• Title/Summary/Keyword: Geometric structure

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Virtual Models for 3D Printing

  • Haeseong Jee
    • 한국CDE학회논문집
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    • 제4권1호
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    • pp.1-11
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    • 1999
  • surface texture denotes set of tiny repetitive geometric features on an object surface. 3D Printing can readily create a surface of controlled macro-textures of high geometric complexity. Designing surface textures for 3D Printing, however, is difficult due to complex macro-structure of the tiny texture geometry since it needs to be compatible with the non-traditioal manufacturing method. In this paper we propose a visual simulation technique involving development of a virtual model-an intermediate geometric model-of the surface texture design prior to fabricating the physical model. Careful examination of the virtual model before the actual fabrication can help minimize unwanted design iterations. The proposed technique demonstrated visualization capability by comparing the virtual model with the physical model for several test cases.

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Evaluation of energy response of space steel frames subjected to seismic loads

  • Ozakgul, Kadir
    • Structural Engineering and Mechanics
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    • 제54권4호
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    • pp.809-827
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    • 2015
  • In this paper, seismic energy response of inelastic steel structures under earthquake excitations is investigated. For this purpose, a numerical procedure based on nonlinear dynamic analysis is developed by considering material, geometric and connection nonlinearities. Material nonlinearity is modeled by the inversion of Ramberg-Osgood equation. Nonlinearity caused by the interaction between the axial force and bending moment is also defined considering stability functions, while the geometric nonlinearity caused by axial forces is described using geometric stiffness matrix. Cyclic behaviour of steel connections is taken into account by employing independent hardening model. Dynamic equation of motion is solved by Newmark's constant acceleration method in the time history domain. Energy response analysis of space frames is performed by using this proposed numerical method. Finally, for the first time, the distribution of the different energy types versus time at the duration of the earthquake ground motion is obtained where in addition error analysis for the numerical solutions is carried out and plotted depending on the relative error calculated as a function of energy balance versus time.

Learning Media on Mathematical Education based on Augmented Reality

  • Kounlaxay, Kalaphath;Shim, Yoonsik;Kang, Shin-Jin;Kwak, Ho-Young;Kim, Soo Kyun
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제15권3호
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    • pp.1015-1029
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    • 2021
  • Modern technology offers many ways to enhance teaching and learning that in turn promote the development of tools for educational activities both inside and outside the classroom. Many educational programs using the augmented reality (AR) technology are being widely used to provide supplementary learning materials for students. This paper describes the potential and challenges of using GeoGebra AR in mathematical studies, whereby students can view 3D geometric objects for a better understanding of their structure, and verifies the feasibility of its use based on experimental results. The GeoGebra software can be used to draw geometric objects, and 3D geometric objects can be viewed using AR software or AR applications on mobile phones or computer tablets. These could provide some of the required materials for mathematical education at high schools or universities. The use of the GeoGebra application for education in Laos will be particularly discussed in this paper.

A fast and simplified crack width quantification method via deep Q learning

  • Xiong Peng;Kun Zhou;Bingxu Duan;Xingu Zhong;Chao Zhao;Tianyu Zhang
    • Smart Structures and Systems
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    • 제32권4호
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    • pp.219-233
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    • 2023
  • Crack width is an important indicator to evaluate the health condition of the concrete structure. The crack width is measured by manual using crack width gauge commonly, which is time-consuming and laborious. In this paper, we have proposed a fast and simplified crack width quantification method via deep Q learning and geometric calculation. Firstly, the crack edge is extracted by using U-Net network and edge detection operator. Then, the intelligent decision of is made by the deep Q learning model. Further, the geometric calculation method based on endpoint and curvature extreme point detection is proposed. Finally, a case study is carried out to demonstrate the effectiveness of the proposed method, achieving high precision in the real crack width quantification.

공간지각에 있어 잉여정보의 의미와 분석 - NOX의 공간을 중심으로- (The Concept and Analysis of Redundant Information in Space Perception - Focused on the Works of NOX -)

  • 김주미
    • 한국실내디자인학회논문집
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    • 제15권6호
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    • pp.77-88
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    • 2006
  • According to critics and architects, non-linear structure is not only an organic form of space, but also a form of space detached from modem style. Accordingly, non-linear structure can be accepted as an alternative to what has remained unsolved by deconstructionist. However, they are criticized for not clarifying the interdependent relationship between non-linearity of space and cognitive structure of human being. They ended up remaining the hypothesis just an intuitive and abstract one. This research began on the basis that their hypothesis is hard to be objectified, and it needs further inquiry. The purpose of this thesis is to explore how the redundant factors constitute non-linear structures of digital media centered space design. Geometric compositions of space structure were analyzed to define what types of redundant factors are contrived in the process of visual information. This study about the visual form, researching the Information Theory, and then offer a quantitative analysis that makes those more objective. Space structure and geometric composition were analyzed to define what types of redundancy are contrived in the process of visual information. In particular, I put higher theoretical emphasis on what characteristics are ensued in the process of structuring spaces than any other subjects. Followings are the conclusion of analysis. First, as a result of examining, we can assume that NOX' space structure is not a chaotic form, but has an operating the form of its own. Second, in case of curvilinear, the structure was found redundancy on mid deviation ratio and discontinuous circular fabric. Although most of their structures appeared complex with a higher coherent constant, they were found to be stable factors because of the low deviation ratio between systems. The amount of surplus information was stable structure as well.

