• Title/Summary/Keyword: 기하법

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Geometric Geoid Determination in South Korea using GPS/Levelling Data

  • Yun, Hong-Sic
    • Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography
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    • v.13 no.2
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    • pp.285-289
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    • 1995
  • This paper describes the determination of geoid using height data measured by GPS and Spirit Levelling. The GPS data of the 88 stations were used to determine the geoid undulation (N) which can be easily obtained by subtracting the orthometric height(H) from the ellipsoidal height(h). From the geoid undulation (N) calculated at each station mentioned above, geoid plots with a contour interval of 0.25 m were drawn using two interpolation methods. The following interpolation methods were applied and compared with each other: Minimum Curvature Method and Least Squares Fitted Plane. Comparison between geometric geoid and gravimetric geoid undulation by FFT technique was carried out.

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A Survey on the Geometry of Joseon (조선 기하학 개설)

  • KIM, Young Wook;KIM, Soyoung
    • Journal for History of Mathematics
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    • v.35 no.3
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    • pp.73-113
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    • 2022
  • In this paper we survey on the geometric development in the history of Joseon mathematics. We have relatively many research papers on the history of equations in Joseon but the history of geometry is limited to that of trigonometry (gugosul). We survey on the results on the whole geometry including the introduction of western geometry in Joseon. Joseon mathematics developed differently during several different periods. We investigate how geometric theories developed during those periods and the meaning behind them. We do not claim that our survey is anywhere close to a complete one. This is rather a preliminary attempt to collect research results to plan our research following those of our predecessors.

Shape Design Sensitivity Analysis Using Isogeometric Approach (등기하 해석법을 이용한 설계 민감도 해석)

  • Ha, Seung-Hyun;Cho, Seon-Ho
    • Journal of the Computational Structural Engineering Institute of Korea
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    • v.20 no.3
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    • pp.339-345
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    • 2007
  • In this paper, a variational formulation for plane elasticity problems is derived based on an isogeometric approach. The isogeometric analysis is an emerging methodology such that the basis functions for response analysis are generated directly from NURBS (Non-Uniform Rational B-Splines) geometry. Furthermore, the solution space for the response analysis can be represented in terms of the same functions to represent the geometry, which enables to provide a precise construction method of finite element model to exactly represent geometry using B-spline base functions in CAD geometric modeling and analyze arbitrarily shaped structures without re-meshing. In this paper, a continuum-based adjoint sensitivity analysis method using the isogeometric approach is extensively derived for the plane elasticity problems. The conventional shape optimization using the finite element method has some difficulties in the parameterization of geometry In the isogeometric analysis, however, the geometric properties are already embedded in the B-spline basis functions and control points so that it has potential capability to overcome the aforementioned difficulties. Through some numerical examples, the developed isogeometric sensitivity analysis method is verified to show excellent agreement with finite difference sensitivity.

Novel Method for Numerical Analyses of Tapered Geometrical Non-linear Beam with Three Unknown Parameters (3개의 미지변수를 갖는 변단면 기하 비선형 보의 수치해석 방법)

  • Lee, Byoung Koo;Oh, Sang Jin;Lee, Tae Eun
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.33 no.1
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    • pp.13-22
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    • 2013
  • This paper deals with a novel method for numerical analyses of the tapered geometrical non-linear beam with three unknown parameters, subjected a floating point load. The beams with hinged-movable end constraint are chosen as the objective beam. Cross sections of the beam whose flexural rigidities are functionally varied with the axial coordinate. The first order simultaneous differential equations governing the elastica of such beam are derived on the basis of the Bernoulli-Euler beam theory. A novel numerical method for solving these equations is developed by using the iteration technique. The processes of the solution method are extensively discussed through a typical numerical example. For validating theories developed herein, laboratory scaled experiments are conducted.

Quadrangulation of Sewing Pattern Based on Recursive Geometry Decomposition (재귀적 기하 분해 방법에 기반한 봉제 패턴의 사각화 방법)

  • Gizachew, Gocho Yirga;Jeong, Moon Hwan;Ko, Hyeong Seok
    • Journal of the Korea Computer Graphics Society
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    • v.22 no.2
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    • pp.1-10
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    • 2016
  • The computational cost of clothing simulation and rendering is mainly depends on the type of mesh and its quality. Thus, quadrilateral meshes are generally preferred over triangular meshes for the reasons of accuracy and efficiency. This paper presents a method of quadrangulating sewing pattern based on the recursive geometry decomposition method. Herein, we proposed two simple improvements to the previous algorithms. The first one deals with the recursive geometry decomposition in which the physical domain is decomposed into simple and mappable regions. The second proposed algorithm deals with the vertex validation in which the invalid vertex classification can be validated.

A Mechanics-Based Determination of Heating Lines in Line Heating Process (열변형 해석 기구를 통한 선상 가열에서의 가열선 수정에 관한 연구)

  • Yong-Gyun Kim;Jong-Gye Shin
    • Journal of the Society of Naval Architects of Korea
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    • v.39 no.2
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    • pp.45-51
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    • 2002
  • In Line Heating method, heating line is determined by kinematics analysis. But the heating line, which is solved by kinematics analysis, doesn't verify by the point of physical analysis and the choice problem in many heating line doesn't determine. In this paper, the simulator is developed. When we get the processing information at the kinematics analysis, simulator can estimate the shape of deformed plate that process along the processing information. When we get the initial shape and the object shape, we calculate the processing information first, using kinematics analysis. In a simulator, we estimate deformed shape from the processing information. After this we compare deformed shape and object shape. If the error of deformed shape and object shape is in the proper limits, that information is determined the final processing information. Else we repeat the process changing variables.

