• Title/Summary/Keyword: Water quality accident

Search Result 44, Processing Time 0.031 seconds

Analysis of the Effect of Water Quality Improvement on Seomgang and South Han River by Securing the Flow during the Dry Season (갈수기 유량 확보에 따른 섬강 및 남한강 본류 갈수기 수질 개선 효과 분석)

  • Lee, Seoro;Lee, Gwanjae;Han, Jeongho;Lee, Dongjun;Kim, Jonggun;Lim, Kyoung Jae
    • Journal of The Korean Society of Agricultural Engineers
    • /
    • v.61 no.2
    • /
    • pp.25-39
    • /
    • 2019
  • The water pollution Accident in the South Han River is increasing due to increase of pollutants inflow from small streams from rural areas and reduced flow rate. This study predicted the change of water quality in the main stream of the South Han River due to climate change through the linkage of watershed and water quality models. Also, This study analyzed the effect of water quality improvement on Seomgang and the South Han River by securing the flow during the dry season. According to the scenarios for securing the river flow during drought season, the river flow in the Seomgang is increased up to 2.19 times, and the water quality during the drought season was improved up to $BOD_5$ 20.5%, T-N 40.8%, T-P 53.4%. Also, the water quality of the main stream of the South Han River improved to 5.22% of $BOD_5$, 5.42% of T-N and 7.69% of T-P as the river flow was secured from the Seomgang. The result of this study confirms that securing the baseflow in the Seomgang according to the scenarios for securing the river flow during the dry season has a positive effect on the improvement of the water quality of the rivers in the main river of the Seomgang and South Han River. The results of this study will contribute to the establishment of reasonable management to improve the water quality of the main stream of the Seomgang and South Han River.

A Study on integrated water management system based on Web maps

  • Choi, Ho Sung;Jung, Jin Young;Park, Koo Rack
    • Journal of the Korea Society of Computer and Information
    • /
    • v.21 no.8
    • /
    • pp.57-64
    • /
    • 2016
  • Initial prevention activities and rapid propagation conditions is the most important to prevent diffusion of water pollution. If water pollutants flow into streams river or main stresm located in environmental conservation area or water intake facilities, we must predict immediately arrival time and the diffusion concentration to the proactive. National Institute of Environmental Research developed water pollution incident response prediction system linking dam and movable weir. the system is mathematical model which is updated daily. Therefore it can quickly predict the arrival time and the diffusion concentration when there are accident of oil spills and hazardous chemicals. Also we equipped with mathematical model and toxicity model of EFDC(Environmental Fluid Dynamics Code) to calculate the arrival time and the diffusion concentration. However these systems offer the services of an offline manner than real-time control services. we have ensured the reliability of data collection and have developed a real-time water quality measurement data transmission device by using the data linkage utilizing a mode bus communication and a commercial SCADA system, in particular, we implemented to be able to do real-time water quality prediction through information infrastructure of the water quality integrated management business created by utilizing the construction of the real-time prediction system that utilizes the data collected, the Open map, the visual representation using charts API and development of integrated management system development based on web maps.

Design of Automatic Monitoring Network for the Water Quality Management of River Basin (하천 및 호소수 수질관리를 위한 자동측정망의 설계)

  • Choi, Ji-Yong;Park, Won-Kqyu;Lee, Sang-Il
    • Water for future
    • /
    • v.29 no.2
    • /
    • pp.167-178
    • /
    • 1996
  • In designing automatic water quality monitoring networks for a river basin, determination of measurement locations and items is critical to the effectiveness of the total system. In this paper we studied how to decide these two design factors when a monitoring network is designed for the purposse of water quality surveillance and emergency alarm. For measurement locations, candidate sites are chosen based on the intake amount for water supply and the point sources of contamination. Then, detailed locations are decided according to the contaminant flow distance. As for measurement items, characteristics and the accident history of water pollution in the basin must be taken into account. Considering economic aspects, we proposed a two-stage measurement plan: basic components for all locations and selective ones variable for different locations. Proposed methodology is demonstrated through a case study for Nak-dong River Basin.

  • PDF

Pollution accident analysis using a hybrid hydrologic-hydraulic model(K-River & K-DRUM) (1차원수리모형-분포형 연계모형을 이용한 수질오염사고 분석)

  • Yonghyeon Lee;Hyunuk An;Ahn Jungmina;Youngteck Hur
    • Proceedings of the Korea Water Resources Association Conference
    • /
    • 2023.05a
    • /
    • pp.472-472
    • /
    • 2023
  • In this study, the transport of pollutants was analyzed using the K-River and K-DRUM coupling model for water pollution accidents that occurred in the Nakdong River water system. In Korea, the necessity of a distribution model that accommodates the water circulation process and the importance of nonpoint pollution sources were emphasized in water quality management after the introduction of the total amount of water pollution. Therefore, in order to reflect the runoff characteristics of nonpoint sources, the K-DRUM distribution model, which can analyze pollution in the basin, was used. And the reproducibility of the model was improved by applying the operating rules of dams operating in the Nakdong River system. In addition, in order to analyze the movement of pollutants in the river, only the advection part of the advection-dispersion equation was applied to the 1D hydraulic model K-River to perform pollutant tracking. As a result of water pollution analysis, the peak concentration of the pollutant was underestimated, but the arrival time and the trend of the overall pollutant concentration were well reproduced.