지하매설물의 기하학적 특성에 따른 전기저항 변화에 대한 수치 해석 연구 (Numerical Analysis of Electrical Resistance Variation according to Geometry of Underground Structure)

  • 김태영;류희환;정성훈
    • 대한토목학회논문집
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    • 제44권1호
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    • pp.49-62
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    • 2024
  • 급격한 도시화로 인한 지하의 무분별한 개발은 기존 지하매설물의 점검과 교체 그리고 새로운 지하시설물 설치에 지연을 일으키고 있다. 최근에는 체계화된 시스템을 도입하여 지하시설물을 관리하고 있지만, 실제 시공은 현장 여건에 따라서 설계 도면과 다르게 진행되기 때문에 기존 지하매설물의 부정확한 위치 정보로 사고가 끊임없이 발생하고 있다. 한편, 전기비저항 탐사는 전극을 지반에 관입시켜 전극 간 전위차로 지반의 전기저항을 측정하는 방식이며, 비파괴 물리탐사 기법으로서 널리 이용되고 있다. 그리고 다수의 전극 쌍을 이용하여 복잡한 지하 구조를 영상화하고, 딥러닝 알고리즘을 활용한 데이터 해석 기술들이 비약적으로 발전하였지만, 아직 지하매설물의 기하학적 조건에 따른 전기저항 변화를 정량적으로 평가한 기초적인 연구로서는 진행된 바가 없다. 본 연구에서는 전극과 지하매설물의 기하학적 매개 변수 해석을 통해서 전기저항 변화를 평가하였다. 먼저, 이론식과 수치 해석의 전기저항값 차이가 작게 나타난 정량화된 메쉬를 적용하여 3차원 전기저항 수치 해석 모듈을 개발하고, 매설물의 깊이, 크기, 그리고 전극과 매설물 간 이격거리에 따른 매개 변수 해석을 통해서 정상 직류 상태에서 전기저항 변화를 정량적으로 비교하였다. 전기저항은 매설물이 얕은 깊이에 위치하고, 크기가 크고, 전극과의 이격거리가 가까울수록 높게 측정되었다. 추가적으로 전극과 지하매설물 주변에 형성된 전위 및 전류밀도 분포를 분석하여 터미널 전극 주변에서 측정된 전기저항을 고찰하였다.

Effect of Slab-base Friction on Response of JCP Slab with Different Material and Geometric Properties

  • Sun, Ren-Juan;Lim, Jin-Sun;Jeong, Jin-Hoon
    • 한국방재학회 논문집
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    • 제7권5호
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    • pp.99-110
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    • 2007
  • A single slab concrete pavement has been modeled and analyzed by ABAQUS program. The stress and displacement of the JCP slab under traffic load with frictionless contact interaction between slab and base calculated by ABAQUS program have been compared with the results obtained by KENSLABS program. The results of the stresses of the two modeling show similar tendency and the difference of the two modeling is very small however the results of the displacement of the two modeling show some dissimilarity. In order to analyze the effects of material and geometric properties on the responses of slab, some varying parameters were chosen as input for the modeling. The changing parameters include the thickness and elastic modulus of the concrete slab, the thickness and elastic modulus of base and the elastic modulus of the subgrade. The contact interaction between the slab and base layer had been also studied and different friction coefficient 0, 2.5, 6.6, 7.5, 8.9 had been used to simulate the different friction interface condition. The results of the analysis showed that the responses of the concrete slab vary with the material and geometric properties of the pavement structure and the slab-base friction condition.

R-CRITICAL WEYL STRUCTURES

  • Kim, Jong-Su
    • 대한수학회지
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    • 제39권2호
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    • pp.193-203
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    • 2002
  • Weyl structure can be viewed as generalizations of Riemannian metrics. We study Weyl structures which are critical points of the squared L$^2$ norm functional of the full curvature tensor, defined on the space of Weyl structures on a compact 4-manifold. We find some relationship between these critical Weyl structures and the critical Riemannian metrics. Then in a search for homogeneous critical structures we study left-invariant metrics on some solv-manifolds and prove that they are not critical.