• 제목/요약/키워드: Agricultural land and water development project

검색결과 26건 처리시간 0.033초

재해분석을 통한 농업토목공사의 공종별 위험성 평가 (Risk Assessment of Agricultural Construction Works using Accident Analysis and Analytic Hierarchy Process)

  • 양영진;오수훈;노재경
    • 한국농공학회논문집
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    • 제60권4호
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    • pp.15-25
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    • 2018
  • The accident risk at the construction workplace associated with agricultural engineering is comparatively higher than those of other fields due mainly to its complex work types and processes. Agricultural engineering deals with a variety of agricultural infrastructures from irrigation and drainage facilities to giant-scale coastal reclamation land infrastructures. The characteristics that most agricultural projects have conducted on a small-scale even worsen the situation drawing low attentions to risk management. Therefore, systematical risk assessment that focuses on details of agricultural construction work process is required in order to enhance safety management capacity and to prevent repetitive accidents ultimately. This study aims to categorize construction work types and processes of agricultural construction works, and to quantitatively assess the accident risk of them based on accident analysis. Regarding classification of construction works, actual 827 accident cases were thoroughly reviewed and coded by their construction site, facility and work type, project scale and so on. Most accidents (71.8 % of total cases) occurred in small-scale construction workplaces with less than 5 billion Korean won project budget. And those accidents related to agricultural infrastructure project (37.4%) and agricultural water development project (22.4%). In terms of work types, accidents frequently took place in form-work followed by pipe installation work, steel bar work and concrete work. The potential risks were compared with actual outbreak of accidents based on Analytic Hierarchy Process (AHP). The results show that the potential conditions of accident expected to be took place is somewhat different from the actual conditions where accidents actually happened. This implicates that risk management manuals or education needs to be adjusted by reflecting unexpected circumstances. Overall, this study is meaningful in that the results could be foundations as to strengthen risk management capacity for agricultural engineering projects.

Development of Hydrologic Simulation Model for the Prediction of Long-Term Runoff from a Small Watershed

  • 고덕구;권순국
    • 한국농공학회지
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    • 제32권E호
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    • pp.33-46
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    • 1990
  • Abstract Over 700/0 of the rural land area in Korea is mountainous and small watersheds provide most of the water resources for agricutural use. To provide an appropriate tool for the agricultural water resource development project, SNUA2, a mathematical model for simulating the physical processes governing the precipitation-runoff relationships and predicting the storm and long-term runoff quantities from the small mountainous watersheds was developed. The hydrological characteristics of small mountainous watersheds were reviewed to select appropriate theories for the simulation of the runoff processes, and a deterministic and distributed model was developed. In this, subsurface flows are routed by solving Richard's two dimensional equation, the dynamics of soil moisture contents are simulated by the consideration of phenological factors of canopy plants and surface flows are routed by solving the kinematic wave theory by numerical analysis. As a result of an application test of the model to the Sanglim watershed, peak flow rates of storm runoff were over-estimated by up to 184.2%. The occurence time of peak flow and total runoff volume of storm runoffs simulated were consistent with observed values and the annual runoff volumes were simulated in the error range of less than 5.8%.

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Modeling water supply and demand under changing climate and socio-economic growth over Gilgit-Baltistan of Pakistan using WEAP

  • Mehboob, Muhammad Shafqat;Panda, Manas Ranjan;Kim, Yeonjoo
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2020년도 학술발표회
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    • pp.116-116
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    • 2020
  • Gilgit-Baltistan (GB) is a highly mountainous and remote region covering 45% of Upper Indus Basin (UIB) with around 1.8 million population is vulnerable to climate change and socio-economic growth makes water resources management and planning more complex. To understand the water scarcity in the region this study is carried out to project water supply and demand for agricultural and domestic sector under various climate-socio-economic scenarios in five sub catchments of GB i.e., Astore, Gilgit, Hunza, Shigar and Shyok for a period of 2015 to 2050 using Water Evaluation and Planning (WEAP) model. For climate change scenario ensembled mean of three global climate models (GCMs) was used under three different Representative Concentration Pathway (RCP) scenarios (RCP2.6, RCP6.0 and RCP8.5). The Shared Socioeconomic Pathways (SSPs) and agricultural Land Development (LD) scenarios were combined with climate scenarios to develop climate-socio-economic scenario. Our results indicate that the climate change and socio-economic growth would create a gap between supply and demand of water in the region, with socio-economic growth (e.g. agricultural and population) as dominant external factor that would reduce food production and increase poverty level in the region. Among five catchments only Astore and Gilgit will face shortfall of water while Shyoke would face shortfall of water only under agricultural growth scenarios. We also observed that the shortfall of water in response to climate-socio-economic scenarios is totally different over two water deficient catchments due to its demography and geography. Finally, to help policy makers in developing regional water resources and management policies we classified five sub catchments of UIB according to its water deficiency level.

