• Title/Summary/Keyword: 수위진단

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Development of a method for diagnosing the severity of water stage-discharge hysteresis using water surface slope (수면경사활용 수위-유량 이력현상 현저성 진단기법 개발)

  • Kim, Kyungdong;Kim, Dongsu
    • Proceedings of the Korea Water Resources Association Conference
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    • 2021.06a
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    • pp.54-54
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    • 2021
  • 최근 홍수파 또는 댐 및 보 등의 하천 구조물과, 본류와 지류의 합류로 인해 발생하는 배수영향 등으로 하천에 고리형 수위-유량관계의 이력현상이 발생하여, 수위-유량관계식으 신뢰도가 저하된다고 판단하여, 대하천 본류와 합류부 인근 지류에 초음파기반유속계(ADCP)의 측정결과를 지표로 활용하는 자동유량관측소가 현재 58개소가 구축되어 운용되고 있다. 그러나, 4대강 사업으로 다기능보의 설치 등으로 인해 하천의 수리학적 특성이 변동되었고, 지류에서 주로 운용하는 수위-유량관계 기반 유량관측소에 수문사상으로 인해 발생한 홍수파 또는 배수영향으로 인한 하천에 수위-유량관계의 이력현상이 발생할 경우, 지류 수위관측소를 자동유량관측소로 대체할 필요성이 제기되고 있다. 기존의 자동유량관측소의 경우 홍수량이 기준이하로 발생할 경우 수위-유량 관계식으로 대체하는 경우도 있지만, 적용기준이 명확하지 않다. 또한, 하천의 수위-유량관계의 이력현상이 발생했을 경우 수위-수면경사의 이력현상도 같이 발생하게 된다. 수면경사의 경우 기존 수위관측소로부터 수위 측정결과로부터 산정할 수 있기에, 수면경사로부터 하천의 이력현상 현저성을 산정할 경우 자동유량 장치를 활용하지 않고 이력현상 현저성 진단을 할 수있다. 따라서, 본 연구에서는 신규 자동유량장치 설치, 기존 수위관측소의 자동유량관측소대체, 자동유량관측소에서 수위-유량관계의 활용 기준 마련 등을 명확하게 판단하기 위해 상류에 위치한 수위관측소의 수위 측정으로부터 하천의 수면경사를 산정하고 수면경사를 활용하여 수위-유량관계 이력현상의 패턴을 분석하여 현저성을 진단하는 기법을 개발하고자 한다. 이를 위해, 다기능보 설치 및 지류-본류로 인한 지류하천의 배수영향과 홍수파에 의해 발생한 수위-유량관계의 이력현상를 다양한 수문사상에 대하여 분석 하였다. 분석방법으로는 대상유역으로 수위-유량관계의 이력현상이 발생하는 영산강유역에 위치한 남평교, 나주대교 두 지점을 선정하고 자동유량관측소 상류에 위치한 기존 수위관측소의 수위 측정값으로부터 하천의 수면경사를 산정하고 수위-유량관계와 수위-수면경사관계의 패턴을 분석하고, 수위-수면경사의 이력현상으로 부터 수위-유량관계 이력현상의 현저성을 진단하였다. 분석결과 각 수문사상마다 수위-유량관계의 최대이력범위와, 수위-수면경사의 최대이력범위를 각각 무차원화시켜 관계그래프를 산정하였다. 남평교의 경우 수위-유량관계의 이력현상이 현저히 나타남에도 불구하고 수위-수면경사의 이력범위는 거의 없었다. 나주대교의 경우 수위-유량관계와, 수위-수면경사관계 각각의 이력범위가 현저히 나타나 관계를 분석하기 용이하였다. 또한, 나주대교관측소지점의 분석을 통하여 수위-수면경사 이력범위의 유의 수준을 두어 일정 이력범위(20%)가 발생한 경우, 수위-유량관계의 이력현상이 현저함을 알 수 있었다. 이러한 결과를 바탕으로 20%이상의 이력범위를 수위-수면경사의 이력범위로부터 수위-유량관계의 현저성을 판단하는 기준으로 제안하였다.

