• 제목/요약/키워드: velocity and water depth measurement

검색결과 45건 처리시간 0.025초

전자파 표면 유속계의 하천 유량 측정에 관한 실용성 (Practical Aspects of Microwave Surface Velocity Meter Applied to Measurements of Stream Discharges)

  • 이상호;김우구;김영성
    • 한국수자원학회논문집
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    • 제30권6호
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    • pp.671-678
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    • 1997
  • 전자파를 이용한 하천수 표면 유속계를 하천 유량 측정에 사용하여 실용성과 문제점을 분석하였다. 표면 유속계의 평가는 선박 실험용 선형수조를 이용하여 수행하였다. 그 결고, 수직각을 20$^{\circ}$, 35$^{\circ}$, 45$^{\circ}$로 하였을 때 유속측정 평균값의 오차는 5.5% 이하였다. '95년 8월 26일 8~10시 사이에는, 남한강 여주대교 지점에서 홍수 유속을 측정하였다. 500m 길이의 교량에 대하여 23개 지점에서 측정한 결과, 표면 유속값은 약 2~4m/s였다. 수심평균 유속 환산계수를 0.85로 하고, 유량을 환산한 결과는 약 10,500 ㎥/s였다. 환산유량값은 수위-유량식이나 부정류 계산에 의한 값과 $\pm$2% 이내의 편차를 보였다. 자료 사용 간격을 40m 또는 60m로 변경하여 유량을 환산하여도 별다른 차이가 없었다. 평상시의 유량측정은 '96년 하반기에 대청교 지점에서 수행하였다. 대청댐의 방류량을 기지값으로 하여 수심평균 유속 환산계수를 추정한 결과 0.83~0.87의 범위에 있었다. 계기 자체의 미세오차와 바람의 영향은 계속 연구되어야 하지만, 하천의 홍수 유량측정에 표면유속계를 사용하는 것은 간편하고 실용적인 대안이 될 수 있음을 확인하였다.

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수위변동에 따른 갯벌의 물리적 환경특성의 변화 (Variation of Physical Characteristic of Tidal Flat's Environment by Water Level Change)

  • 박종화
    • 한국환경복원기술학회지
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    • 제2권3호
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    • pp.1-9
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    • 1999
  • This paper described the results of the characteristics of the near-bottom flow and field analysis of the tidal flats sediment. It was the aim of this paper to grasp current flow of tidal flat's environment and influence factor for environmental change forecast of tidal flats. Field measurement of water velocity, water elevation, bed materials test, and temperature distribution of tidal flat were conducted. Thereafter, current flow, turbidity and temperature distribution of tidal flat sediment have been discussed. The field research results showed that the fluctuating velocity near the seabed before and after its appearance at low tide was strongly affected by the wind wave. The resuspension of the sea-bottom sediment took place with great intensity before and after the appearance of the seabed at low tide. Both the sea water level and the weather condition were a significant influential factors. Such as, temperature and turbidity just on the surface and the shallow layer of seabed sediments were varied largely with time and weather conditions, but that its deeper layers was almost constant. Temperature on the seabed sediments was strongly influenced by irradiance and water depth. The temperature variation of the tidal flat and the variation characteristics of the current flow and turbidity depend greatly on the inhabiting environment of the tidal flat benthic organism.

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Structure and Vorticity of the Current Observed Across the Western Channel of the Korea Strait in September of 1987-1989

