• 제목/요약/키워드: Water impact

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선수 플레어 충격압력 추정과 구조설계에의 응용 - 콘테이너선과 자동차 운반선 - (Prediction of Bow Flare Impact Pressure and Its Application to Ship Structure Design - Container Ship and PCC -)

  • 김용직;신기석;신찬호;강점문;김만수;김성찬;오수관;임채환;김대헌
    • 대한조선학회논문집
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    • 제40권3호
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    • pp.29-36
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    • 2003
  • In rough seas, bow-flare regions of the fine ships (container ship and PCC) are subject to high impact pressures due to the bow-flare slamming. And many ships suffer structural damages in that region, even though they were built under the bow structure strengthening rules of the ship classes. So, a new design method for bow-flare structure is highly required. In this paper, a new prediction method of the bow-flare impact pressure (in terms of equivalent static pressure) acting on the fine ships' bow is presented. This method is based on the 11 fine ships' damage analysis and the mechanisms of water entry impact and breaking wave impact. Calculation results of the bow-flare impact pressure and the shell plate thickness are shown and discussed. Through the example calculations, it was found that the present method is useful for the structure design of the fine ships' bow.

현장실험을 통한 수생식물의 수질정화 효과에 관한 연구 (A Study on the Water Quality Purification Effect of Aquatic Plants in field work)

  • 이종성;김기남
    • 한국환경과학회지
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    • 제14권10호
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    • pp.937-944
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    • 2005
  • Presently, aquatic plants are used for the water purification in inland water. This study was carried out to investigate the water purification effect of aquatic plants, Oenanthe javanica and Typha angustata, The experiment was conducted in outdoor flowing water was conducted for ten days, Water quality was measured in terms of water temperature, COD(chemical oxygen demand), SS(suspended solids), Total N, Total P. The results of field experimentation showed that hydraulic retention time was the earliest in July and August 2003, and there were not any particular changes of monthly water temperature in inflow water and outflow water. As we look at the changes taken place in inflow water and outflow water throughout the whole experiment period, the change of water quality in summer was salient, especially SS removal ratio showed distinguished change as $25\%$, when the pebble filter and aquatic were attached to it. The removal rate of COD, total N total P were $14,7\%,\;8\%\;and\;9\%$, respectively. In relating the length of water extension to the change in water quality, the water quality tended to get lower generally in proportion to hydraulic retention time.

개발 사업에 의한 수질영향조사 및 사후환경영향조사 수질결과에 대한 비교·분석 -토석채취사업 및 체육시설 조성사업을 중심으로- (Effects on Water Quality in the Development and the Comparative Analysis of Water Quality Results in Post-environmental Impact Investigation - Focused on a Quarry Mine and Sports Facilities -)

  • 이세용;노영희;조한나;맹준호
    • 환경영향평가
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    • 제26권6호
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    • pp.524-537
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    • 2017
  • 사후환경영향조사 결과의 신뢰도 제고에 대한 문제가 대두되어 왔으나 조사결과에 대한 객관적인 검증을 수행한 연구가 미흡한 실정이다. 본 연구에서는 개발 사업에 의한 수질영향을 조사하였고 그 결과를 바탕으로 사후환경영향조사 시 수질분야에 결과와 비교 분석을 수행하였다. 토석채취사업장 내 오수처리시설 최종방류수에 Biochemical oxygen demand(BOD), Suspended solid(SS), Total nitrogen(T-N), Total phosphorus(T-P) 농도가 높게 나타났다. 사후환경영향조사 결과와 비교한 결과, 오수처리시설 최종방류수의 BOD, SS, T-N, T-P 농도가 사후환경영향조사 시 분기별 농도의 사분범위(Interquartile range, IQR)와 최소값과 최대값의 농도범위보다 높게 나타났다(p<0.05). 체육시설(훈련원) 조성사업의 경우에는 오수처리시설 최종방류수에 BOD, SS, T-N, T-P가 높은 농도로 검출되었고 BOD와 SS 농도는 협의기준을 초과하였다. BOD와 SS 농도는 사후환경영향조사 시 오수처리시설 최종방류수의 농도와 유의한 차이를 나타냈다(p<0.05). 이러한 연구결과, 개발 사업 시 오수처리시설 최종방류수에 대한 체계적인 수질 모니터링과 적절한 수질관리가 수행되어야 할 것이다. 또한 사후환경영향조사결과의 신뢰도 제고를 위한 방안이 모색되어야 할 것이다.