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지속가능한 유역관리를 위한 자연지역의 시공간적 특성 분석 -일본 아라가와 유역을 대상으로- (Spatio-Temporal Analysis of Natural Area for Sustainable Watershed Management in the Ara River Basin, Japan)

  • 이승은;모리오까 토오루
    • 한국환경과학회지
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    • 제15권5호
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    • pp.461-469
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    • 2006
  • As a frontier of Sustainable Basin Research Initiative, we commenced a scenario-driven planning and evaluation research project which is to identify the strategic policy scenarios. As a part of the project, this study attempts to estimate the ecological impacts of land cover changes using landscape indices at the whole basin level. We analyzed spatio-temporal characteristics of natural area including forest, agricultural land, water area, barren which play an important role in nature-friendly sustainable watershed management. The results of analysis shelved that the size and diversity of natural area have been reduced, while patch number and isolation have been increased in proportion to urbanization in 1974, 1995 and four future scenarios in the Ara River Basin. Also, we estimated that the natural area could be conserved to some degree in the SD or DE scenarios with a concept of environment-friendly development and lifestyle. Various strategic environment policies may be evaluated and designed on the basis of the method, that is, scenario approach and landscape ecological analysis suggested in this study.

영산강의 장기유출량에 관한 고찰 (An Analysis on the Long-Term Runoff of the Yong San River)

  • 한상욱;정종수
    • 한국농공학회지
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    • 제18권3호
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    • pp.4184-4194
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    • 1976
  • Located in the southwestern part of Korea, the Yong San Gang river flows generally northeast to southwest, and because of the specific location, topography and climate, the basin area is subject to recurrent drought and flood damages. To eliminate the cause of such damages and ensure an increase in the farm income by means of effective irrigation supply and increased cropping intensity, efforts are being made to speed up implementation of an integrated agricultural development project which would include construction. of an estuary dam and irrigation facilities as well as land development and tidal reclarnation. In formulating a basin development project plan, it is necessary to study a series of long-term runoff data. The catchment area at the proposed estuary damsite is 3,471$\textrm{km}^2$ with the total length of the river channel up to this point reaching 138km. An analysis of runoff in this area was carried out. Rainfall was estimated by the Thiessen Network based on records available from 15 of the rainfall observation stations within the area. Out of the 15 stations, Kwang Ju and Mok Po stations were keeping long-term precipitation records exceeding some 60 years while the others were in possession of only 5-10 years records. The long-term records kept by those stations located in the center of the basin were used as base records and records kept by the remaining stations were supplemented using the coefficient of correlation between the records kept by the base stations and the remainder. The analyses indicate that the average annual rainfall measured at Kwang Ju during 1940-1972 (33 years) amounts to 1,262mm and the areal rainfall amounts to 1,236mm. For the purpose of runoff analysis, 7 observatories, were set up in the middle and lower reaches of the river and periodic measurements made by these stations permitted analysis of water levels and river flows. In particular, the long-term data available from Na Ju station significantly contributed to the analysis. The analysis, made by 4-stage Tank method, shows that the average annual runoff during 1940-1972 amounts to 2,189 million ㎥ at the runoff rate of 51%. As for the amount of monthly runoff, the maximum is 484.2 million ㎥ in July while the minimum is 48.3 million ㎥ in January.

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한국의 지역개발과 댐건설 (Regional Development And Dam Construction in Korea)