  • Byun, Sang-Kyung;Kaneko, Arata
    • Ocean and Polar Research
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    • 제21권2호
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    • pp.99-108
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    • 1999
  • With sectional data obtained in September of 1987, 1988 and 1989 by quadrireciprocal ADCP measurement and CTD cast, the current structure, volume transport and vorticity in the Western Channel of the Korea Strait were studied. The characteristics of Tsushima Current water persisted throughout the summer especially in the homogeneous water of temperature $14-16^{\circ}C$ located at the depth of 50-100m below seasonal termocline. Thickness and velocity of the homogeneous layer are about 10-170m and 20-60cm/s. and the relative vorticity for this layer is shown to be nearly constant and it is smaller than the planetary vorticity. Potential vorticity of $2.70-7.10{\times}10^{-6}m^{-1}s^{-1}$ is found to be dependent mainly on planetary rather than on the relative vorticities. The Tsushima Current water represented by the homogeneous layer R14-16^{\circ}C$ may keep the potential vorticity at the area of strong current in the Strait. The ADCP current structure is similar to geostrophic current and the core of the current with the speed of 30-50cm/s is situated in the middle layer over the deep trough. With large tidal fluctuation the volume transport has mean value of 1.17sv which was about 40% larger than that of geostrophic calculation.

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Lagrangian 전자부자를 이용한 수리모델 검증 방안 연구 (A study on the validation of hydraulic model using lagrangian GPS floater)

  • 이호수;이정민;한은진;김영도
    • 한국수자원학회논문집
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    • 제52권12호
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    • pp.1047-1055
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    • 2019
  • 수질오염사고 발생시에 다양한 수환경 조건에서의 오염물질의 거동 예측을 위해서 여러 가지 유형의 모델링 기법을 사용하고 있으며, 그 중 물의 흐름특성을 고려할 수 있는 수리모델은 가장 기초가 되면서 전체 모의결과에 있어서 매우 중요하다. 이러한 수리모델은 대상하천의 수리특성을 정확하게 예측하고 있는가를 판단하는 과정이 매우 중요하며, 이와 같은 모델링 결과의 검증에 있어서 실제 하천에서 직접 실측한 결과를 이용한다. 현재 하천의 유속 측정에 있어 ADCP와 FlowTracker를 많이 운영하는데 ADCP는 수심이 0.6 m 이하인 경우와 수면 부근의 측정불가역의 비율이 40% 이상일 때 정확도가 매우 떨어진다. FlowTracker의 경우 도섭을 이용한 측정방식으로 인해 고수심 및 고유속 조건에서 측정에 한계를 가진다. 이러한 방식의 실측값을 통해 검증된 모델은 수심이 낮은 저유량기 모의와 유속이 빠른 고유량기에서의 모의결과를 신뢰할 수 없다. 본 연구에서는 Eulerian 방식으로 측정되는 기존의 방법과 달리 입자의 움직임에 따라 수체의 물리량을 측정하는 Lagrangian 방식의 GPS 전자부자를 이용하였다. GPS 전자부자를 이용해 측정한 유속과 수리모델의 모의결과를 비교하여, 모델결과의 검증 방안에 대하여 연구하였다. GPS 전자부자의 이동거리와 LPT 모델 입자의 이동거리를 비교하였을 때 평균 13.6%의 오차율을 보이며, 구간별 유속 차이에서도 정체구간을 제외하면 평균 3.2%의 오차율을 보였다. 따라서 GPS 전자부자를 이용하여 수리모델의 결과에 대한 보정 및 검증 방안으로 활용이 가능할 것으로 사료된다.

저속 횡 이동하는 선박의 선체에 작용하는 유체력에 관한 연구 (A Study of Hydrodynamic Forces Acting on a Ship Hull Under Lateral Low Speed Motion)

