilities and understanding of agricultural weather condition for good crops production. In particular, it needs a improvement through pH, EC, ORP for make optimum soil condition and it need the standardization production and farm products what the consumer wants. Internationally technical cooperation is needed for agricultural development of Papua New Guinea and maintenance of international cooperation will help for economic development between the two countries. In particular, basic environment research for agricultural development of Papua New Guinea is expected to play a larger role of technical cooperation of agriculture.

A plan on construction of irrigation facilities for agroforestry in DPRK (북한의 임농복합경영을 위한 관개시설 구축방안)

  • JI, Dallim;Kim, Kwanho;Choi, Kangwon
    • Proceedings of the Korea Water Resources Association Conference
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    • 2020.06a
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    • pp.176-176
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    • 2020
  • 본 연구는 북한의 식량난과 산림복구의 일환으로 추진되고 있는 임농복합경영의 현주소를 파악하고 북한의 임농복합경영이 가지는 대표적인 문제점이자 한국농어촌공사에서 접근할 수 있는 기술분야인 관개시설의 구축방안에 초점을 두어 해결방안을 모색하고자 하였다. 특히 임농복합경영 대상지의 경우, 산지를 개간하여 경사도 30° 이하의 경사지를 이용하고 있기 때문에 이 경우 토성이 사질 혹은 식질이 많아 보수력이 평지에 비해 크게 떨어지고 유효수분이 있는 토심도 낮기 때문에 가뭄 및 한발피해에 취약하다. 한발 시 관개를 위해 필요한 저수규모를 설정하기 위해서 강릉 안반데기와 영월 조전지구에서 산정한 단위용수량을 근거로 저수규모를 결정하였다. 계곡물이나 빗물은 자연흐름식 등의 방법으로 동력을 사용하지 않고도 집수할 수 있지만 하천이나 지하수를 퍼올려야 할 경우는 동력이 필수적으로 요구되기 때문에 대체에너지 활용을 고려하는 것이 필요하다. 따라서 임농복합경영을 위한 관개분야에 대한 대책으로 복합 취수원에 따라 하천, 지하수, 계곡, 빗물 등으로 구분하고 그에 따른 주요시설과 사업비를 산출하였다. 북한에서는 임농복합경영을 위한 경제성이 있는 규모로 50ha를 제안하고 있어 50ha규모의 임농복합경영 관수시설 부분에 대한 제안과 북한이 추진하고 있는 임농복합경영은 대부분 외부 지원에 의존하고 있기 때문에 지원의 용이성 및 가능성을 고려하여 10ha의 규모 역시 제안하였다. 50ha의 규모일 때 주요시설은 취수보, 양수장, 암반관정, 저수조, 물탱크, 송수관로, 급수관로, 급수대, 팜폰드, 둠벙, 배수로, 농로 등이며 수원공은 하천, 계곡, 지하수, 빗물이다. 동력은 태양광, 풍력으로 저수규모는 저수조에 2,000톤(40%여유수량), 팜폰드 및 둠벙에 800톤(60%여유수량)을 확보하였다. 10ha의 규모일 때 주요시설은 저수조, 물탱크, 급수관로, 팜폰드, 둠벙, 배수로, 농도 등이며 수원공은 빗물이다. 동력은 경사차를 이용한 자연흐름식 집수 방식으로 무동력이다. 본 연구는 향후 남북관계 개선시 우선 지원사업의 하나로 활용이 가능하다는데 의의가 있다. 50ha의 규모에 제시된 동인 태양광 및 풍력의 경우도 지속적인 유지관리 비용이 들지 않지만 초기 설치비가 높기 때문에 경제성이 있는 관개시스템을 개발할 필요가 있다.

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Development and Application of Water Balance Network Model in Agricultural Watershed (농업용수 유역 물수지 분석 모델 개발 및 적용)

  • Yoon, Dong-Hyun;Nam, Won-Ho;Koh, Bo-Sung;Kim, Kyung-Mo;Jo, Young-Jun;Park, Jin-Hyeon
    • Journal of The Korean Society of Agricultural Engineers
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    • v.66 no.3
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    • pp.39-51
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    • 2024
  • To effectively implement the integrated water management policy outlined in the National Water Management Act, it is essential to analyze agricultural water supply and demand at both basin and water district levels. Currently, agricultural water is primarily distributed through open canal systems and controlled by floodgates, yet the utilization-to-supply ratio remains at a mere 48%. In the case of agricultural water, when analyzing water balance through existing national basin water resource models (K-WEAP, K-MODISM), distortion of supply and regression occurs due to calculation of regression rate based on the concept of net water consumption. In addition, by simplifying the complex and diverse agricultural water supply system within the basin into a single virtual reservoir, it is difficult to analyze the surplus or shortage of agricultural water for each field within the basin. There are limitations in reflecting the characteristics and actual sites of rural water areas, such as inconsistencies with river and reservoir supply priority sites. This study focuses on the development of a model aimed at improving the deficiencies of current water balance analysis methods. The developed model aims to provide standardized water balance analysis nationwide, with initial application to the Anseo standard watershed. Utilizing data from 32 facilities within the standard watershed, the study conducted water balance analysis through watershed linkage, highlighting differences and improvements compared to existing methods.

