• Title/Summary/Keyword: 거칠기 길이

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Relation between Radar Backscattering Coefficients and Surface Profile Length for Bare Soil Surfaces Using Theoretical Predictions and Measurement Data (토양 표면에서의 레이더 산란 계수와 표면 거칠기 측정 길이의 관계에 대한 이론 모델과 측정 데이터의 비교)

  • Oh, Yi-Sok;Hong, Jin-Young
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.17 no.12 s.115
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    • pp.1181-1188
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    • 2006
  • The radar backscattering coefficients of soil surfaces with various roughness conditions are computed at first in this paper. The roughness parameters for various surface-profile lengths are also obtained. Then, the relationship between the radar backscattering coefficients and the profile length is studied. It was shown that the effect of the profile length is negligible on the backscattering coefficient, even though the roughness parameters vary a lot with the length of the surface profile.

Measurement of Joint Roughness in Large-Scale Rock Fracture Using LIDAR (LIDAR를 이용한 대규모 암반 절리면의 거칠기 측정)

  • Kim, Chee-Hwan;Kemeny, John
    • Tunnel and Underground Space
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    • v.19 no.1
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    • pp.52-63
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    • 2009
  • This is a study on large-scale rock joint roughness measurements using LIDAR (light detection and ranging) and the Split-FX point cloud processing software. The large-scale rock Joint Roughness Coefficient (JRC) is calculated using the maximum amplitude of joint asperities over the profile length on large-scale Joint surfaces of rock. As the profile length increases, JRC decreases due to scale-effects of rock specimens and is non-stationary. Also JRC shows anisotropy depending on the profile direction. The profile direction is measured relative to either dip or strike of the large-scale joint.

Estimation of Joint Roughness Coefficient(JRC) using Modified Divider Method (수정 분할자법을 이용한 절리 거칠기 계수(JRC)의 정량화)

  • Jang Hyun-Shic;Jang Bo-An;Kim Yul
    • The Journal of Engineering Geology
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    • v.15 no.3
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    • pp.269-280
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    • 2005
  • We assigned points on surface of standard roughness profile by 0.1mm along the length and measured coordinates of points. Then, the lengths of profile were measured with different scales using modified divider method. The fractal dimensions and intercepts of slopes were determined by plotting the length vs scale in log-log scale. The fractal dimensions as well as intercepts of slopes show well correlation with joint roughness coefficients(JRC). However, multiplication of the kactal dimension by intercept show better correlation with IRC and we derived a new equation to estimate JRC from fractal dimension and intercept. The crossover length in which we can determine the correct fractal dimension was between 0.3-3.2mm. We measured joint roughness of 26 natural joints and calculated JRC using the equation suggested by Tse and Cruden(1979) and new equation derived by us. IRC values calculated by both equations are almost the same, indicating new equation is effective in measuring IRC.

Classification of Subjective Sensation by Surface Fibers Measured by Image Analysis Technique (이미지 분석기법으로 측정한 표면섬유에 의한 주관적 감각 판별)

  • 김동옥;김은애
    • Proceedings of the Korean Society for Emotion and Sensibility Conference
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    • 2003.11a
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    • pp.1381-1385
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    • 2003
  • 본 연구에서는 이미지 분석기법으로부터 측정된 표면섬유과 가와바타 측정법에 의해 측정된 직물의 표면특성과 주관적 거칠기, 따뜻함간의 관계를 고찰하였다. 시료로는 춘추용 수트직물로 사용되는 평직과 능직의 소모직물 32종을 사용하였다. 표면섬유의 분석을 위해서 이미지 분석장치로부터 촬영된 직물 표면 이미지로부터 단위길이의 직물안에 들어가는 표면섬유의 총길이(Fiber Aggregate Length)가 측정되었다. 직물의 주관적 평가를 위해 일관성 테스트와 평가능력 향상 훈련을 마친 20명 패널을 대상으로 기준직물을 제시한 9 의미미분척도를 사용하여 직물의 거칠기와 따뜻함에 대해 평가하였다. 직물의 표면섬유와 주관적인 거칠기, 따뜻함간의 상관성이 분석되었고, 직물의 표면 특성, 표면섬유로부터 직물의 감각을 판별하는 판별식을 도출하였다.

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Evaluation of Heat Transfer Enhancement Performance for Wire Coil Inserts in Horizontal Smooth Tubes (수평 평활관 내부에 삽입한 와이어코일 인서트에 대한 전열성능평가)

  • 남상철;이주동;이상천
    • Journal of Energy Engineering
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    • v.9 no.3
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    • pp.202-211
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    • 2000
  • 본 연구는 다양한 각도를 가지는 와이어코일을 사용하여 관내 단상 열전달 촉진 및 압력강하 특성 실험을 수행하였다. 작동유체는 순수 물과 에틸렌글리콜을 체적비율로 50% 혼합하여 사용하였으며, 시험부 관지름은 11mm와 13.88mm이고, 시험부 길이는 760mm를 사용하였다. 평활관과 와이어코일을 삽입한 열전달촉진관에 대한 관내 열전달계수와 마찰계수는 실험에서 측정한 온도, 유량, 압력강하 값을 기초로 구하였다. 와이어코일에 대한 거친표면해석을 수행하였으며, 그 결과를 거칠기 래이놀즈수에 대한 운동량전송 거칠기함수와 열전달 거칠기함수로 표현하였으며 이에 대한 상관식을 제시하였다. 이 상관식들은 거칠기 레이놀즈수, 코일 각도, 프란틀수의 함수로 표현하였다.