  • 이윤석;김순갑
    • 한국항해학회지
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    • 제23권2호
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    • pp.29-42
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    • 1999
  • An accurate method of estimating ship maneuverability needs to be developed to evaluate precisely and improve the maneuverability of ships according to the water depth. In order to estimate maneuverability by a mathematical model. The hydrodynamic forces acting on a ship hull and the flow field around the ship in maneuvering motion need to be estimated. The ship speed new the berth is very low and the fluid flow around a ship hull is unsteady. So, the transient fluid motion should be considered to estimate the drag force acting on the ship hull. In the low speed and short time lateral motion, the vorticity is created by the body and grow up in the acceleration stage and the velocity induced by the vorticity affect to the body in deceleration stage. For this kind of problem, CFD is considered as a goof tool to understand the phenomena. In this paper, the 2D CFD code is used for basic consideration of the phenomena to solve the flow in the cross section of the ship considering the ship is slender and the water depth is large enough. The flow fields Added and hydrodynamic forces for the some prescribed motions are computed and compared with the preliminary experiment results. The comparison of the force with measurement is shown a fairly good agreement in tendency. The 3D Potential Calculation based on the Hess & Smith Theory is employed to predict the surge, sway added mass and yaw added moment of inertia of hydrodynamic coefficients for M/V ESSO OSAKA according to the water depth. The results are also compared with experimental data. Finally, the sway added mass of hydrodynamic coefficients for T/S HANNARA is suggested in each water depth.

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융합된 다중 센서와 EKF 기반의 무인잠수정의 항법시스템 설계 (Navigation System of UUV Using Multi-Sensor Fusion-Based EKF)

  • 박영식;최원석;한성익;이장명
    • 제어로봇시스템학회논문지
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    • 제22권7호
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    • pp.562-569
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    • 2016
  • This paper proposes a navigation system with a robust localization method for an underwater unmanned vehicle. For robust localization with IMU (Inertial Measurement Unit), a DVL (Doppler Velocity Log), and depth sensors, the EKF (Extended Kalman Filter) has been utilized to fuse multiple nonlinear data. Note that the GPS (Global Positioning System), which can obtain the absolute coordinates of the vehicle, cannot be used in the water. Additionally, the DVL has been used for measuring the relative velocity of the underwater vehicle. The DVL sensor measures the velocity of an object by using Doppler effects, which cause sound frequency changes from the relative velocity between a sound source and an observer. When the vehicle is moving, the motion trajectory to a target position can be recorded by the sensors attached to the vehicle. The performance of the proposed navigation system has been verified through real experiments in which an underwater unmanned vehicle reached a target position by using an IMU as a primary sensor and a DVL as the secondary sensor.

수하식 양식시설에 의한 운수저항의 평가와 수치모형 (Evaluation and Numerical Model of Hydraulic Resistance by Hanging Aquaculture Facilities)

  • 이종섭;박일흠
    • 한국수산과학회지
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    • 제28권5호
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    • pp.607-623
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    • 1995
  • A numerical model of hydraulic resistance by hanging aquaculture facilities is developed and applied to a model basin and a field. A drag stress term formulated by the quadratic law of drag force is introduced Tn the equations of motion for a two-dimensional depth-averaged flow. In the model basin, numerical experiments ave tarried out for the various shape of obstructions, string density and layout of facilities etc.. The flow pattern around the facilities is affected sensitively by the density of string and the layout of facilities. On the other hand, the velocity decay due to the hanging oyster aquaculture facilities is observed in Kamak bay, where the maximum velcocity decay rate is $25\%$ in spring tide. The model is also applied to the field, Kamak bay. The velocity decay rate in the model is comparable with the field measurement data. The velocity decreases around the down-stream area of the facilities, .hut it increases in the other region. The water elevation decreases during the flood and it increases during the ebb.

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Laboratory/In situ Sound Velocities of Shelf Sediments in the South Sea of Korea

