• 제목/요약/키워드: Transverse plane

검색결과 425건 처리시간 0.021초

지적삼각(보조)점의 국가지점번호 활용방안에 관한 연구 (A Study on the application of planning national index numbers in the Cadastral triangulation point)

  • 이형삼;신순호;성연동
    • 지적과 국토정보
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    • 제45권2호
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    • pp.45-56
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    • 2015
  • 본 연구는 지번주소의 단점을 보완하고 국가지점번호의 효율적인 설치를 위하여 지적삼각(보조점)을 활용하는 방안을 연구하였다. 연구를 위하여 노원구 산악지역에 분포한 지적삼각점 7점을 실험대상으로 선정하고 각각의 점마다 가지고 있는 평면직각좌표를 단일평면직각좌표계(UTM-K)로 변환을 실시하였으며, 변환된 좌표의 정확도를 검증하기 위하여 Network-RTK을 이용하여 단일평면직각좌표로 관측하였다. 검증결과 최대 0.06m의 오차를 나타냈으나, 국가지점번호 검증 등에 관한 규정 제7조 2항에서 규정한 범위 이내로 지적삼각(보조)점을 현지측량을 생략하고 변환만으로 국가지점번호로 활용하기에 만족할 수 있는 성과를 얻을 수 있었다. 또한 현지검증측량을 생략할 수 있어 경제적 효율성과 지적삼각(보조)점의 안전한 보전이 가능하다는 결론을 도출하였다.

Shear lag effects on wide U-section pre-stressed concrete light rail bridges

  • Boules, Philopateer F.;Mehanny, Sameh S.F.;Bakhoum, Mourad M.
    • Structural Engineering and Mechanics
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    • 제68권1호
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    • pp.67-80
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    • 2018
  • Recently, U-section decks have been more and more used in metro and light rail bridges as an innovative concept in bridge deck design and a successful alternative to conventional box girders because of their potential advantages. U-section may be viewed as a single vent box girder eliminating the top slab connecting the webs, with the moving vehicles travelling on the lower deck. U-section bridges thus solve many problems like limited vertical clearance underneath the bridge lowest point, besides providing built-in noise barriers. Beam theory in mechanics assumes that plane section remains plane after bending, but it was found that shearing forces produce shear deformations and the plane section does not remain plane. This phenomenon leads to distortion of the cross section. For a box or a U section, this distortion makes the central part of the slab lagging behind those parts closer to the webs and this is known as shear lag effect. A sample real-world double-track U-section metro bridge is modelled in this paper using a commercial finite element analysis program and is analysed under various loading conditions and for different geometric variations. The three-dimensional finite element analysis is used to demonstrate variations in the transverse bending moments in the deck as well as variations in the longitudinal normal stresses induced in the cross section along the U-girder's span thus capturing warping and shear lag effects which are then compared to the stresses calculated using conventional beam theory. This comparison is performed not only to locate the distortion, warping and shear lag effects typically induced in U-section bridges but also to assess the main parameters influencing them the most.

파노라마방사선사진에서 환자의 머리 위치가 하악 수직, 수평 확대율에 미치는 영향 : 전후방 및 좌우 이동 (Effect of Head Positioning in Panoramic Radiography on the Vertical and Horizontal Magnification : Displacement along the Sagittal and Transverse Plane)

  • 김용건;이영균;안서영
    • 구강회복응용과학지
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    • 제29권3호
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    • pp.249-258
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    • 2013
  • 이 연구의 목적은 환자의 머리 위치에 따른 파노라마방사선사진의 수평 및 수직 확대율을 비교 평가하는 것이었다. 직경 4 mm인 금속구를 건조 두개골의 하악 전치부와 우측 대구치부의 치조골 상방에 위치시켰다. 수평 및 수직적 위치의 변화를 재현하기 위해 수직, 수평 이동량을 조절할 수 있는 두개골 고정장치를 이용하여, 전방, 후방, 좌측 및 우측으로 이동시킨 후 파노라마방사선사진을 OP-100D를 이용하여 획득하였다. 촬영된 영상은 DICOM 형식으로 저장되었고, INFINITT PACS software를 이용하여 금속구의 폭과 높이의 평균값을 구하였다. 적절한 위치에서 촬영된 파노라마방사선사진에서 금속구의 수평 확대율은 1.224-1.439였고, 수직 확대율은 1.286-1.345였다. 건조 두개골의 위치 변화에 따른 수평 확대율은 0.798-6.297로 통계적으로 유의한 차이를 보인 반면(P<0.05), 수직 확대율은 1.245-1.418 정도로 수평 확대율에 비해 차이를 보이지 않았다.

