• Title/Summary/Keyword: 2차원적 계측법

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Two-dimensional Spatial Distribution Analysis Using Water Quality Measurement Results at River Junctions (하천 합류부에서의 수질계측결과를 활용한 2차원 공간분포 해석)

  • Lee, Chang Hyun;Park, Jae Gon;Kim, Kyung Dong;Ryu, Si Wan;Kim, Dong Su;Kim, Young Do
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.42 no.3
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    • pp.343-350
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    • 2022
  • High-resolution data are needed to understand water body mixing patterns at river junctions. In particular, in river analysis, hydrological and water quality characteristics are used as basic data for aquatic ecological health, so observation through continuous monitoring is necessary. In addition, since measurement is carried out through a one-dimensional and fixed measurement method in existing monitoring systems, a hydrological and water quality characteristics investigation of an entire river, except for in the immediate vicinity of the measurement point, is not undertaken. In order to obtain high-resolution measurement data, a measurer has to consider multiple factors, and the area or time that can be measured is limited. Although the resolution might be lowered, an appropriate interpolation method must be selected in order to acquire a wide range of data. Therefore, in this study, a high-elevation measurement method at a river junction was introduced, and the interpolation method according to the measurement results was compared. The overall hydraulic and water quality information of the river was indicated through the visualization of the prediction and interpolation method in the low-resolution measurement result. By comparing each interpolation method, Inverse Distance Weighting, Natural Neighbor, and Kriging techniques were applied in river mapping to improve the precision of river mapping through visualized data and quantitative evaluation. It is thought that this study will offer a new method for measuring rivers through spatial interpolation.

Experimental Study on Microseismic Source Location by Dimensional Conditions and Arrival Picking Methods (차원 및 초동발췌방법에 따른 미소진동 음원위치결정 실험연구)

  • Cheon, Dae-Sung;Yu, Jeongmin;Lee, Jang-baek
    • Tunnel and Underground Space
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    • v.29 no.4
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    • pp.243-261
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    • 2019
  • Microseismic monitoring technologies have been recognized for its superiority over traditional methods and are used in domestic and overseas underground mines. However, the complex gangway layout of underground mines in Korea and the mixed structure of excavated space and rock masses make it difficult to estimate the microseismic propagation and to determine the arrival time of microseismic wave. In this paper, experimental studies were carried out to determine the source location according to various arrival picking methods and dimensional conditions. The arrival picking methods used were FTC (First Threshold Cross), Picking window, AIC (Akaike Information Criterion), and 2-D and 3-D source generation experiments were performed, respectively, under the 2-D sensor array. In each experiment, source location algorithm used iterative method and genetic algorithm. The iterative method was effective when the sensor array and source generation were the same dimension, but it was not suitable to apply when the source generation was higher dimension. On the other hand, in case of source location using RCGA, the higher dimensional source location could be determined, but it took longer time to calculate. The accuracy of the arrival picking methods differed according to the source location algorithms, but picking window method showed high accuracy in overall.

Case study of microseismic techniques for stability analysis of pillars in a limestone mine (석회석 광산 내 광주의 안정성 분석을 위한 미소진동 계측기술의 현장적용)

  • Kim, Chang Oh;Um, Woo-Yong;Chung, So-Keul;Cheon, Dae-Sung
    • Tunnel and Underground Space
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    • v.26 no.1
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    • pp.1-11
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    • 2016
  • This study deals with the case that was the field application of the microseismic monitoring techniques for the stability monitoring in a domestic mine. The usefulness and limitations of the microseismic techniques were examined through analyzing the microseismic monitored data. The target limestone mine adopted a hybrid room-and-pillar mining method to improve the extraction ratio. The accelerometers were installed in each vertical pillar within the test bed which has the horizontal cross-section $50m{\times}50m$. The measured signals were divided into 4 types; blasting induced signal, drilling induced signal, damage induced signal, and electric noise. The stability analysis was performed based on the measured damage induced signals. After the blasting in the mining section close to the test bed, the damage of the pillar was increased and rockfall near the test bed could be estimated from monitored microseismic data. It was possible to assess the pillar stability from the changes of daily monitored data and the proposed safety criteria from the accumulated monitored data. However, there was a difficulty to determine the 3D microseismic source positions due to the 2D local sensor arrays. Also, it was needed to use real-time monitoring methods in domestic mines. By complementing the problems encountered in the mine application and comparing microseismic monitored data with mining operations, the microseismic monitoring technique can be used as a better safety method.