  • 안경모
    • 물과 미래
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    • 제9권1호
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    • pp.38-42
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    • 1976
  • Because of differences in thoughts and ideology, our country, Korea has been deprived of national unity for some thirty years of time and tide. To achieve peaceful unification, the cultivation of national strength is of paramount importance. This national strength is also essential if Korea is to take rightful place in the international societies and to have the confidence of these societies. However, national strength can never be achieved in a short time. The fundamental elements in economic development that are directly conducive to the cultivation of national strength can be said to lie in -a stable political system, -exertion of powerful leadership, -cultivation of a spirit of diligence, self-help and cooperation, -modernization of human brain power, and -establishment of a scientific and well planned economic policy and strong enforcement of this policy. Our country, Korea, has attained brilliant economic development in the past 15 years under the strong leadership of president Park Chung Hee. However, there are still many problems to be solved. A few of them are: -housing and home problems, -increasing demand for employment, -increasing demand for staple food and -the need to improve international balance of payment. Solution of the above mentioned problems requires step by step scientific development of each sector and region of our contry. As a spearhead project in regional development, the Saemaul Campaign or new village movement can be cited. The campaign is now spreading throughout the country like a grass fire. However, such campaigns need considerable encouragement and support and the means for the desired development must be provided if the regional and sectoral development program is to sucdceed. The construction of large multipurpose dams in major river basin plays significant role in all aspects of national, regional and sectoral development. It ensures that the water resource, for which there is no substitute, is retained and utilized for irrigation of agricultural areas, production of power for industry, provision of water for domestic and industrial uses and control of river water. Water is the very essence of life and we must conserve and utilize what we have for the betterment of our peoples and their heir. The regional and social impact of construction of a large dam is enormous. It is intended to, and does, dras tically improve the "without-project" socio-economic conditions. A good example of this is the Soyanggang multipurpose dam. This project will significantly contribute to our national strength by utilizing the stored water for the benefit of human life and relief of flood and drought damages. Annual average precipitation in Korea is 1160mm, a comparatively abundant amount. The catchment areas of the Han River, Keum River, and Youngsan River are $62,755\textrm{km}^2$, accounting for 64% of the national total. Approximately 62% of the national population inhabits in this area, and 67% of the national gross product comes from the area. The annual population growth rate of the country is currently estimated at 1.7%, and every year the population growth in urban area increases at a rising rate. The population of Seoul, Pusan, and Taegu, the three major cities in Korea, is equal to one third of our national total. According to the census conducted on October 1, 1975, the population in the urban areas has increased by 384,000, whereas that in rural areas has decreased by 59,000,000 in the past five years. The composition of population between urban and rural areas varied from 41%~59% in 1959 to 48%~52% in 1975. To mitigate this treand towards concentration of population in urban areas, employment opportunities must be provided in regional and rural areas. However, heavy and chemical industries, which mitigate production and employment problems at the same time, must have abundant water and energy. Also increase in staple food production cannot be attained without water. At this point in time, when water demand is rapidly growing, it is essential for the country to provide as much a reservoir capacity as possible to capture the monsoon rainfall, which concentarated in the rainy seaon from June to Septesmber, and conserve the water for year round use. The floods, which at one time we called "the devil" have now become a source of immense benefit to Korea. Let me explain the topographic condition in Korea. In northern and eastern areas we have high mountains and rugged country. Our rivers originate in these mountains and flow in a general southerly or westerly direction throught ancient plains. These plains were formed by progressive deposition of sediments from the mountains and provide our country with large areas of fertile land, emminently suited to settlement and irrigated agricultural development. It is, therefore, quite natural that these areas should become the polar point for our regional development program. Hower, we are fortunate in that we have an additional area or areas, which can be used for agricultural production and settlement of our peoples, particularly those peoples who may be displaced by the formation of our reservoirs. I am speaking of the tidelands along the western and southern coasts. The other day the Ministry of Agriculture and Fishery informed the public of a tideland reclamation of which 400,000 hectares will be used for growing rice as part of our national food self-sufficiency programme. Now, again, we arrive at the need for water, as without it we cannot realize this ambitious programme. And again we need those dams to provide it. As I mentioned before, dams not only provide us with essential water for agriculture, domestic and industrial use, but provide us with electrical energy, as it is generally extremely economical to use the water being release for the former purposes to drive turbines and generators. At the present time we have 13 hydro-electric power plants with an installed capacity of 711,000 kilowatts equal to 16% of our national total. There are about 110 potential dams ites in the country, which could yield about 2,300,000 kilowatts of hydro-electric power. There are about 54 sites suitable for pumped storage which could produce a further 38,600,000 kilowatts of power. All available if we carefully develop our water resources. To summarize, water resource development is essential to the regional development program and the welfare of our people, it must proceed hand-in-hand with other aspects of regional development such as land impovement, high way extension, development of our forests, erosion control, and develop ment of heavy and chemical industries. Through the successful implementation of such an integrated regional development program, we can look forward to a period of national strength, and due recognition of our country by the worlds societies.