Stability Analysis for CWR on the Railway Bridges by Linearized Method (선형해석법을 이용한 교량상 장대레일의 안정성 해석 방법 연구)

  • Choi, Young-Gil;Oh, Ju-Won
    • Journal of the Korean Society for Railway
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    • v.12 no.4
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    • pp.472-480
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    • 2009
  • The stability analysis for CWR is difficult in the theory itself because both geometric and material nonlinearity should be considered. Also the analysis results are varied according to the loading history. In contrast to the complexity in the theory, the analysis results for CWR on the railway bridges are quite simple and can be predicted because of a small buckling effect and its negligible nonlinearity. In this study, refined nonlinear analysis methods for the stability analysis of CWR on the railway bridges were developed which consider only material nonlinearity beeause the effects of geometric nonlinearity are nominal. In this study, the analysis results can be found within limited number of iterations with idealized linear force-displacement relationship. From the analysis result comparisons, it was found that the stability analysis for CWR on the railway bridges can be performed effectively by this method.

Geometric Constraints Exploration for Timing-Driven Placement (타이밍이 고려된 배치를 위한 기하적인 제약조건 탐색)

  • Lee, Jae-Hoon;Cho, Jun-Dong
    • Proceedings of the Korean Information Science Society Conference
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    • 2007.10c
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    • pp.375-379
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    • 2007
  • 고성능 VLSI 설계 시 배치 후를 포함한 전체적인 설계 과정이 완성되기 전까지는 물리적인 정확한 설계의 특성은 배치 단계에서는 알기 어렵다. 따라서 주어진 성능 (시간적 제약조건)을 만족하는, 즉, timing-driven placement (타이밍이 고려된 배치)는 1.0 미크론 이하의 초미세한 설계에서 중요하게 되었다. 타이밍을 고려한 배치는 초기 레이아웃 디자인 단계에서 타이밍 제약조건에 의해 디자인 반복을 줄인다. 하지만 대부분의 배치 단계의 디자인 모델은 배치단계에서 기하학적인 면을 고려하여 최대허용 지연시간 (Slack 이라고 부름)과 같은 물리적인 디자인 효과를 분석하기 어려운데 이것은 물리적으로 정확한 특성이 이 단계에서 알려지지 않기 때문에 당연한 결과이다. 본 논문에서는 기하적인 요소를 고려한 Slack의 재분배의 이점을 이용하여 허용 지연시간 처리의 혁신적인 방법을 제안한다. 제안된 접근법은 timing-closed 솔루션을 쉽게 찾는데 도움을 주고 이는 디자인을 반복하는 시간을 절약할 수 있게 한다.

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Acoustic Analysis of Interior Spaces by Using the Phased Geometric Acoustic Model (위상이 고려된 기하음향모델에 의한 내부음장 해석)

  • 신호철;이정권
    • The Journal of the Acoustical Society of Korea
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    • v.17 no.6
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    • pp.54-61
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    • 1998
  • 중주파수대역은 내부 음향 모드의 공명 및 모드간 상호 간섭 특성을 완전히 무시할 수는 없으나 모드 밀도가 비교적 높기 때문에, 기존의 저주파수용 모드기법이나 고주파수에 대한 통계적 및 기하학적 해석방법과는 다른 기법이 필요한 구간이다. 본 논문에서는 위상 을 포함한 기하음향모델을 이용하여 중주파수 특성을 고려하는 개념을 이용하여 해석기법을 확립하였으며, 삼각형빔법을 기초로 한 모델링을 하였다. 세 개의 서로 다른 특성을 지닌 대 상 공간에 대해 음향 경계요소법 및 실험에 의한 음향 주파수응답함수와 본 연구 결과를 비 교함으로써 유효성과 오차특성을 검토하였다. 이로부터 위상으로 고려한 중주파수 대역에 잘 적용될 수 있음을 확인하였고, Schroeder의 차단주파수 이하의 저주파수에서는 내부구조 에 의한 회절이, 차단주파수의 네 배 이상인 고주파수에서는 벽면에서의 산란이 간섭현상과 함께 고려되어야 함을 보였다. 이러한 해석기법은 중주파수대역에 있어서 청감특성을 고려 한 내부공간의 음향설계에 매우 유용할 것으로 사료된다.

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Construction of Elementary Functions through Proportions on the Dynamic Environment (역동적 기하 환경에서 비례를 이용한 중학교 함수의 작도)

  • Lew, Hee-Chan;Yoon, O-Kyo
    • School Mathematics
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    • v.13 no.1
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    • pp.19-36
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    • 2011
  • This study provides middle school students with an opportunity to construct elementary functions with dynamic geometry based on the proportion between lengths of triangle to activate students' intuition in handling elementary algebraic functions and their geometric properties. In addition, this study emphasizes the process of justification about the choice of students' construction method to improve students' deductive reasoning ability. As a result of the pilot lesson study, this paper shows the characteristics of the students' construction process of elementary functions and the roles the teacher plays in the process.

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