  • Kim, Dae-Choul;Kim, Gil-Young;Jung, Ja-Hun;Seo, Young-Kyo;Wilkens, Roy H.;Yoo, Dong-Geun;Lee, Gwang-Hoon;Kim, Jeong-Chang;Yi, Hi-Il;Cifci, Gunay
    • Fisheries and Aquatic Sciences
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    • 제11권2호
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    • pp.103-112
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    • 2008
  • Compressional sound velocities of shelf sediments in the South Sea of Korea, were measured in situ and in the laboratory for six cores. In situ sound velocity was measured using the Acoustic Lance (frequency of 7.5-15 kHz), while laboratory velocity was measured by the pulse transmission technique (frequency of 1MHz). Physical properties were relatively uniform with sediment depth, suggesting little effect of sediment compaction and/or consolidation. Average in situ velocity at each core site ranged from 1,457 to 1,488 m/s, which was less than the laboratory velocity of 1,503 and 1,604m/s. In muddy sediments the laboratory velocity was 39-47 m/s higher than in situ velocity. In sandy sediments, the difference was greater by an average of 116 m/s. Although the velocity data were corrected by the velocity ratio method based on bottom water temperature, the laboratory velocity was still higher than the in situ velocity (11-21 m/s in muddy sediments and 91 m/s in sandy sediments). This discrepancy may be caused by sediment disturbance during core collection and/or by the pressure of Acoustic Lance insertion, but it was most likely due to the frequency difference between in situ and laboratory measurement systems. Thus, when correcting laboratory velocity to in situ velocity, it is important to consider both temperature and frequency.

Water quality big data analysis of the river basin with artificial intelligence ADV monitoring

  • Chen, ZY;Meng, Yahui;Wang, Ruei-yuan;Chen, Timothy
    • Membrane and Water Treatment
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    • 제13권5호
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    • pp.219-225
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    • 2022
  • 5th Assessment Report of the Intergovernmental Panel on Climate Change Weather (AR5) predicts that recent severe hydrological events will affect the quality of water and increase water pollution. To analyze changes in water quality due to future climate change, input data (precipitation, average temperature, relative humidity, average wind speed, and solar radiation) were compiled into a representative concentration curve (RC), defined using 8.5. AR5 and future use are calculated based on land use. Semi-distributed emission model Calculate emissions for each target period. Meteorological factors affecting water quality (precipitation, temperature, and flow) were input into a multiple linear regression (MLR) model and an artificial neural network (ANN) to analyze the data. Extensive experimental studies of flow properties have been carried out. In addition, an Acoustic Doppler Velocity (ADV) device was used to monitor the flow of a large open channel connection in a wastewater treatment plant in Ho Chi Minh City. Observations were made along different streams at different locations and at different depths. Analysis of measurement data shows average speed profile, aspect ratio, vertical position Measure, and ratio the vertical to bottom distance for maximum speed and water depth. This result indicates that the transport effect of the compound was considered when preparing the hazard analysis.

황해에서 저주파 광대역 음원을 이용한 전달손실의 계절변동 연구 (A Study on Seasonal Variation of Propagation Loss in the Yellow Sea Using Broadband Source of Low Frequency)

  • 김봉채;최복경
    • 한국음향학회지
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    • 제21권3호
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    • pp.213-220
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    • 2002
  • 해수중에서 음파는 수심, 음속구조 및 해저지질 등의 영향을 받으면서 전파한다. 특히 천해의 경우 해수중의 음속구조는 시공간적으로 심하게 변동하고 있고, 해저지질도 공간적으토 다양하게 분포한다. 황해에 있어서 저주파 음파전파의 계절변동을 조사하기 위하여 황해의 중앙부분에 위치하는 동일한 정선에서 봄철, 여름철, 가을철 등 서로 다른 계절에 저주파 광대역 음원을 이용하여 음파 전파실험을 실시하였다. 그리고 이 때에는 수중음파 전락환경을 파악하기 위하여 해수중 음속구조를 측정하였다. 이 논문에서는 황해에 있어서 음속구조 및 음파 전달손실의 측정결과에 관하여 고찰하였고, 음파 전달손실의 계절변동을 조사하였다. 그 결과 여름철에 측정된 전달손실은 봄철 및 가을철에 측정된 전달손실보다 크게 나타났고, 가을철에 측정된 전달손실은 봄철에 측정된 전달손실보다 다소 작게 나타났다. 그리고 계절에 의한 전달손실의 차이는 주파수 및 전파거리의 증가와 함께 증가하였다.