일어서기 동작 시 시상면 골반 기울임이 엉덩관절과 무릎관절의 운동형상학에 미치는 영향 (Effect of Sagittal Pelvic Tilt on Kinematic Changes of Hip and Knee Joint During Sit-to-Stand)

  • 임인혁;최보람;김현숙
    • 한국전문물리치료학회지
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    • 제18권3호
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    • pp.26-37
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    • 2011
  • Although there have been various studies related to the body's movement from a sitting to a standing position (sit-to-stand task), there is limited information on the kinematic changes on the frontal and transverse planes. The purpose of this study was to ascertain how pelvic tilt affects kinematic changes in the frontal and transverse planes in the hip and knee joints during a sit-to-stand task. For this study, 33 healthy participants (13 female) were recruited. Each participant rose from a sitting to a standing posture at his or her preferred speed for each of three different pelvic tilt trials (anterior, posterior, and neutral), and the measured angles were analyzed using a 3-D motion analysis system. A one-way repeated measure analysis of variance was performed with Bonferroni's post hoc test. In addition, an independent t-test was carried out to determine the sex differences in hip and knee joint kinematic changes during the sit-to-stand tasks. The results were as follows: 1) The hip and knee joint angle in the frontal and transverse planes showed a significant difference between the different pelvic tilt postures during sitting in the pre-buttock lift-off phase (pre-LO) (p<.05). Compared to the posterior pelvic tilt posture, the anterior pelvic tilt posture involved significantly greater hip joint adduction and internal rotation, knee joint adduction, and reduced internal rotation of the knee joint. 2) Sex differences were found with significant differences for males in the initial and maximal angles in the frontal plane of the hip and knee joint (p<.05). Females had a significantly smaller initial abduction angle of the hip joint and a significantly greater maximal angle of the hip adduction joint. These results suggest that selecting a sit-to-stand exercise for pelvic tilt posture should be considered to control abnormal movement in the lower extremities.

횡하중을 받는 SiC/Ti-15-3 MMC 복합재 계면영역에서의 탄소성 응력장분포거동(II) (Elastic-Plastic Stress Distributions Behavior in the Interface of SiC/Ti-15-3 MMC under Transverse Loading(II))

  • 강지웅;권오헌
    • 한국안전학회지
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    • 제20권2호
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    • pp.26-31
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    • 2005
  • The strong continuous fiber reinforced metal matrix composites (MMCs) are recently used in aerospace and transportation applications as an advanced material due to its high strength and light weight. Unidirectional fiber-metal matrix composites have superior mechanical properties along the longitudinal direction. However, the applicability of continuous fiber reinforced MMCs is somewhat limited due to their relatively poor transverse properties. Therefore, the transverse properties of MMCs are significantly influenced by the properties of the fiber/matrix interface. In order to be able to utilize these MMCs effectively and with safety, it must be determined their elastic plastic behaviors at the interface. In this study, the interfacial stress states of transversely loaded unidirectional fiber reinforced metal matrix composites investigated by using elastic-plastic finite element analysis. Different fiber volume fractions $(5-60\%)$ were studied numerically. The interlace was treated as three thin layer (with different properties) with a finite thickness between the fiber and the matrix. The fiber is modeled as transversely isotropic linear-elastic, and the matrix as isotropic elastic-plastic material. Using proposed model, the effects of the interface region and fiber arrangement in MMCs on the distributions of stress and strain are evaluated. The stress distributions of a thin multi layer interface have much less changes compared with conventional perfect interface. The analyses were based on a two-dimensional generalized plane strain model of a cross-section of an unidirectional composite by the ANSYS finite element analysis code.

