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      • KCI등재

        낙동강하구의 어류 이동성 향상을 위한 수문운영 방안 제안

        정석일,한정호,이지영,김화영,Jeong, Seokil,Han, Jeong-Ho,Lee, Ji-Young,Kim, Hwa-Young 한국환경생태학회 2022 한국환경생태학회지 Vol.36 No.5

        낙동강하굿둑의 건설로 원활한 용수 공급이 이루어졌으나, 하구 수생태계의 종적 연결성을 단절시켰다. 이에 낙동강하굿둑 개방에 대한 사회적 요구가 지속적으로 제기되어 왔으며, 2017년부터 낙동강하구역 기수생태계 복원을 위한 노력이 본격화되었다. 낙동강 하구에는 다양한 어종이 서식해 왔으며, 이들의 서식·이동 특성은 상이하므로 이를 고려한 수문운영은 기수생태계 복원에 필수적이다. 이에 본 연구에서는 낙동강하구에 서식·이동하는 어류를 모니터링을 통해 확인하였으며, 방류 시 수문운영 형태별, 개도별 평균 유속을 산출하여, 어종에 따른 원활한 소상 가능성을 분석하였다. 또한 대상어종을 선정하고, 주 분포 수심에 따른 수문운영 형태를 제시하는 등 낙동강 하구역의 기수생태계 복원을 적극적으로 수행하기 위한 수문운영 방안을 제시하였다. Although the construction of the Nakdong River Estuary Barrage (NEB) improved the water supply in the region, it cut off the longitudinal connectivity of the estuary aquatic ecosystem. Thus, the social demands for opening the NEB have been continuously raised, and the efforts to restore the aquatic ecosystem of the Nakdong River estuary began in 2017. Many fish species have inhabited the Nakdong River estuary. Since their habitat and migration characteristics vary widely, the sluice gate operation considering them is essential for the restoration of the aquatic ecosystem. Therefore, in this study, we monitored the fish species living and migrating in the Nakdong River estuary and analyzed the possibility of smooth movement of for each fish species by calculating the average flow velocity according to the type and the height of the gate opening. Moreover, we selected the target fish species for each month and suggested the sluice gate operation according to the depth of the main habitat to present the measures that are ideal for optimal restoration of the aquatic ecosystem in the Nakdong River estuary area.

      • KCI등재후보

        저층수 배출관에 유입된 사석의 배제 한계조건

        정석일,이승오,Jeong, Seokil,Lee, Seung Oh 한국방재안전학회 2019 한국방재안전학회 논문집 Vol.12 No.1

        국내 중소하천에 설치된 콘트리트 보에서 발생하는 많은 문제 중에서 상류로부터 유입되는 유사가 보 직상류에 퇴적되는 문제가 심각하다. 이로 인해 하류에 유사공급이 원활치 못하게 되며, 퇴적된 유사가 오염물과 흡착될 경우, 하상 오염뿐만 아니라 하천 생태계에 치명적인 피해를 유발할 수 있다. 보 직상류의 유사 퇴적문제를 해결하는 방안 중 하상에 배사관을 매설하여 퇴적되는 유사를 하류로 배출하고 있다. 그러나 배사관에 적정크기 이상의 사석 등이 유입될 경우, 배사효율은 현격하게 낮아지므로, 이에 대한 가이드라인 내지는 한계조건 제시가 필요하다. 본 연구에서는 상하류 수위차, 사석의 직경 등을 주요변수로 선정한 후, 3차원 수치모의 결과를 활용하여 사석 배제 능력에 대한 한계 조건을 도출하였다. 상류흐름은 정류된 상태로 가정하였고, 배사관을 포함하여 상 하류간 검사체적에서 에너지 개념을 적용하여 분석을 수행하였다. 그 결과 수위차와 사석지름의 비로 나타낸 무차원 변수가 약 1.2인 경우, 배사관 내 사석의 배출유뮤를 명확히 결정할 수 있었다. 본 연구결과는 향후 점성이 높은 유사나 흡착성 유사 등의 특성을 고려한다면 배사관이 있는 고정보의 운영관리방안에 활용될 수 있을 것이라 기대한다. One of the most serious problems with concrete small dams or barriers installed in small/median rivers is the deposit of sediments, especially, in Korea. An effective way to discharge such sediments to downstream is to construct a bypass pipe under the river bed. However, efficiency may become lowered if ripraps are entered into the bypass pipe. Therefore, in this study, we derived the threshold condition for the exclusion of ripraps from the bypass pipe using 3D numerical analysis. Upstream flow of the small dam was assumed to be stationary, and the energy concept was applied to the control volume containing the bypass pipe and its periphery. As a result, when the ratio of the water level difference between upstream and downstream to the diameter of the riprap was approximately equal to 1.2, the threshold condition for exclusion of the stones or riprap from the bypass pipe was affirmatively determined. If the characteristics of the adsorptive sediment adversely affecting the river environment in the future would be taken into account, results from this study are expected to put to practical use in the management of concrete small dam with bypass pipe system.