Design and Verification of 3D Digital Image Correlation Systems for Measurement of Large Object Displacement Using Stereo Camera (대면적 대상물 변위계측을 위한 스테레오 카메라 3차원 DIC 시스템 기초설계 및 검증에 관한 연구)

  • Ko, Younghun;Seo, Seunghwan;Lim, Hyunsung;Jin, Tailie;Chung, Moonkyung
    • Explosives and Blasting
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    • v.38 no.2
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    • pp.1-12
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    • 2020
  • Digital Image Correlation is a well-established method for displacements, strains and shape measurements of engineering objects. Stereo-camera 3D Digital Image Correlation (3D-DIC) systems have been developed to match the specific requirements for measurements posed by material and mechanical industries. Although DIC method provides the capabilities of scaling a field-of-view(FOV), dimensions of Geotechnical structure objects in many cases are too big to be measured with DIC based on a single camera pair. It can be the most important issue with applying 3D DIC to the measurement of Geotechnical structures. In this paper, We were present stereo vision conditions in a 3D DIC system that can be measured for large FOV(30×20m) and high precisions(z-displacement 0.5mm) of the ground objects with Stereo-camera DIC systems.

Inundation Simulations for an Ungauged Basin with a Pump Station (배수 펌프장을 포함한 미계측 유역에 대한 침수 모의)

  • Jin, Youngkyu;Lee, Sangho;Jeong, Taek-Mun;Kang, Taeuk
    • Proceedings of the Korea Water Resources Association Conference
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    • 2019.05a
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    • pp.213-213
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    • 2019
  • 소하천으로 지정된 작은 규모의 하천은 '소하천정비종합계획'에 따라 지정된 빈도 유량 내에서 범람에 의한 침수 피해를 예방하기 위해 주기적으로 정비되고 있다. 소하천으로 지정되지 않은 하천의 경우에는 하천 정비와 관련된 법이 없으므로, 하천 정비 및 하천 관련 자료들이 미흡하다. 경상남도 양산시 물금읍 증산리의 증산 배수펌프장 유역은 2016년 10월 5일 태풍 '차바'의 호우로 인해 그 일원(농경지 및 주거지)이 침수되었다. 증산 배수펌프장 유역에는 소하천으로 등록되지 않은 새도랑천과 새도랑천의 시점부로 합류되는 이름 없는 하천(무명천)이 있고, 해당 하천의 단면 및 침수 모의에 필요한 자료가 없거나 오차가 큰 경우가 있다. 본 연구의 목적은 침수 모의에 필요한 자료들이 부족한 소규모 하천 유역에 대하여 기초 자료를 구축하는 과정과 이를 이용한 침수 모의 결과를 제시하는 것이다. 증산 배수펌프장 유역에 대해 침수 모의 시 필요한 자료는 강우량, 펌프 유량, 펌프장 유수지 제원, 지반고, 하천 단면, 농수로 단면, 인근 도시 지역의 하수관거 제원 등이다. 증산 배수펌프장 유역은 유역 내 하천수의 대부분을 펌프장을 통해 배수가 가능하다. 이와 같은 유역특성을 활용하여 유수지 제원, 하천 단면, 지반고 자료는 유수지 및 하천에 있는 물을 배수해서 무인항공기 측량으로 구축하였다. 증산 배수펌프장 유역의 침수모의는 준2차원 침수 모의가 가능한 CHI 사의 PCSWMM을 이용하였다. 침수 모의를 위한 모형에서 펌프장 모의 시 입력한 수심-양수량 관계 자료는 펌프 가동 일지를 참고하여 시행착오법으로 추정하였다. 침수 모의 결과 평균 침수심은 0.226 m, 최대 침수심은 0.800 m, 침수면적은 $0.562km^2$이다. 태풍 '차바'로 인한 침수 상황에 대하여 탐문조사 결과는 침수심이 약 0.2 ~ 0.3 m이었으며, 모의된 평균 침수심이 조사결과에 부합하는 것으로 판단된다. 증산 펌프장을 통하여 양수된 양에 대한 기록 자료와 모의 결과의 차이는 펌프 모의 운영 종료 시점까지 약 0.5%이다. 본 연구의 검증 자료는 인위적인 펌프 운영 일지 및 침수 상황의 사진으로 검증했다는 한계가 있다. 그러나 무인항공기 측량 및 현장조사, 펌프 운영 일지를 활용한 수심-양수량 관계의 추정으로 생산된 입력자료를 이용하여 모의한 결과는 실제 상황에 부합하는 결과가 도출된 것으로 판단된다.

