• 제목/요약/키워드: kinematic heterogeneity

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순간단위도의 왜곡된 형상에 대한 지형학적 접근 (Geomorphological Approach to the Skewed Shape of Instantaneous Unit Hydrograph)

  • 김주철;정관수;정동국
    • 한국수자원학회논문집
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    • 제48권2호
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    • pp.91-103
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    • 2015
  • 본 연구에서는 순간단위도의 보편적 특성 중 하나인 왜곡된 형상에 대하여 체계적인 접근을 시도하여 보았다. 이를 위하여 순간단위도의 통계모멘트에 대한 해석적 관계식을 지형학적 순간단위도 이론을 기반으로 유도하고 유역의 동수역학적 이질성, 지형학적 이질성 및 운동학적 이질성의 개념에 따라 정량화하여 수문학적 응답 함수를 왜곡시키는 원인에 접근해 보고자 하였다. 지표면 배수경로와 하천 배수경로 사이에는 큰 규모의 차가 존재하지만 전자는 후자에 비하여 작은 규모임에도 불구하고 오히려 큰 변동계수를 가지며 왜곡계수 역시 다른 경향을 나타냄을 볼 수 있었다. 순간단위도의 형상은 동수역학적 이질성보다는 운동학적 이질성에 지배를 받으며 특히 지형학적 이질성과 결합하여 수문학적 응답함수에 왜도를 발생시키는 주요 원인이 될 수 있음을 알 수 있었다. 지표면과 하천의 배수경로들이 갖는 통계특성은 무차원 통계량의 형태로 수문학적 응답함수에 전달되어 지는데 이들 사이의 상대적 중요도에 따라 수문학적 응답함수의 전반적 형상이 결정되는 것으로 판단할 수 있었다.

초지의 지표면 흐름을 추적하기 위한 Kinematic Wave Model의 개발(II) - 포장실험과 모형의 응용 - (Development of a Kinematic Wave Model to Route Overland Flow in Vegetated Area (II) -Runoff Plot Experiments and Model Application-)

  • 최중대;;최예환;유능환
    • 한국농공학회지
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    • 제35권3호
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    • pp.74-80
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    • 1993
  • Runoff simulation tests to investigate the flow mechanics of nonsuomerged overland flow in a natural grass intervening land system were condueted and a modified kinematic wave overland runoff model developed by Choi et al. (1993) was verified. Nonhomogeneity and heterogeneity of the soil, slope, local topography, infiltration, grass density, and the density and activity of the soil microhes and wild animals were the major factors affecting the flow. Streamlines were disturbed by grass stems and small concentrated flows due to the disturbed streamlines and local topography were observed a lot. Relatively larger concentrated flows were observed where bundles of grass were dominant than where individual grasses were growing. Predicted hydrographs were agreed verv well with measured hydrographs. Since the modified model considers grass density in computing flow depth and hydraulic radius, it can be better than existing kinematic wave model if it were used to route nonpoint source pollutant attenuation processes in many grass intervening land systems.

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저싸이클 피로해석을 위한 용접 토우부 노치 응력-변형을 해석 (Notch Strain Analysis for Low Cycle Fatigue of Welded Joint)

  • 김유일;강중규;심천식;이성근
    • 대한용접접합학회:학술대회논문집
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    • 대한용접접합학회 2005년도 춘계학술발표대회 개요집
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    • pp.112-114
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    • 2005
  • Direct nonlinear finite element analysis was carried out using nonlinear kinematic hardening model which was calibrated based on the experimentally determined material properties to obtain notch stress-strain state under cyclic load. By comparing numerical results and experimental data, conclusion was made on how well analysis results match physical phenomenon. Also, suggestion was made on what material curve should be used in conjunction with traditional Neuber/Glinka's rule to take into account the effect of material heterogeneity in its application to welded joint.

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Micro-Mechanical Approach for Spanwise Periodically and Heterogeneously Beam-like Structures

  • 이창용
    • 한국태양에너지학회 논문집
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    • 제36권3호
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    • pp.9-16
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    • 2016
  • This paper discusses a refined model for investigating the micro-mechanical behavior of beam-like structures, which are composed of various elastic moduli and complex geometries varying through the cross-section directions and are also periodically-repeated and heterogeneous along the axial direction. Following the previous work (Lee and Yu, 2011), the original three-dimensional static problem is first formulated in a unified and compact form using the concept of decomposition of the rotation tensor. Taking advantage of the smallness of the cross-sectional dimension-to-length parameter and the micro-to-macro heterogeneity, while also performing homogenization along the dimensional reduction simultaneously, the variational asymptotic method is rigorously used to construct a total energy function, which is asymptotically correct up to the second order. Furthermore, through the transformation procedure based on the pure kinematic relations and the linearized equilibrium equations, a generalized Timoshenko model is systematically established. For the purpose of dealing with realistic and complex geometries and constituent materials at the microscopic level, this present approach is incorporated into a commercial analysis package. A few examples available in literature are used to demonstrate the consistency and efficiency of this proposed model, especially for the structures, in which the effects of transverse shear deformations are significant.