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사막화방지(沙漠化防止) 및 방사기술개발(防沙技術開發)에 관한 연구(硏究)(III) - 중국(中國)의 황막사지(荒漠沙地) 녹화기술분석(綠化技術分析) - (Studies on the Desertification Combating and Sand Industry Development(III) - Revegetation and Soil Conservation Technology in Desertification-affected Sandy Land -)

  • 우보명;이경준;최형태;이상호;박주원
    • 한국산림과학회지
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    • 제90권1호
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    • pp.90-104
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    • 2001
  • 이 연구는 지난 3년간 북경임업대학교와 공동연구과제로 중국의 사막화방지 및 방사기술개발을 위한 연구의 일환으로 사막화현황 및 녹화기술수준조사 및 평가를 위하여 수행되었으며, 특히 본고에서는 중국의 황막사지에 대한 녹화기술을 분석하고자 하였다. 사막화지역 식생분포의 일반적인 특징은 부분적으로 집중된 식생분포, 즉 사막의 저지대 또는 분지의 낮은 곳의 사구에 있는 사막식물, 염수호 주변의 내염성식물, 담수 염수호와 하천연안의 포플러 및 위성류의 군생, 사력퇴적지(고비)의 사퇴식생, 하천선상지의 초생지 및 오아시스(녹주(綠洲))숲 등이다. 일반적으로 사막화지역에는 중국식물명(中國植物名)으로 정류(檉柳)(홍류(紅柳))(Tamarix chinensis Lour.), 사사(梭梭)(Haloxylon ammodendron Bunge.), 사괴조(沙拐棗)(Calligonum Spp.), 호루(胡楊)(Populus euphratica Oliver.), 사조(沙棗)(Elaeagnus angustifolia L.), 유(楡)백유(白楡)(Ulmus pumila L.), 류류(柳類)(Salix spp.), 암황시(岩黃蓍)(Hedysarum spp.), 금계아(錦鷄兒)(Caragana spp.), 문관과(文冠果)(Xanthoceras sorbifolia Bunge.), 백자(白刺)(Nitraria tangutorum Bobr.), 호기자(胡技子)(Lespedeza bicolor), 낙타자(駱駝刺)(Alhagi sparsifolia Shap.), 자산감(刺山柑)(Capparis spinosa L.), 사호(沙蒿)(Artemisia arenaria DC.) 등이 널리 분포하며, 이와 같은 사막화지역 자생식물에 관한 연구가 더욱 필요한 상황에 있다. 풍식지역에서는 합리적인 경작체계(지역계획, 방풍림체계 및 오아시스보호체계, 관개수로네트워크설치, 광대한 농지관리기술 등), 식물자원의 합리적 이용기술(연료림, 약용식물, 방목, 초지관리 등), 수자원이용(유역계획 및 관리, 수로건설, 절수관개기법 등), 방풍림조성, 인구증가의 조절, 농용림 연료목 사료증산기술 등에 관해서, 그리고 수식지역에서는 합리적인 토지이용기술, 식생이용기술, 공학적기술, 농작물보호기술 개발 등에 관한 시험연구사업이 중점적으로 추진되고 있다. 또한, 사막화지역에서의 염성토양 알카리토양개량을 위한 수리적(관개, 배수, 세탈, 수도재배 등), 농업적(토지정리, 경작, 시비, 파종, 윤작, 혼작, 객토 등), 생물적(내염성 작물 및 녹비의 재배, 조림 등) 방법 등에 관한 시험연구도 활발하게 추진되고 있으며, 이와 같은 사막화지역의 녹화사업에 국제적인 협력을 절실하게 요망하고 있다.

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농업수리시설과 소수로굴착용 Trencher V형의 개발에 대하여 (Resear cher & Coordinator, Canal Reseach & Development, japan)

  • 영목청
    • 한국농공학회지
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    • 제21권2호
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    • pp.28-36
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    • 1979
  • One of most important problems in the Monsoon Asia today is the production of rice paddy to meet the needs of the ever increasing population. Diversemeans are being employed to meet this demand, both by increasing productivity of existing farm land and by bringing further areas into cultivation. The primary step in either field is to ensure that there is sufficient moisture in the soil to suit the paddy, and at the same this means that excess moisture has to be drained off the land, while in others irrigat ion has to be employed to bring sufficient water to an area. In view of the fact that the project comprises a huge amount of earthwork, it can be carried out by extensive use of construction machinery in order to shorten the period. As farm ditch has a comparatively small section with shallow cutting depth, inaddition, there is lack of access road in the field, the excavation equipment with bulldozer or tracter-shovel (backhoe) type are not applicable because there are mostly adapted for the excavation of deep and wide section. Mini-backhoe with its bucket width not larger than 0. 3m, and width of blade not larger than 1. 00m seems to be more adaptable. About 80% of excavation of ditch section will be done by the machinery while the other 20% of excavation together with the finishing of the section are supposed to be done by man-power. The embankment of ditch section can be compacted by the crawler of backhoe when it is moving along the ditch for excavation. However, Lowland paddy field in the Monsoon Asia are made particulary in rain season, therefore, heavy machinery is not easy excavation for ditch. It is very important to know exact ground support power of the working site and select machines with corresponding ground pressure. Ground support power is variable subject to quality and water content of soil and therefore selection of machines should be made duly considering ground condition of the site at the time of construction works. Farm ditches dug and compacted by mannual labar are of poor quality and subject to destruction after one or two years of operation. On the other hand, excavation and compaction by bulldozer is not practical for ditches. Backboe is suitable for slope land, but this is required cycle time of bucket excavation and dumped out. If a small-scale farm ditch trencher adaptable to lowland paddy field is invented, such a machine could greatly accelerate the massive construction work envisaged in many countries and thus significantly speed up the most difficult part of irrigation development and management in Monsoon Asia.