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Study on a Real Time Quantitative Diagnostic Technique for Measuring CVD Precursors (CVD 공정의 전구체 잔존량 실시간 진단방법 연구)

  • Yun Ju-Young;Shin Yong-Hyoen;Chung Kwang-Hwa
    • Journal of the Korean Vacuum Society
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    • v.14 no.3
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    • pp.110-114
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    • 2005
  • This study proposes an accurate method of monitoring precursor consumption in chemical vapor deposition (CVD) systems. Since precursor costs are significant, finding an efficient method to monitor precursor consumption is necessary One example is the use of non-contact and inexpensive ultrasonic sensors for determining the liquid level in a container. In this study, sensors based on ultrasonic techniques have been developed for monitoring the precursor consumption in a CVD system. Moreover, the prototype sensors developed in this study can be useful in the field of semiconductors.

Fault Detection and Diagnosis of the Deaerator System in Nuclear Power Plants (원전 탈기기 시스템의 수위 측정 센서의 고장 검출 및 진단)

  • Kim, Bong-Seok;Lee, In-Soo;Lee, Yoon-Joon;Kim, Kyung-Youn
    • Journal of IKEEE
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    • v.7 no.1 s.12
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    • pp.107-118
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    • 2003
  • In this paper, dynamic control model is formulated by considering the geometrical structure of the deaerator storage tank in nuclear power plant and input-output flow rate at steady state, and we describe fault detection and diagnosis (FDD) scheme based on the adaptive estimator. The performance and effectiveness of the proposed FDD scheme are evaluated by applying real operating data obtained from the YOUNGKWANG 3 & 4 FSAR.

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A Study on the Verification of water level criteria for forecasting system of reservoir failure (저수지 붕괴예보 시스템의 수위기준 검증 연구)

  • Lee, Baeg;Choi, Byounghan
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.23 no.3
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    • pp.51-55
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    • 2019
  • The loss of safety for reservoirs brought about by climate change and facility aging leads to reservoir failures, which results in the loss of lives and property damage in downstream areas. Therefore, it is necessary to provide a Reservoir Failure Forecasting System for downstream residents to detect the early signs of failure (with sensors) in real-time and perform safety management to prevent and minimize possible damage. For the verification of established water level management criteria, 10 water level data up to reservoir capacity was selected. Weight factor and trend line were applied to dramatic increase section of water level in the 1 year period data. The results shows that water level criteria based on three even parts shows less than 7% of standard deviation and it is appropriate to verify management criteria.

Data Quality Assessment and Improvement for Water Level Prediction of the Han River (한강 수위 예측을 위한 데이터 품질 진단 및 개선)

  • Ji-Hyun Choi;Jin-Yeop Kang;Hyun Ahn
    • Journal of Advanced Navigation Technology
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    • v.27 no.1
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    • pp.133-138
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    • 2023
  • As a side effect of recent rapid climate change and global warming, the frequency and scale of flood disasters are increasing worldwide. In Korea, the water level of the Han River is a major management target for preventing flood disasters in Seoul, the capital of Korea. In this paper, to improve the water level prediction of the Han River based on machine learning, we perform a comprehensive assessment of the quality of related dataset and propose data preprocessing methods to improve it. Specifically, we improve the dataset in terms of completeness, validity, and accuracy through missing value processing and cross-correlation analysis. In addition, we conduct a performance evaluation using random forest and LightGBM to analyze the effect of the proposed data improvement method on the water level prediction performance of the Han River.

Development of Smart Cargo Level Sensors Including Diagnostics Function for Liquid Cargo Ships (액체운반용 선박을 위한 진단기능을 가지는 스마트 카고 센서 개발)

  • Bae, Hyeon;Kim, Youn-Tai;Park, Dae-Hoon;Kim, Sung-Shin;Choi, Moon-Ho;Jang, Yong-Suk
    • Journal of the Korean Institute of Intelligent Systems
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    • v.18 no.3
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    • pp.341-346
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    • 2008
  • This paper is to develop a monitoring system with diagnosis for smart cargo sensors that is for management and maintenance of the liquid cargo ships. The main goal of the system is to achieve the total automation system of the cargo sensor. By this study, the active smart sensor for the liquid cargo ships is designed and developed that guarantees high-confidence, stability, and durability. The proposed system consists of a monitoring part of the steam pressure, high-level monitoring, over flowing monitoring, gas monitoring, and tank temperature monitoring. The signals transferred from each unit system are used for sensor diagnosis based on confidence and accuracy. Finally, in this study, the total supervisory monitoring system is developed to maintain and manage the cargo effectively based on fault diagnosis and prognosis of the each sensor system.