Estimating Worst Case Flood and Inundation Damages under Climate Change

  • Kim, Sunmin;Tachikawa, Yasuto;Nakakita, Eiichi
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2016년도 학술발표회
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    • pp.189-189
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    • 2016
  • To generate information that contributes to climate change risk management, it is important to perform a precise assessment on the impact in diverse aspects. Considering this academic necessity, Japanese government launched continuous research project for the climate change impact assessment, and one of the representative project is Program for Risk Information on Climate Change (Sousei Program), Theme D; Precise Impact Assessment on Climate Change (FY2012 ~ FY2016). In this research program, quantitative impact assessments have been doing from a variety of perspectives including natural hazards, water resources, and ecosystems and biodiversity. Especially for the natural hazards aspect, a comprehensive impact assessment has been carried out with the worst-case scenario of typhoons, which cause the most serious weather-related damage in Japan, concerning the frequency and scale of the typhoons as well as accompanying disasters by heavy rainfall, strong winds, high tides, high waves, and landslides. In this presentation, a framework of comprehensive impact assessment with the worst-case scenario under the climate change condition is introduced based on a case study of Theme D in Sousei program There are approx. 25 typhoons annually and around 10 of those approach or make landfall in Japan. The number of typhoons may not change increase in the future, but it is known that a small alteration in the path of a typhoon can have an extremely large impact on the amount of rain and wind Japan receives, and as a result, cause immense damage. Specifically, it is important to assess the impact of a complex disaster including precipitation, strong winds, river overflows, and high tide inundation, simulating how different the damage of Isewan Typhoon (T5915) in 1959 would have been if the typhoon had taken a different path, or how powerful or how much damage it would cause if Isewan Typhoon occurs again in the future when the sea surface water temperature has risen due to climate changes (Pseudo global warming experiment). The research group also predict and assess how the frequency of "100-years return period" disasters and worst-case damage will change in the coming century. As a final goal in this research activity, the natural disaster impact assessment will extend not only Japan but also major rivers in Southeast Asia, with a special focus on floods and inundations.

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대청호 정체수역의 수질예측과 관리 (Management of Water Quality of Embayments in Daechong Reservoir)

  • 이종호
    • 환경영향평가
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    • 제3권2호
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    • pp.33-45
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    • 1994
  • Water quality of Chongju and Daejeon Water Intake Tower Region, embayments in Daechong Reservoir was found to be worse than that of main lake after analysis of water which were sampled during April, July, October in 1993. Concentration of COD and SS at those two water intake tower sites were 2.8-5.6 mg/l and 2.2-3.2 mg/l, higher than that of main lake. T-N concentration of those two sites was 1.1-1.9 mg/l similar to that of main lake, and T-P concentration of those two sites was 0.14-0.18 mg/l, higher than that of main lake. This study used water quality model of embayment which can analyse pollutant loads from stream and surrounding land use, advection, decay, and diffusion transport between embayment and main lake. The model can predict water quality of embayment according to the change of pollutant load, water elevation of embayment, quantity of water intake in order to suggest water quality management. This study suggests embayment water quality management alternatives, 1) construction of waste water treatment facilities at embayment and main lake for the decrease of pollutant loading, 2) water intake at main lake less polluted or eutrophicated than embayment, and 3) outflow elevation selection for polluted hypolimnion water outflow during stratification.

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식생 물 부족 지수의 추계학적 거동과 기후변화가 그에 미치는 영향 (Stochastic Behavior of Plant Water Stress Index and the Impact of Climate Change)

  • 한수희;유가영;김상단
    • 한국물환경학회지
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    • 제25권4호
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    • pp.507-514
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    • 2009
  • In this study, a dynamic modeling scheme is presented to describe the probabilistic structure of soil water and plant water stress index under stochastic precipitation conditions. The proposed model has the form of the Fokker-Planck equation, and its applicability as a model for the probabilistic evolution of the soil water and plant water stress index is investigated under a climate change scenario. The simulation results of soil water confirm that the proposed soil water model can properly reproduce the observations and show that the soil water behaves with consistent cycle based on the precipitation pattern. The simulation results of plant water stress index show two different PDF patterns according to the precipitation. The simple impact assessment of climate change to soil water and plant water stress is discussed with Korean Meteorological Administration regional climate model.

LID 기법 적용에 의한 SCS-CN값 변화가 강우유출특성에 미치는 영향 분석 (The Analysis of Runoff Characteristics by Alterations of SCS-CN Value using LID Method)

  • 권준희;박인혁;하성룡
    • 환경영향평가
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    • 제19권1호
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    • pp.49-57
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    • 2010
  • The objective of the research is to analyze changing trend of water discharge in precipitation, according to changing land use, through an environment-friendly urban development method called LID. The study chose S1 basin (Separated Sewer districts) in Cheongju region for survey. Among LID methods, relatively more applicable methods of green rooftop space and parking lot with permeable material were selected to construct plausible scenarios. Curve Number (CN) value was calculated due to land use patterns in each scenario, and SWMM model simulation were conducted during 2008 for comparative analysis. For Case 1, only parking lot with permeable material was applied to the scenario. Green rooftop space I and II were applied to Case 2 and 3 respectively. For Case 4 and 5, green rooftop space I and II were applied, in addition to parking lot with permeable material, Calculation of CN value showed that for S1 basin, the value was 88.1 (prior to scenario application), 86.5 (Case 1), 81.9 (Case 2), 68.5 (Case 3), 80.4 (Case 4) and 67.2 (Case 5). Changing pattern of rain water discharge was analyzed for each scenario. For Case 1, the change was not remarkable before and after application of scenario. In Case 2 and 4, the impact of rain water discharge as source of pollutant fell to 20~30%. The rate dropped to 30~50% in Case 3 and 5 respectively. The result demonstrates that the amount of rain water discharge, amount and frequency of sewer overflow, frequency of rain water discharge, and pollution load decreased in accordance with declining CN value in each scenario. In installing green rooftop space, the effect was twice greater when rain water discharge was directly infiltrated into soil.