  • PDF

A study on Development way of 119 drowning rescue (119수난구조대의 현황 및 발전 방안)

  • Chong, Ji-Yon;Hwang, Hee-Jin;Kim, Gwang-Shok
    • The Korean Journal of Emergency Medical Services
    • /
    • v.9 no.1
    • /
    • pp.33-41
    • /
    • 2005
  • In Korea, the number of those who were drowned of the dead by 'accident and injury' ranked the third of causes of death is over 2,300 people a year. So the Ministry of Home Affairs arranged '119 drowning rescue team' at frequent occurrence regions of drowning temporarily as a part of drowning rescue measures during every summer season and made perfection more perfect for safety control and rescue services at prevention areas of accidents. However, considering that the number of professional drowning rescuers is small and it is managed temporarily only for summer, the placement of special rescue team equipped with professional education and qualification should be ensured and quick lifesaving and first-aid treatment should be conducted, since much time is required to arrive at accident place after receiving accident report at 119 office, rapid rescue and relief have not been achieved. Therefore, the placement of special rescue team should be increased for reducing the personal damages by considering regional characteristics and in particular placement of more drowning rescue teams in Jeonnam region which has more seas and rivers is needed This study aims at analyzing relief activities and statistics to cope with water accidents and achieve qualitative growth of first-aid services, examining actual conditions of water accident relief team and personnel assignment, providing first-aid services of good quality and establishing improvement methods to increase operation of relief team.

  • PDF

Coordinated Operation of Weirs and Reservoirs of Nakdong River Basin considering River Water Quality (수량과 수질을 고려한 낙동강 수계 댐-보 연계운영)

  • Kim, Sheung-Kown
    • Proceedings of the Korea Water Resources Association Conference
    • /
    • 2012.05a
    • /
    • pp.206-212
    • /
    • 2012
  • 2012년 상반기를 기점으로 '4대강 살리기 사업' 1 단계가 완료 되었다. 추후 안동댐과 임하댐의 연결 사업과 낙동강 상류 내성천의 영주 댐과 금호강 상류에 보현 댐 건설이 예정 되어 있지만, 낙동강 수계에는 8개 보 건설이 완료되어 하천의 물리적 환경이 바뀌었다. 따라서 앞으로는 보의 유지 및 운영 관리(주로 수질관리, 어도관리, 토사퇴적 및 세굴관리)가 중요하게 될 것이므로 기존의 상류 댐 운영 목표와 방식도 변해야 한다. 낙동강 수계는 11월부터 다음해 6월 까지가 갈수기에 해당한다. 따라서 갈수기에 수질을 담보할 유량이 실제로 흐를 수 있는지를 낙동강 유역 총체적인 관점에서 분석을 하고, 방류계획을 세울 필요가 있다. 수량이 수질을 항상 보장해 주지는 못하지만, 용수공급 목표를 저해할 환경과 생태계를 위한 무리한 초과 방류를 해야만 할 경우가 발생한다면, 그로 인한 기존의 농업, 공업 및 생활용수 공급에 미칠 영향을 가늠해서 대책을 세워야 한다. 본 연구에서는 좀 더 정교한 수질사고 시뮬레이션 모형, Water Pollution Accident Response Management System (WARMS)과, 하천수질예측시스템(Water Quality Forecasting System)모형 등, 수질을 고려한 3차원 모형과의 연동 및 연계를 염두에 두고, 시스템적 측면에서 수질과 수량을 한꺼번에 고려함으로써 궁극적으로 시간과 비용을 절약한다는 점에서 효율이 높을 것으로 생각되는 댐-보 연계운영을 위한 분석 방법을 제안한다.

  • PDF

Evaluation of Field Applicability for All-In-One Smart Water Meter to Measure both Water Quantity and Quality in Office Building Water Usage (사무실 사용용수의 수량/수질 동시 측정이 가능한 일체형 스마트 워터 미터의 현장 적용성 평가)