Development of Measuring Method for Bridge Scour and Water Level Using Temperature Difference Between Medium Interfaces (매질 경계면의 온도 변화를 이용한 교량 세굴 및 수위 측정방법 개발)

  • Joo, Bong-Chul;Park, Ki-Tae;You, Young-Jun;Hwang, Yoon-Koog
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.18 no.2
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    • pp.126-133
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    • 2014
  • The main source of bridge destruction is due to scour. The bridge scour is the result of erosive action of flowing water taking away ground materials from near the abutment or pier. Furthermore, the water level must be also monitored whiling flooding, because it dangers not only the stability of bridge itself, but the safety of bridge users. This study is intended to develop a new measuring system for bridge scour by overcoming the current limitation of scour measurement technique. This measuring system is confirmed its excellence and validity through this study. The newly developed measuring system finds the distance between the water surface and the ground surface by detecting temperature difference along the abutment vertically. The measuring mechanism for monitoring the bridge scour and water level is based on identifying the temperature difference among mediums, including air, water and ground. In order to validate the new measuring system, the lab experiments and the field tests are conducted and compared. It has been confirmed that this system can effectively measure the bridge scour and the water level by analyzing the temperature distribution between mediums and the temperature variation over time.

Behavioral Characteristics and Safety Management Plan for Fill Dam During Water Level Fluctuation Using Numerical Analysis (수치해석을 이용한 수위변동시 필댐의 거동특성 및 안전관리방안)

  • Jung, Heedon;Kim, Yongseong;Lee, Moojae;Lee, Seungjoo;Tamang, Bibek;Heo, Joon;Ahn, Sungsoo
    • Journal of the Korean Geosynthetics Society
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    • v.20 no.1
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    • pp.45-55
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    • 2021
  • In this study, the behavioral characteristics of the fill dam were analyzed during water level fluctuations through a numerical analysis model, and the reservoir safety management plan was prepared. The variation in plastic deviatoric strain, horizontal displacement, stress path, pore water pressure, etc., due to elevation of water level in the upper and lower sides of shell and core were analyzed using numerical analysis software, viz. GTS NX and LIQCA. The analysis results manifest that as the water level in the dam body increases rapidly, the pore water pressure and displacement also increase quickly. It was found that the elevation of the water level causes an increase in pore water pressure in the dam body as well as an increase in the saturation of the dam body and decreased effective stress. It is considered that this type of dam behavior can be the cause of the reduction of strength and stiffness of the dam. Also, it is assumed that the accumulated plastic deviatoric strain due to the deformation of the dam body caused by water infiltration causes an increase in displacement. Based on these experimental results and the results of analyses of the existing reservoir safety diagnosis techniques, an improvement plan for dam safety diagnosis and evaluation criteria was proposed, and these results can be used as primary data while revising dam safety diagnosis guidelines.

Fully Coupled Seismic Analysis of Stress-Flow According to Tunnel Drainage Type (터널 배수 형식에 따른 응력-침투 연계 내진해석)

  • Byoung-Il Choi;Myung-Ho Ha;Dong-Ha Lee;Eun-Cheol Noh;Si-Hyun Park
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.27 no.4
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    • pp.94-103
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    • 2023
  • Built in urban ares tunnels is necessary to accurately grasp not only the above-ground environment of the tunnel but also the below-ground environment of the tunnel for design and construct. However, fully coupled analysis of stress and flow is very difficult due to the limited function of the tunnel numerical analysis program and difficulty in using program. This can lead to excessive design that increases the construction cost or occur problems that can lead to accidents during construction. In particular, in the case of an urban tunnel has a low layer soil section above the tunnel and the groundwater level exists in the upper layer of the tunnel. Therefore, a reduction in the groundwater level during underground construction may increase the effective stress of the upper layer and cause the ground to subsidence. So It is necessary to design after accurately evaluating the change in the groundwater level. In this study, the tunnel's behavioral characteristics were analyzed through fully coupled analysis of stress and flow according to the drainage type for an urban underground tunnel.