Water yield estimation of the Bagmati basin of Nepal using GIS based InVEST model (GIS기반 InVEST모형을 이용한 네팔 Bagmati유역의 물생산량 산정)

  • Bastola, Shiksha;Seong, Yeon Jeong;Lee, Sang Hyup;Jung, Younghun
    • Journal of Korea Water Resources Association
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    • v.52 no.9
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    • pp.637-645
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    • 2019
  • Among various ecosystem services provided by the basin, this study deals with water yield (WY) estimation in the Bagmati basin of Nepal. Maps of where water used for different facilities like water supply, irrigation, hydropower etc. are generated helps planning and management of facilities. These maps also help to avoid unintended impacts on provision and production of services. Several studies have focused on the provision of ecosystem services (ES) on the basin. Most of the studies have are primarily focused on carbon storage and drinking water supply. Meanwhile, none of the studies has specifically highlighted water yield distribution on sub-basin scale and as per land use types in the Bagmati basin of Nepal. Thus, this study was originated with an aim to compute the total WY of the basin along with computation on a sub-basin scale and to study the WY capacity of different landuse types of the basin. For the study, InVEST water yield model, a popular model for ecosystem service assessment based on Budyko hydrological method is used along with ArcGIS. The result shows water yield per hectare is highest on sub-basin 5 ($15216.32m^3/ha$) and lowest on sub-basin 6 ($10847.15m^3/ha$). Likewise, built-up landuse has highest WY capacity followed by grassland and agricultural area. The sub-basin wise and LULC specific WY estimations are expected to provide scenarios for development of interrelated services on local scales. Also, these estimations are expected to promote sustainable land use policies and interrelated water management services.

Constructed Wetlands in Treating Domestic and Industrial Wastewater in India: A Review (인도의 가정 및 산업 폐수 처리를 위한 인공습지: 총론)

  • Farheen, K.S.;Reyes, N.J.;Kim, L.H.
    • Journal of Wetlands Research
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    • v.23 no.3
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    • pp.242-251
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    • 2021
  • Surface water pollution is a serious environmental problem in developing countries, like India, due to the unregulated discharge of untreated wastewater. To overcome this, the constructed wetlands (CWs) have been proven to be an efficient technology for wastewater treatment. In this study, different existing and experimental facilities were reviewed to be able to determine the current status of constructed wetlands in India. Based on the collected data from published literature, industrial wastewater contained the highest average chemical oxygen demand (COD), biochemical oxygen demand (BOD). In terms of total nitrogen (TN), Total phosphorous (TP), the lowest concentration was found on domestic wastewater. Vertical flow constructed wetlands (VFCW) and Horizontal flow constructed wetland (HFCW) were more effective in removing TSS, BOD, TP in domestic and industrial wastewater, whereas hybrid constructed wetlands (HCW) showed the highest removal for COD. The use of constructed wetlands as advanced wastewater treatment facilities in India yielded better water quality. The treatment of wastewater using constructed wetlands also enabled further reuse of wastewater for irrigation and other agricultural purposes. Overall, this study can be beneficial in evaluating and promoting the use of constructed wetlands in India.

Assessment of Future Climate and Land Use Change Impact on Hydrology and Stream Water Quality of Anseongcheon Watershed Using SWAT Model (I) (SWAT 모형을 이용한 미래 기후변화 및 토지이용 변화에 따른 안성천 유역 수문 - 수질 변화 분석 (I))

  • Lee, Yong Jun;Park, Jong Yoon;Park, Min Ji;Kim, Seong Joon
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.28 no.6B
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    • pp.653-663
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    • 2008
  • The purpose of this study is to establish a database of weather, hydrology, point source pollution management, reservoir release and tillage management for SWAT model evaluation of Anseongcheon watershed ($370.1km^2$, the upstream of Gongdo water level gauging station), and to use them for the following research of future climate and land use change impact on streamflow and stream water quality. It is expected that the database can achieve the practical analysis of current watershed hydrologic and environmental condition. The model calibration and validation were conducted using the constructed database. The model results showed that the tillage management affected the temporal shift of pollutant loads, and changed the flow pattern of pollutant transport through cultivation area. It was identified that the April and May irrigation water supply from the agricultural reservoir also affected the streamflow of downstream. The data application of pollutants treatment facilities and tillage management of cultivation area showed about 10% difference in the simulation results of stream water quality. The data establishment of agricultural reservoir operation, the tillage management of cultivated area within the watershed and the attributes inclusion of pollutants treatment facilities were proved to be important in SWAT model evaluation. The results of model setup in this study are expected for more reliable model application in the following research of future climate and land use change impact on hydrology and stream water quality of the study watershed.

