• Title/Summary/Keyword: 구조화 격자

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Impact localization on a composite plate using multiplexed FBG sensors and error-outlier algorithm (다중화된 FBG 센서와 error-outlier 알고리즘을 이용한 복합재 평판에 대한 충격위치탐지)

  • Park, Sung Yong;Kim, Sang-Woo;Park, Sangyoon
    • Journal of Aerospace System Engineering
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    • v.12 no.6
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    • pp.32-40
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    • 2018
  • An impact localization for a carbon fiber reinforced plastic (CFRP) composite plate was performed using the multiplexed fiber bragg grating (FBG) sensors and the error-outlier based impact localization algorithm. We found that the optimal impact localization with the maximum error of 31.82 mm and the averaged error of 6.31 mm are obtained when the error threshold (ET) and constant level (CL) are 0.3 nm and 110, respectively. Moreover, the detailed process of impact localization under certain optimal parameters and the relevant results were thoroughly investigated. We conclude that the multiplexed FBG sensors and the error-outlier based impact localization algorithm are suitable for an impact localization on composite structures, and expect that they can be utilized for various structural health monitoring (SHM) in the future.

Study for Effective Cooling of Ni-MH Battery Module Using Forced Air Flow (공기 유동에 따른 Ni-MH 배터리 모듈의 효과적인 냉각에 관한 연구)

  • Ahn, Chi-Yeong;Kim, Tae-Sin;Kim, Jun-Bom
    • Journal of the Korean Electrochemical Society
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    • v.14 no.4
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    • pp.253-260
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    • 2011
  • In this study, computational simulation was performed for thermal management of modules consisting of 10 batteries. Simplified structure and equivalent thermal resistance network was applied to maintain the thermal properties. Verification test of the mesh were in progress to ensure the reliability of 2.6 mm in the narrow gap between the battery, resulting in at least three divided mesh between the shape of the grid was required. Type of air from rear of the module, type of air from top of the module and type of air from bottom of the module were applied and effective cooling methods are discussed based on the location of fan and air intake of the modules. Maximum temperature and temperature differences of modules that directly affect the performance of the module were compared, and also behavior of the fluid was confirmed by comparing the air flow. The best maximum temperature is shown type of air from bottom of the module to $40.27^{\circ}C$ and type of air from top of the module shows smallest temperature difference $0.73^{\circ}C$.

Real-time impact location monitoring using the stabilized Bragg grating sensor system (안정화된 광섬유 브래그 격자 센서 시스템을 이용한 실시간 충격위치검출에 관한 연구)

  • Bang, Hyung-Joon;Hong, Chang-Sun;Kim, Chun-Gon
    • Journal of the Korean Society for Aeronautical & Space Sciences
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    • v.32 no.7
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    • pp.37-42
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    • 2004
  • In order to monitor the impact locations in smart structures, multipoint ultrasonic sensors are to be employed. In this study, a multiplexing demodulator with wide dynamic range was proposed to detect the impact locations using FBG sensors, and a stabilization controlling system was also developed for the maintenance of maximum sensitivity of sensors. Two FBG sensors were attached on the bottom side of the aluminum beam specimen and low velocity impact tests were performed to detect the one-dimensional impact locations. As a result, multiplexed in-line FBG sensors could detect the moment of impact precisely, and found the impact locations with the average location error below 0.58mm.

The ionization energy and lattice parameters of Co- and Ce-doped cubic zirconia (YSZ) single crystal (Co와 Ce를 첨가한 큐빅지르코니아(YSZ) 단결정의 이온화에너지 및 격자상수)

  • Seok, Jeong-Won
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.20 no.4
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    • pp.159-163
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    • 2010
  • Co-(0.5 mol%) and Ce-(0~0.3 mol%) doped cubic zirconia ($ZrO_2:Y_2O_3$=64:36 mol%) single crystals grown by a skull melting method were heat-treated in $N_2$ at $1200^{\circ}C$ for 3 hrs. The brown-colored as-grown single crystals were changed into either green or blue color after the heat treatment. Before and after the heat treatment, the YSZ (yttriastabilized zirconia) single crystals were cut for wafer form (${\phi}7mm{\times}t2mm$) and round brilliant cut ($\phi$ 12 mm). The optical and structural properties were examined by UV-VIS spectrophotometer and X-ray diffraction. Absorption by $Ce^{3+}(^2F_{5/2},\;_{7/2}(4f){\rightarrow}^2T_g(5d^1)),\;Co^{2+}(^4A_2(^4F){\rightarrow}^4T_1(^4F)$ or $^4T_1(^4P))$ and $Co^{3+}$, change of ionization energy and lattice parameter were confirmed.