기후변화에 따른 대청호 유역의 물 순환 및 토양 유실량 영향 (Impact of Climate Change on Water Cycle and Soil Loss in Daecheong Reservoir Watershed)

  • 예령;정세웅;오동근;윤성완
    • 한국물환경학회지
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    • 제25권6호
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    • pp.821-831
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    • 2009
  • The study was aimed to assess the expected impact of climate change on the water cycle and soil losses in Daecheong Reservoir watershed, Korea using the Soil and Water Assessment Tool (SWAT) that was validated for the watershed in a previous study. Future climate data including precipitation, temperature and humidity generated by introducing a regional climate model (Mesoscale Model Version 5, MM5) to dynamically downscale global circulation model (European Centre Hamburg Model Version 4, ECHAM4) were used to simulate the hydrological responses and soil erosion processes in the future 100 years (2001~2100) under the Special Report on Emissions Scenario (SRES) A1B. The results indicated that the climate change may increase in the amount of surface runoff and thereby sediment load to the reservoir. Spatially, the impact was relatively more significant in the subbasin Bocheongcheon because of its lower occupation rate of forest land compared to other subbasins. Seasonally, the increase of surface runoff and soil losses was more significant during late summer and fall season when both flood control and turbidity flow control are necessary for the reservoir and downstream. The occurrence of extreme turbidity flow events during these period is more vulnerable to reservoir operation because the suspended solids that remained water column can be resuspended by vertical mixing during winter turnover period. The study results provide useful information for the development of adaptive management strategy for the reservoir to cope with the expected impact of future climate change.

Recycled Polypropylene (PP) - Wood Saw Dust (WSD) Composites : The Effect of Acetylation on Mechanical and Water Absorption Properties

  • Khalil, H.P.S.A.;Shahnaz, S.B. Sharifah;Ratnam, M.M.;Issam, A.M;Ahmad, Faiz;Fuaad, N.A Nik
    • Journal of the Korean Wood Science and Technology
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    • 제34권2호
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    • pp.10-21
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    • 2006
  • Recycled polypropylene (RPP) - Wood Saw Dust (WSD) composites with and without acetylation of filler were produced at different filler loading (15%, 25%, 35% and 45% w/w) and filler size (300, 212 and $100{\mu}m$). The RPP-WSD was compounded using a Haake Rheodrive 500 twin screw compounder at $190^{\circ}C$ at 8 MPa for 30 minutes. The mechanical properties and water absorption properties of modified and unmodified WSD-PP composites were investigated. Acetylation of WSD improved the mechanical and water absorption characteristic of composites. The decrease of filler size (300 to $100{\mu}m$) of the unmodified and acetylated WSD showed increase of tensile strength and impact properties. The composites exhibited higher tensile modulus properties as the filler loading increased (15% to 45%). However tensile strength, elongation at break and impact strength showed the opposite phenomenon. Water absorption increased as the mesh number and filler loading increased. With acetylation, lower moisture absorption was observed as compared to unmodified WSD. The failure mechanism from impact fracture of the filler-matrix interface with and without acetylation was analyzed using Scanning Electron Microscope (SEM).

저영향개발 (LID)을 적용한 빗물 관리 시스템에 의한 물 순환 복원 (Restoration of Water Cycle by a Rainwater Management System Applied to Low Impact Development (LID))

  • 이동찬
    • Ecology and Resilient Infrastructure
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    • 제3권2호
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    • pp.130-133
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    • 2016
  • 도시개발로 인한 불투수면의 증가는 우수의 지중 침투량 감소에 의한 지하수위 하강, 강우 유출량 증가에 의한 침수해, 고농도 초기 우수에 의한 환경오염 등의 문제를 야기시킨다. 따라서 이러한 문제에 대한 대책방안으로서 저영향개발 기법 도입의 필요성이 증가하고 있다. 본 연구에서는 저영향개발 (LID) 기법이 적용된 단지 내 빗물관리시스템 모니터링에 의한 물 순환복원효율을 분석하였다. 본 연구에서 빗물관리시스템을 적용한 단지 개발에서 기존 방식에 비교하여 물 순환 효율이 41%가 증가하였다.