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강화 교동도의 해안저습지 개간과 수리사업 (Tidal-Flat Reclamations and Irrigation Systems of the Kyodong Island)

  • 최영준;홍금수
    • 대한지리학회지
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    • 제38권4호
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    • pp.535-561
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    • 2003
  • 인천시 강화군의 교동은 역사시대이래 계속된 간척활동을 통해 크고 작은 섬이 하나로 연결되어 현재와 같은 면적 47.1$\textrm{km}^2$의 단일 도서로 발전하였다. 구릉성 산지 사이에 퇴적된 교동도의 간석지는 한강ㆍ임진강ㆍ예성강에서 유출되거나 연해에서 운반된 미립물질로 구성되며 일찍부터 해안평야로 개발되었다. 개발 과정은 현지 농민의 개간과 더불어 변방방어와 왕도수호의 차원에서 방조제를 축조하고 둔전을 조성한 고려이전의 초기간척시대, 통어영의 유치로 경지개간이 체계화되는 한편 유이민에 의한 사전개발이 활발했던 조선시대, 식민자본에 의해 농장이 개설ㆍ운영된 일제시대, 다양한 토목장비가 동원되어 간석지개간이 종합적으로 추진된 최근세 이후의 4시기로 나뉜다. 고립된 도서로서 수원이 충분하지 못했던 교동에서는 간척지를 조성하고 안정적으로 이용하기 위해 동답, 제언, 물광, 담수로, 관정, 대규모 저수지 등 독창적인 수리방안을 모색하였다.

새만금호 방수제 공사에 따른 관리수위 운영과 환경변화에 관한 고찰 (Consideration on the Operation of water level management and Environmental Change Associated with Inner Dike Constructions in Saemangeum Reservoir)

  • 최정훈;오찬성;조영권;안치호
    • 한국해양환경ㆍ에너지학회지
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    • 제16권4호
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    • pp.290-298
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    • 2013
  • 새만금 사업은 대체 농지조성 및 쾌적한 복지 농어촌을 건설하고, 동북아 경제중심지로서 거점을 개발하는 한편 친환경적 개발 계획 및 기술에 바탕을 둔 녹색 도시로 성장하도록 하는 글로벌 명품 사업이다. 이러한 새만금 사업을 친환경 간척 모델의 하나로 개발하기 위하여 새만금 사업 환경영향 공동조사 및 토론회 등을 거쳐 친환경적 순차 개발 계획이 확정되었다. 현재는 방수제 공사가 진행 중에 있으며, 이에 따라 새만금호의 적정 수질 유지 및 환경변화에 따른 합리적인 대책 수립이 요구되고 있는 실정이다. 새만금호 내 환경은 상류 오염부하량 및 배수갑문 조작 현황 등에 의해 많은 영향을 받게 되므로, 본 연구에서는 새만금 방조제 끝막이로부터 방수제 공사 이후까지의 새만금호 관리수위 결정에 미치는 전반적인 요인들을 파악하였으며, 현재 진행 중인 방수제 공사와 관련된 수치 모델링 및 지속적인 해수 유통이 미치는 환경적 문제를 함께 고찰하였다. 새만금호 관리수위는 배후지 침수 분석, 끝막이 시공 여건과 비산먼지 등 환경대책에 대한 내용을 포함한 여러 조건에 따라 결정되며, 방수제 축조 후가 축조 전에 비하여 염분 농도 뿐 아니라 해수 유입 범위가 갑문 방향으로 1.2 km 감소하는 것으로 예측되었다.