Seasonal precipitation prediction using ICON model (ICON모델을 이용한 계절 강수 예측)

  • Kim, Ga Eun;Oh, Jai Ho
    • Proceedings of the Korea Water Resources Association Conference
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    • 2017.05a
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    • pp.360-360
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    • 2017
  • 이상기상현상의 발생횟수가 지속적으로 증가함에 따라 기상 예측은 국가 재난 관리에 중요한 요소로써 부상하고 있다. 계절예측 또한 재난관리의 한 부분으로, 농업, 에너지, 수자원 그리고 공공보건 등 다양한 분야에서 잠재적 위험을 파악하는데 도움이 되는 보조 자료로 활용이 가능하다. 본 연구에서는 ICON(ICOsahedral-Nonhydrostatic) 모델을 이용하여 2015년 여름철(JJA) 강수를 예측하였다. 2015년은 장마기간을 포함한 여름철 동안 평년대비 약 절반수준(54%)에 그치는 비가 내렸으며, 태풍으로 인한 강수량도 적어 연 강수량이 평년대비 72%로 역대 최저 3위를 기록하였다. 지역별로 보면 제주도와 남해안 지방을 제외한 대부분 지방에서 강수량이 적게 나타났으며, 수도권을 중심으로는 60% 미만의 강수량을 보였다. ICON 모델은 독일 기상청(DWD)과 막스플랑크 연구소(MPI-M)에서 공동 개발하여 현업 운영중인 전 지구 모델로 비정역학 코어를 사용한다. 전 지구를 정 20면체의 삼각형으로 격자화 시켜 모든 격자의 크기가 동일하고, 극점은 1개의 꼭짓점으로 구성되어 CFL(Courant-Friderich-Lewy) 문제가 해소될 수 있다. 또한 hybrid의 병렬구조를 사용하여 전산사용 효율성을 극대화 하는 특징이 있다. 강수의 계절 예측 수행 과정은 다음과 같다. 우선, 계절예측 자료 분석 시 활용할 ICON모델의 기후값을 생산하기 위해 30년(1980년~2009년)간의 AMIP기반 규준실험을 수행한다. 다음으로, SST와 Sea ice의 평년대비 현재 변동량을 계산하고, 이 자료는 모델 적분을 수행할 때 경계 자료로서 활용하게 된다. 계절 예측은 시간 지연기법(Time-lagged method)를 이용한 앙상블예측으로 수행하며, 예측하고자 하는 계절이 시작하기 약 1개원 이전부터 1일 간격으로 전 지구 모델의 초기자료를 다르게 선택하여 총 10개의 앙상블 멤버를 구성한다. 모델의 해상도는 수평 40km, 수직 90개 층으로 구성하였으며, 적분이 완료되면 AMIP기반 실험을 통해 모의된 기후값을 토대로 예측된 계절전망 자료의 변동성을 분석한다.

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Analysis of the Electromagnetic Scattering by a Tapered Resistive Strip Grating with Zero Resistivity at the Strip-Edges On a Grounded Dielectric Plane (접지된 유전체층 위에 저항띠 양끝에서 0으로 변하는 저항율을 갖는 저항띠 격자구조에서의 전자파 산란 해석)

  • 정오현;윤의중;양승인
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.28 no.11A
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    • pp.883-890
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    • 2003
  • In this paper, Electromagnetic scattering problems by a resistive strip grating with tapered resistivity on a grounded dielectric plane according as strip width and spacing, relative permittivity and thickness of dielectric layers, and incident angles of a electric wave are analyzed by applying the FGMM(Fourier-Galerkin Moment Method) Known as a numerical procedure. The scattered electromagnetic fields are expanded in a series of floguet mode functions. The boundary conditions are applied to obtain the unknown field coefficients and the resistive boundary condition is used for the relationship between the tangential electric field and the electric current density on the strip. The tapered resistivity of resistive strips varies zero resistivity at strip edges. Then the induced surface current density on the resistive strip is expanded in a series of Chebyshev polynomials of the second kind. The numerical results of the geometrically in this paper are compared with those for the existing uniform resistivity and perfectly conducting strip. The numerical results of the normalized reflected power for conductive strips case with zero resistivity in this paper show in good agreement with those of existing paper.