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A Study on the Slowly Varying Wave Drift Force Acting on a Semi-Submersible Platform in Waves (반잠수식 시추선에 작용하는 장주기 표류력에 관한 연구)

  • S.Y.,Hong;P.M.,Lee;D.C.,Hong
    • Bulletin of the Society of Naval Architects of Korea
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    • v.26 no.2
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    • pp.49-63
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    • 1989
  • Wave drift forces which are small in magnitudes compared to the first order wave exciting forces can cause very large motion of a vessel in waves. In this paper a theoretical and experimental analysis is made of the mean and slowly varying wave dirft forces on the semi-submersible platform. Theoretical calculations are performed by using near field method with three dimensional diffraction theory and model tests are carried out in regular and irregular waves with a 1/60 semi model. Test results are compared with theoretical calculations and the mooring spring effects in the test are discussed.

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Prediction of Osteoporosis using Compositive Analysis of Trabecular Patterns on Proximal Femur (대퇴 근위부의 골소주 패턴에 대한 복합적인 분석을 통한 골다공증 예측 연구)

  • Lee, Ju-Hwan;Park, Sung-Yun;Jeong, Jae-Hoon;Kim, Sung-Min
    • The KIPS Transactions:PartB
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    • v.19B no.2
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    • pp.99-106
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    • 2012
  • The purpose of this study was to determine the evaluation parameters' osteoporosis predictability in accordance with measuring regions by analyzing the correlations between bone mineral density and trabecular patterns derived from different measuring regions. Experimental subjects were a total of 40 female patients after menopause aged over 40 years, and were classified into 20 control and 20 osteoporotic groups according to the T-score. Bone mineral density was measured on femoral neck, trochanter and ward's triangle by DEXA(Dual Energy X-ray Absorptiometry). We designated ROI(Region of Interest) with $50{\times}50$ pixel size on each measuring regions, and extracted trabecular patterns by using existing image processing method. We also selected a total of eight evaluation parameters that are categorized into structural(mean gray level, area, perimeter, thickness and terminal distance), skeletonized parameters(number, length) and fractal dimension. As a result, it was observed that area, perimeter, thickness, terminal distance, number, length and fractal dimension reflected the bone mineral density with high statistical validity(p<0.003). We also confirmed that the evaluation parameters could predict the osteoporosis more efficiently.