개선된 고차이론을 이용한 복합재료 적층구조물의 탄성 및 점탄성적 휨, 진동해석 (Bending and Vibration Analysis of Elastic and Viscoelastic Laminated Composite Structures using an Improved Higher-order Theory)

  • 한성천;유용민;박대용;장석윤
    • 한국강구조학회 논문집
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    • 제14권1호
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    • pp.1-12
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    • 2002
  • 복합재료 적층판의 보다 정확한 해석결과를 얻기 위해서는 종방향 전단변형, 종방향 수직 변형율/응력에 의한 효과와 두께방향 좌표에 관한 면내변위의 비선형 변화등이 고려되어야 한다. 본 연구에서는 개선된 고차이론을 이용하여 복합재료 적층구조물의 처짐 및 고유 진동수를 구한다. 점탄성 해석을 위하여 Quasi-elastic 방법을 사용하였다. 단순지지된 복합재료 적층판 및 샌드위치의 해석결과들은 3차원 탄성해석결과와 다른 이론들에 의한 결과와 비교하였다. 본 연구의 해석결과가 다른 이론들보다 좀 더 정확한 결과를 나타내었다.

Bi-axial and shear buckling of laminated composite rhombic hypar shells

  • Chaubey, Abhay K.;Raj, Shubham;Tiwari, Pratik;Kumar, Ajay;Chakrabarti, Anupam;Pathak, K.K.
    • Structural Engineering and Mechanics
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    • 제74권2호
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    • pp.227-241
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    • 2020
  • The bi-axial and shear buckling behavior of laminated hypar shells having rhombic planforms are studied for various boundary conditions using the present mathematical model. In the present mathematical model, the variation of transverse shear stresses is represented by a second-order function across the thickness and the cross curvature effect in hypar shells is also included via strain relations. The transverse shear stresses free condition at the shell top and bottom surfaces are also satisfied. In this mathematical model having a realistic second-order distribution of transverse shear strains across the thickness of the shell requires unknown parameters only at the reference plane. For generality in the present analysis, nine nodes curved isoparametric element is used. So far, there exists no solution for the bi-axial and shear buckling problem of laminated composite rhombic (skew) hypar shells. As no result is available for the present problem, the present model is compared with suitable published results (experimental, FEM, analytical and 3D elasticity) and then it is extended to analyze bi-axial and shear buckling of laminated composite rhombic hypar shells. A C0 finite element (FE) coding in FORTRAN is developed to generate many new results for different boundary conditions, skew angles, lamination schemes, etc. It is seen that the dimensionless buckling load of rhombic hypar increases with an increase in c/a ratio (curvature). Between symmetric and anti-symmetric laminations, the symmetric laminates have a relatively higher value of dimensionless buckling load. The dimensionless buckling load of the hypar shell increases with an increase in skew angle.

Effects of water on rock fracture properties: Studies of mode I fracture toughness, crack propagation velocity, and consumed energy in calcite-cemented sandstone