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Automatic Extraction of Fractures and Their Characteristics in Rock Masses by LIDAR System and the Split-FX Software (LIDAR와 Split-FX 소프트웨어를 이용한 암반 절리면의 자동추출과 절리의 특성 분석)

  • Kim, Chee-Hwan;Kemeny, John
    • Tunnel and Underground Space
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    • v.19 no.1
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    • pp.1-10
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    • 2009
  • Site characterization for structural stability in rock masses mainly involves the collection of joint property data, and in the current practice, much of this data is collected by hand directly at exposed slopes and outcrops. There are many issues with the collection of this data in the field, including issues of safety, slope access, field time, lack of data quantity, reusability of data and human bias. It is shown that information on joint orientation, spacing and roughness in rock masses, can be automatically extracted from LIDAR (light detection and ranging) point floods using the currently available Split-FX point cloud processing software, thereby reducing processing time, safety and human bias issues.

Influence of the Geometry on the Natural Convection Heat Transfer inside a Vertical Cylinder (수직 원형관내 자연대류 열전달에서 기하구조의 영향)

  • Ohk, Seung-Min;Chung, Bum-Jin
    • Journal of Energy Engineering
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    • v.24 no.1
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    • pp.97-103
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    • 2015
  • Natural convection heat transfer rates in vertical pipes were measured varying the diameter, length, and roughness of vertical cylinder. To achieve high Rayleigh number with relatively small test rig, mass transfer experiments instead of heat transfer were performed based on the analogy. Prandtl number was 2,014. The length of vertical cylinder was 0.1m, 0.3m, and 0.5m, which correspond to GrL $4.2{\times}10^7$, $1.1{\times}10^9$, and $5.5{\times}10^9$. To each length of vertical cylinder, the heat transfer rates were measured varying the iameter 0.005m, 0.01m, and 0.03m. The heat transfer rate for a short length pipe(0.1m) agreed with the prediction from Le Fevre correlation developed for a vertical plate for all diameter. The heat transfer rate decreases as the diameter and the length of the pipe increases. The heat transfer rate inside of vertical cylinder is affected by roughness only for a laminar flow regime.

Analysis fo the Rock Joint Strength Characteristics Using New Rock Joint Roughness Quantification Method (암석의 절리면 거칠기 정량화 기법 개발을 통한 절리면 전단강도 특성 분석)

  • 이인모;홍은수;배석일;이석원
    • Journal of the Korean Geotechnical Society
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    • v.18 no.4
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    • pp.229-238
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    • 2002
  • This paper introduces the surface roughness parameter, Rs to the characterization of joint roughness and quantitatively illustrates the influence of joint roughness on the joint shear strength. A new peak shear strength criterion for rock joints using Rs is suggested. The results show that the surface roughness parameter, Rs can appropriately reflect the degree of roughness for the rock joint surfaces tested in this study A measuring interval of 2mm and profile length of 5cm can be used to characterize the joint roughness of the rock core size surfaces; however, the scale of fluctuation, $\delta_\alpha$ should be considered to extend the surface roughness parameter, Rs to the large-scale field rock joint surfaces. For the smooth joint roughness, sliding of the rock cores is the principal shear mechanism; however, the breakage of roughness from the rock cores is inferred for rougher joint roughness.

스퍼터링 방법을 이용한 사극 자석 진공용기 시제품 제작

  • Na, Dong-Hyeon;Park, Jong-Do;Ha, Tae-Gyun
    • Proceedings of the Korean Vacuum Society Conference
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    • 2013.02a
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    • pp.259-259
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    • 2013
  • 4세대방사광 가속기의 언듈레이터 사이에 설치되는 사극자석 진공용기는 내경 12 mm, 길이 300 mm인 매우 얇고 긴 형태로 제작되어야 하며, 비자성체이면서 전기 전도도와 내부 표면 거칠기 또한 우수하여야 한다. 스테인리스강 316 L EP 튜브는 비자성체로써 기계가공성 및 내부 표면 거칠기가 우수하다. 또한 내부에 DC Magnetron Sputtering을 통하여 알루미늄 층을 형성함으로써 높은 전기 전도도를 확보할 수 있다. 여기서는 스테인리스강 316 L EP 튜브를 이용하여 손쉽게 사극 자석 진공용기를 제작한 후, Cylindrical Magnetron Sputtering System을 구성하여 내부에 균일한 알루미늄 층을 증착하는 공정에 대해 설명하려고 한다. 또한 치밀한 알루미늄 산화막을 형성하는 공정에 대하여 현재까지 수행한 결과를 정리하여 보고하며 앞으로의 개발 과정도 다루고자 한다.

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