Dentoalveolar Compensation according to Skeletal Patterns of Normal Occlusion (정상교합자의 골격형에 따른 치아치조보상)

  • Lee, Shin-Jae;Chang, Young-Il;Ku, Seung-Jun
    • The korean journal of orthodontics
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    • v.32 no.2 s.91
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    • pp.91-105
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    • 2002
  • In general, orthodontists make problem lists and treatment plans based on norms of several cephalometric standards. But consideration of dentoalveolar compensation, which tends to maintain normal dental arch relationship in various skeletal jaw relationships, helps orthodontists make more individualized treatment objectives and plans. The purpose of this study was to classify skeletal patterns of normal occlusion samples by cluster analysis and to investigate the dentoalveolar compensation according to skeletal patterns. The subjects were consisted of 125 subjects who were normal occlusion samples at Seoul National University Dental Hospital, Department of Orthodontics. Lateral cephalograms in centric occlusion were traced and digitized. The skeletal patterns of normal occlusion samples were classified into three horizontal groups and three vertical groups by cluster analysis and ANOVA on the skeletal and dentoalveolar measurements among the groups were carried out. The results were as follows ; 1. Anteroposterior and vertical skeletal relationships of normal occlusion samples were very variable. 2. As the mandibular position was anterior to the maxilla, the maxillary incisors inclined more labially, the mandibular incisors more lingually, and the occlusal plane was flattened due to the anteroposterior dentoalveolar compensation. dentoalveolar height was decreased and upper posterior teeth was uprighted to the palatal plane and lower incisors and lower posterior teeth to the mandibular plane. 4. Lower incisors were more strongly associated with the dentoalveolar compensation than upper incisors according to the anteroposterior and vertical skeletal relationship.

An Experimental Study on Flow Characteristic around a Flap rudder (플랩러더 주위의 유동특성에 관한 실험적 연구)

  • Gim, Ok-Sok;Cho, Dae-Hwan;Lee, Gyoung-Woo;Ko, Jae-Yong
    • Proceedings of KOSOMES biannual meeting
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    • 2006.11a
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    • pp.277-282
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    • 2006
  • The purpose in having a control surface on a ship is to control the motion of the ship. The control surface may be composed entirely of a single movable surface or of a combination of fixed and movable portion A control surface has one sole function to perform in meeting its purpose, and that is to develop a control force in consequence of its orientation and movement relative to the water. The forces and moments generated as a result of this rotation and angle of attack then determine the maneuvering characteristics of the ship. In this paper the study of flapped rudder's 2-dimensional section was accomplished. Model tests had been carried out with different angles of attack of a main foil and flap's deflection angles to predict the performance of the flapped rudder and the 2 frame particle tracking method had been used to obtain the velocity distribution in the flow field $Re=2.8\times10^4$ had been used during the whole experiments and measured results had been compared with each other.

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Insulation Characteristic Analysis of SF6 Voltage Transformer between Windings (SF6 계기용 변압기의 권선간 절연특성해석)

  • Son, Ju-Wan;Hahn, Sung-Chin
    • Proceedings of the KIEE Conference
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    • 2011.07a
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    • pp.1063-1064
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    • 2011
  • GIS에 이상전압이 흐를 때, 이를 계측하여 전력기기의 손상 및 고장을 미연에 방지하기 위해 SF6 계기용 변압기를 사용한다. 이러한 계기용 변압기는 절연 파괴가 일어나지 않도록 설계하여야 한다. 특히, 절연은 권선 부분이 중요한 구성 요소로, 권선간의 전기적 절연특성해석을 통하여 전계강도를 완화할 수 있는 절연 설계를 수행하여야 한다. SF6 계기용 변압기는 SF6가스의 유전율이 절연물에 비해 적기때문에 가스에서의 전계 집중 현상이 생기게 된다. 본 논문에서는 SF6 계기용 변압기의 권선간 절연특성해석을 수행하였다. 1차 권선과 2차 권선의 형상을 모델링하고 유한요소법을 사용하여 축대칭 2차원 전계해석을 수행한다. 이 때 발생하는 전계강도를 예측하고 최대전계강도가 발생하는 영역을 찾는다.

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