  • Maruvanchery, Varun;Kim, Eunhye
    • Geomechanics and Engineering
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    • 제17권1호
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    • pp.57-67
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    • 2019
  • Water-induced strength reduction is one of the most critical causes for rock deformation and failure. Understanding the effects of water on the strength, toughness and deformability of rocks are of a great importance in rock fracture mechanics and design of structures in rock. However, only a few studies have been conducted to understand the effects of water on fracture properties such as fracture toughness, crack propagation velocity, consumed energy, and microstructural damage. Thus, in this study, we focused on the understanding of how microscale damages induced by water saturation affect mesoscale mechanical and fracture properties compared with oven dried specimens along three notch orientations-divider, arrester, and short transverse. The mechanical properties of calcite-cemented sandstone were examined using standard uniaxial compressive strength (UCS) and Brazilian tensile strength (BTS) tests. In addition, fracture properties such as fracture toughness, consumed energy and crack propagation velocity were examined with cracked chevron notched Brazilian disk (CCNBD) tests. Digital Image Correlation (DIC), a non-contact optical measurement technique, was used for both strain and crack propagation velocity measurements along the bedding plane orientations. Finally, environmental scanning electron microscope (ESEM) was employed to investigate the microstructural damages produced in calcite-cemented sandstone specimens before and after CCNBD tests. As results, both mechanical and fracture properties reduced significantly when specimens were saturated. The effects of water on fracture properties (fracture toughness and consumed energy) were predominant in divider specimens when compared with arrester and short transverse specimens. Whereas crack propagation velocity was faster in short transverse and slower in arrester, and intermediate in divider specimens. Based on ESEM data, water in the calcite-cemented sandstone induced microstructural damages (microcracks and voids) and increased the strength disparity between cement/matrix and rock forming mineral grains, which in turn reduced the crack propagation resistance of the rock, leading to lower both consumed energy and fracture toughness ($K_{IC}$).

내부(內部)힌지효과(效果)를 고려(考慮)한 평면(平面) 뼈대구조(構造)의 기하학적(幾何學的)인 비선형(非線型) 유한요소해석(有限要素解析) (Geometric Nonlinear F.E. Analysis of Plane Frames Including Effects of the Internal Hinge)

  • 김문영
    • 대한토목학회논문집
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    • 제14권1호
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    • pp.93-103
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    • 1994
  • 본(本) 논문(論文)에서는 내부(內部)힌지가 있는 평면(平面) 뼈대구조(構造)의 기하학적(幾何學的)인 비선형(非線型)을 수행하기 위한 두 가지 해석방법(解析方法) 즉, 유한분절법(有限分節法)과 유한요소법(有限要素法)을 제시한다. 유한분절법(有限分節法)의 경우에는 내부(內部)힌지에 대한 경계조건(境界條件)이 고려된 평형방정식(平衡方程式)과 힘-변위(變位) 관계식(關係式)을 직접(直接) 적분(積分)하여 엄밀한 접선강도(接線剛度) 매트릭스를 유도한다. 유한요소법(有限要素法)의 경우에는 내부(內部)힌지와 전단변형(剪斷變形)의 영향이 고려된 Hermitian 다항식(多項式)을 형상함수(形狀凾數)로 사용하여 탄성(彈性) 및 기하학적(幾何學的)인 강도(剛度)매트릭스를 산정한다. 제시된 이론(理論)의 정확성(正確性)과 타당성(妥當性)을 입증(立證)하기 위하여, 선택된 예제(例題)의 해석결과(解析結果)를 제시한다.

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General equations for free vibrations of thick doubly curved sandwich panels with compressible and incompressible core using higher order shear deformation theory

  • Nasihatgozar, M.;Khalili, S.M.R.;Fard, K. Malekzadeh
    • Steel and Composite Structures
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    • 제24권2호
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    • pp.151-176
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    • 2017
  • This paper deals with general equations of motion for free vibration analysis response of thick three-layer doubly curved sandwich panels (DCSP) under simply supported boundary conditions (BCs) using higher order shear deformation theory. In this model, the face sheets are orthotropic laminated composite that follow the first order shear deformation theory (FSDT) based on Rissners-Mindlin (RM) kinematics field. The core is made of orthotropic material and its in-plane transverse displacements are modeled using the third order of the Taylor's series extension. It provides the potentiality for considering both compressible and incompressible cores. To find these equations and boundary conditions, Hamilton's principle is used. Also, the effect of trapezoidal shape factor for cross-section of curved panel element ($1{\pm}z/R$) is considered. The natural frequency parameters of DCSP are obtained using Galerkin Method. Convergence studies are performed with the appropriate formulas in general form for three-layer sandwich plate, cylindrical and spherical shells (both deep and shallow). The influences of core stiffness, ratio of core to face sheets thickness and radii of curvatures are investigated. Finally, for the first time, an optimum range for the core to face sheet stiffness ratio by considering the existence of in-plane stress which significantly affects the natural frequencies of DCSP are presented.