Regional Characteristics of $Che{\breve{o}}n$ during the Late $Chos{\breve{o}}n$ Era as Seen through the <$Y{\breve{o}}jitos{\breve{o}}$> ("여지도서"를 이용한 조선후기 제언의 지역적 특성 연구)

  • Jung, Chi-Young
    • Journal of the Korean Geographical Society
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    • v.43 no.4
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    • pp.620-637
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    • 2008
  • $Che{\breve{o}}n$ (提堰) refers to the irrigation facilities used to provide water to the land on which rice is farmed. As the maintenance of $Che{\breve{o}}n$ required great amounts of capital, labor, and technology, the construction and maintenance of such facilities was controlled by the government. $Che{\breve{o}}n$ was perceived as being of particular importance during the $Che{\breve{o}}n$ era, which adopted agriculture as the basis of state management. Therefore, the management of $Che{\breve{o}}n$ was considered to be one of the main state policies. This is why $Che{\breve{o}}n$-related records can often be found in the historical documents written during the $Che{\breve{o}}n$ era. As such historical documents in the form of Jiriji (地理誌, geographical descriptions) include detailed descriptions of the number, size, and location of $Che{\breve{o}}n$ in individual counties($kunby{\breve{o}}n$), these help to conduct comprehensive analysis of the state of $Che{\breve{o}}n$ during the $Che{\breve{o}}n$ era. Based on these facts, this study attempts to establish a database of the $Che{\breve{o}}n$-related contents included in the <$Y{\breve{o}}jitos{\breve{o}}$(與地圖書)> published during the latter period of $Che{\breve{o}}n$, and using the established database, to identify the regional characteristics of $Che{\breve{o}}n$. More precisely, by analyzing the state of the distribution of $Che{\breve{o}}n$ at the national level, an effort was made to review the regional characteristics of $Che{\breve{o}}n$ in terms of their distribution and of the natural geographical conditions found in the locales where $Che{\breve{o}}n$ were located, as well as of the interrelation between such $Che{\breve{o}}n$ and socioeconomic factors such as the scale of the population and the size of the area under cultivation. Other factors which were delved into included matters related to the size of $Che{\breve{o}}n$ such as their perimeter, length, and scale of the area which they irrigated, the characteristics of the locales where $Che{\breve{o}}n$ were located, and the regional differences in the characteristics of $Che{\breve{o}}n$.

Economic Analysis of Upland Crop Irrigation Between Individual and Collective Well Water Supply (밭 공간분포와 개별·집단관정 이용을 고려한 밭용수 공급 경제성 분석)

  • JANG, Seongju;PARK, Jinseok;SHIN, Hyung-Jin;KIM, Hyungjoon;HONG, Rokgi;SONG, Inhong
    • Journal of the Korean Association of Geographic Information Studies
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    • v.23 no.3
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    • pp.192-207
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    • 2020
  • Profitability of upland crops is better than paddy crops and proportion of upland is increasing. However, there is a lack of infrastructures for upland irrigation. The object of this study were to develop water supply scenarios using individual and collective agricultural wells to evaluate economic feasibility to consider geographical analysis of upland farms and water supply facilities. Cheongyang, Dangjin, Yesan, and Goesan were selected as study areas where four different crops of red pepper, chinese cabbage, apple, and bean, respectively, were mainly produced in Chungcheong province. As a result, B/C ratio was estimated as 1.49, 1.36, 1.90, and 0.71 in using individual wells scenario, and 1.45, 1.20, 1.91, and 0.65 in using collective wells scenario for red pepper, chinese cabbage, apple, and bean. It turned out that change of price effected on economic feasibility a lot for crops with low production income. As a result of evaluating economic feasibility by number of plots for developing collective well, there was no effect of economy of scale for red pepper and chinese cabbage. In case of collectivizating more than 20 upland plots, effect of economy of scale appeared for apple and bean. In conclusion, development of water using high value crops including red pepper and apple, and effect of collective well requires additory analysis of .spatial distribution of farms.