  • Lee, Saeromi;Oh, Hyun Je;Joo, Jin Chul;Ahn, Chang Hyuk;Park, Jae Roh
    • Journal of Korean Society of Water and Wastewater
    • /
    • v.30 no.6
    • /
    • pp.653-662
    • /
    • 2016
  • Recently, advanced metering infrastructure (AMI) has been recognized as a core technology of smart water grid, and the relevant market is growing constantly. In this study, we developed all-in-one smart water meter of the AMI system, which was installed on the test-bed to verify both effectiveness and field applicability in office building water usage. Developed 15 mm-diameter smart water meter is a magneto-resistive digital meter, and measures flow rate and water quality parameters (temperature, conductivity) simultaneously. As a result of the water usage analysis by installing six smart water meters on various purposes in office building water usage, the water usage in shower room showed the highest values as the 1,870 L/day and 26.6 liter per capita day (LPCD). But, the water usage in laboratory was irregular, depending on the many variables. From the analysis of the water usage based on day of the week, the water usage on Monday showed the highest value, and tended to decrease toward the weekend. According to the PCA results and multivariate statistical approaches, the shower room (Group 3) and 2 floor man's restroom sink (Group 1-3) have been classified as a separate group, and the others did not show a significant difference in both water use and water quality aspects. From the analysis of water usage measured in this study, the leak or water quality accident did not occur. Consequently, all-in-one smart water meter developed in this study can measure flow rate and water quality parameters (temperature, conductivity) simultaneously with effective field applicability in office building water usage.

Experimental Quality Characteristics for Water Removal in Inner Flushing Oil in Process Piping of Offshore Plant (해양플랜트 프로세스 배관 내경 플러싱 오일속에서 수분제거를 위한 실험적 품질 특성)

  • Park, Chang-Soo;Sung, Ki-Young;Han, Seong Jong
    • Journal of the Korean Society of Industry Convergence
    • /
    • v.22 no.6
    • /
    • pp.797-805
    • /
    • 2019
  • An important problem of offshore plant process piping is equipment accidents due to the removal of fine metal debris and foreign substances in the pipes that deliver fluids such as hydraulic oil, lubricating oil and thermal oil. Temporary flushing equipment to remove debris uses fluid equipment of centrifugal pump and gear pump to prevent equipment accident of offshore platform. The equipment manufacturer requires the shipyard to have a cleanliness rating inside the pipe to meet the international standards ISO4406 and NAS1638 quality levels to prevent damage to the equipment sold. The quality of the internal flushing of pipes conforms to the regulations suggested by the equipment manufacturer. In this paper, three types of electric heater capacity, which is a method of evaporating and removing water inside a pipe during an oil flushing process, were compared. In addition, the study was conducted to remove the flushing oil in the pipe and to improve oil quality.

Water Quality Model for the Toxic Pollutant Transport Analysis in the Nakdong River (낙동강 유역에서의 독성오염물 배출에 따른 수질해석 모형의 개발)

  • 한건연;김광섭
    • Water for future
    • /
    • v.28 no.1
    • /
    • pp.57-70
    • /
    • 1995
  • A water quality model RIV-LAGI for the toxic pollutant transport analysis is developed based on varied flow analysis and one-dimensional Lagrangian method. Applying to the prismatic channel, it shows accurate results compared with the analytical solutions. The model is applied to the Nakdong River to analyze the phenol spill accident, which occurred on March, 1991. The computed results have good agreements with the observed data. The travel times in the reach of Gumi to Mulkeum based on the monthly average and minimum flow are computed. The suggested model can be used to study the impact of the chemical spills and clean-up plans in the Nakdong River.

  • PDF

Mixing Characteristics of Nonconservative Pollutants in Paldang Lake (팔당호에 유입된 비보존성 오염물질의 혼합거동)

  • Seo, Il Won;Choi, Nam Jeong;Jun, In Ok;Song, Chang Geun
    • KSCE Journal of Civil and Environmental Engineering Research
    • /
    • v.29 no.3B
    • /
    • pp.221-230
    • /
    • 2009
  • In Korea, many water intake plants are easily affected by effluents of sewage treatment plants because sewage treatment plants are usually located upstream or nearby the plants of the same riverine area. Furthermore, the inflow of harmful contaminants owing to pollutant spills or transportation accidents of vehicles using the roads and bridges intersecting the river causes significant impact on the management of water intake plants. Paldang lake, the main water intake plants in Korea, is especially exposed to various water pollution accidents, because the drainage basin area is significantly large compared to the water surface area of the lake. Therefore it is necessary to predict the possible pollutant spill in advance and consider measurements in case of water pollution. In this study, water quality prediction was performed in Paldang Lake in Korea durig the dry season using two-dimensional numerical models. In order to represent the cases of pollutant accidents, the difference of pollutant transport patterns with varying injection points was analyzed. Numerical simulations for hydrodynamics of water flow and water quality predictions were performed using RMA-2 and RAM4 respectively. As a result of simulation, the difference of pollutant transport with the injection points was analyzed. As a countermeasure against the pollutant accident, the augmentation of the flow rate is proposed. In comparison with the present state, the rapid dilution and flushing effects on the pollutant cloud could be expected with increase of flow rate. Thus, increase of flow rate can be used for operation of water intake plants in case of pollutant spill accidents.