      • KCI등재

        급확대 구간에서 준설영향으로 인한 상류 수리특성 변화에 대한 민감도 분석

        정석일,류광현,이승오,Jeong, Seok Il,Ryu, Kwang Hyun,Lee, Seung Oh 한국안전학회 2017 한국안전학회지 Vol.32 No.4

        Sediment exchange in river has been affected by artificial changes such as dredging and abnormal climate changes like intense rainfall. Over last decades in Korea, there were many constructions, restoration or rehabilitation in rivers. Therefore, deposition and erosion become more actively occurred than before, which may threaten the river safety such as flood defense. For safety's sake, the dredging of river bed, which is considered as the most typical measure, has been increased to extend hydraulic conveyance compared with previous conditions. However, since it might change the sediment mechanism, there would be another risk at which unexpected side effects such as headward erosion could be occurred. Particularly, sedimentation at abrupt expansion region is able to lead to hydraulic characteristics like water elevation in the upstream region in the beginning of dredging, which, however, has been barely studied in this field. Therefore in this study, the relationship between sediment mechanism at dredging section and hydraulic characteristics in upstream region were presented through numerical simulations in the idealized abruptly widen channel using Delft3D. The ideal channel of 2,000 m length with each side angle of 45 degrees at abruptly widen expansion region was employed to consider the sediment angle of repose. The sensitivity analysis was performed on the dimensionless factors consisted of upstream and downstream depths($h_u$, $h_d$), width($w_u$, $w_d$), water level(H), flow rate(Q) and discharge of sediment($Q_s$). And the sedimentation amount at dredging and the upstream hydraulic characteristics were investigated through that analysis. It showed that $h_d/h_u$, $H/h_u$ and $w_d/w_u$ were more influential in sequence of effect on sedimentation amount, while $h_d/h_u$, $w_d/w_u$ and $H/h_u$ on upstream region. It means that $h_d/h_u$ was revealed as the most significant factors on sedimentation, also it would most highly affect the rising of water level upstream.

      • KCI등재

        해담수 밀도차를 고려한 낙동강하굿둑 해수유입량 산정식 개발

        정석일,이상욱,허영택,김영성,김화영,Jeong, Seokil,Lee, Sanguk,Hur, Young Teck,Kim, Youngsung,Kim, Hwa Young 한국수자원학회 2022 한국수자원학회논문집 Vol.55 No.5

        The restoration of the Nakdong River estuary is one of the most important projects of the Ministry of Environment, Republic of Korea. A real-scale experiment of gate operation was executed from 2019 to 2020, and a pilot operation was performed in 2021. The gate of Nakdong River Estuary Barrier (NEB) is supposed to be continuously opened based on the experiment results. Many critical decisions should be made immediately during the experiment based on the real-time measured data and numerical analysis considering the seawater inflows. The decision-making sequence was made systematically with the accurate estimation of seawater inflow. The estimation of seawater inflow is the main research objective and the equations of seawater inflow were developed, reflecting the structural characteristics of NEB. The inflow equations were developed in two forms, overflow and underflow. ADCP (Acoustic Doppler Current Profiler) was used to measure seawater inflow, check the accuracy of the developed equations, and derive the flow coefficient. The comparison error of the developed equations was about 3% compared to the measured data.

      • KCI등재

        수리실험을 통한 보 연결부 제방 세굴 특성 분석

        정석일,이승오,Jeong, Seok Il,Lee, Seung Oh 한국안전학회 2017 한국안전학회지 Vol.32 No.4

        Typical flow regime of overflow at barrier or weir constructed in mid and small streams becomes as the submerged flow during most flood events. One of major causes of barrier failure has been reported as the levee-scour near the conjuction node between barrier and levee. However, most related design guidelines in Korea have not mentioned about the protection of levee around barrier or weir in detail. Furthermore, most previous researches have focused on the flow characteristics of overflow around several types of weirs but they did not have considered the material properties of levee itself. In this study, local scour near barrier was investigated with different material properties of levee under the submerged overflow condition which is assumed to reenact a flood event. Based on results from Fritz et al. and Mavis et al., a theoretical formula was also proposed in initial stage of laboratory experiments. And hydraulic experiments were carried out for the verification of the proposed formula. Levee was installed in the prismetic trapezoidal open channel and most parts were made of concrete except for movable section in which scour was expected to occur for the efficiency of experimental procedure. Each compaction of movable section in levee was followed by the basis of the KS F 2312. Further, after performing the experiments to find the optimum water content for each sediment, the specific amount of water was injected before flowing water. The difference between the proposed theoretical formula and experiment results was not much but considerable, which might be caused by the effect of compaction. For theoretical approach, it seemed that the formula did not take into account the compaction of levee, thus the correction coefficient for levee compaction determined in the literature was considered. Finally, the formula for the length of scour around barrier or weir was proposed, which can be useful to predict a levee in the reference design of revetment in mid and small streams. As shortly future study, scour length of levee around barrier or weir under different flow conditions such as perfect overflow condition will be studied and it will be able to contribute to suggest the design formula or criteria under all overflow conditions near barrier or weir.

      • KCI등재

        2차 정수지의 수리특성 및 바닥 유속 저감효과 분석

        정석일 ( Seokil Jeong ),이지훈 ( Ji Hun Lee ),윤재선 ( Jae-seon Yoon ),이승오 ( Seung Oh Lee ) 한국안전학회(구 한국산업안전학회) 2018 한국안전학회지 Vol.33 No.5

        Scour in the downstream of hydraulic structures such as apron induces to collapse due to abruptly increasing rainfall and discharge in streams and reaches. This is because the forcible jet from overflowing is not sufficiently dissipated by existing energy dissipators, and it continues to sweep the bed materials during flood events. In this study, a second stilling basin was proposed as a countermeasure and the energy dissipation efficiency of this structure was analyzed using 3D-dimensional numerical analysis. First, results from previous research and hydraulic tests were used to verify the accuracy of the numerical model. It showed that the second stilling basin played a definite role in reducing the bottom velocity, comparing with diminishing the energy dissipation when numerical tests were conducted under scaled field conditions in Korea. This means that the second stilling basin can be a countermeasure against scour in downstream. If more efficiency analysis of the second stilling basin would be performed in terms of energy dissipator for various types of hydraulic jump, it would be an alternative solution to scouring issues.

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