Material Topology Optimization of FGMs using Homogenization and Linear Interpolation Methods (균질화 및 선형보간법을 이용한 기능경사 내열복합재의 물성분포 최적설계)

  • 조진래;박형종
    • Journal of the Computational Structural Engineering Institute of Korea
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    • v.14 no.4
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    • pp.495-503
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    • 2001
  • In a functionally graded materials(FGM), two constituent material particles are mixed up according to a specific volume fraction distribution so that its thermoelastic behavior is definitely characterized by such a material composition distribution. Therefore, the designer should determine the most suitable volume fraction distribution in order to design a FGM that optimally meets the desired performance against the given constraints. In this paper, we address a numerical optimization procedure, with employing interior penalty function method(IPFM) and FDM, for optimizing 2D volume fractions of heat-resisting FGMs composed of metal and ceramic. We discretize a FGM domain into finite number of homogenized rectangular cells of single design variable in order for the optimization efficiency. However, after the optimization process, we interpolate the discontinuous volume fraction with globally continuous bilinear function in order to enforce the continuity of volume fraction distributions.

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Analysis of the Electromagnetic Scattering by Conducting Strip Gratings with 2 Dielectric Layers On a Grounded Plane (접지평면위에 2개의 유전체층을 가지는 저항띠 격자구조에서의 전자파산란 해석)

  • 윤의중
    • The Journal of Information Technology
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    • v.4 no.3
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    • pp.77-86
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    • 2001
  • In this paper, Electromagnetic scattering problem by a resistive strip grating with 2 dielectric layers on a ground plane according as resistivity of resistive strip, relative permittivity and thickness of dielectric layers, and incident angles of a electric wave is analyzed by applying the PMM (Point Matching Method) known as a numerical procedure. The scattered electromagnetic fields are expanded in a series of floquet mode functions. The boundary conditions are applied to obtain the unknown field coefficients and the resistive boundary condition is used for the relationship between the tangential electric field and the electric current density on the strip. According as the relative permittivity and the thickness of layers are increased, the values of the geometrically normalized reflected power have a high value and the values of strip width are moved toward a high value going from left to right. When the resistivity of this paper has a value of zero, the numerical results of the geometrically normalized reflected power show in good agreement with those by the PMM of existing paper. Then, the most energys of the sharp variation point in minimum values of the geometrically normalized reflected power are scattered in direction of the other angles except incident angle.

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Abstraction Method for Analysis of Mobility and Interaction in Process Algebra Using Behavioral Ontology (프로세스 대수에서 이동성과 상호작용을 분석하기 위한 행위 온톨로지를 이용한 추상화 방법)

  • Woo, Su-Jeong;On, Jin-Ho;Lee, Moon-Kun
    • The Journal of the Korea Contents Association
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    • v.11 no.9
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    • pp.63-75
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    • 2011
  • A number of process algebras have been proposed to develop distributed mobile real-time systems: pi-Calculus, Mobile Ambients Calculus, Bigraph, etc. However, as the systems get large and complex, the algebras become less suitable for understanding the interactions and mobility of the processes of the systems due to the size and complexity. Therefore it is necessary to handle the size and complexity for systematic understanding of the systems. This paper handles the size and complexity with a method of abstraction on sequences of interactions and movements of processes in the systems, which can be further organized in the form of hierarchically structured lattices, namely, Prism. The theoretical principle of the abstraction is based on a new concept of Behavior Ontology, which is extended from Active ontology. Prism allows the systems to be analyzed in the perspective of the lattices in Prism, which are characterized by the hierarchically organized behavioral properties of the developing systems, for systematic understanding the systems. In this way, the complexity of the interactions and the movements can be handled systematically in the semantically and hierarchically organized structure of the behavior.

A Study on TE Scattering by a Conductive Strip Grating Over Grounded Two Dielectric Layers (접지된 2개 유전체층 위의 완전도체띠 격자구조에 의한 TE 산란에 관한 연구)

  • Yoon, Uei-Joong
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.15 no.2
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    • pp.65-70
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    • 2015
  • In this paper, the solutions of TE (transverse electric) scattering problems by a conductive strip grating over grounded two dielectric layers are analyzed by applying the PMM (point matching method) known as a numerical method of electromagnetic fileld. The boundary conditions are applied to obtain the unknown field coefficients, the scattered electromagnetic fields are expanded in a series of Floquet mode functions, and the conductive boundary condition apply to analysis of conducting strip. The most normalized reflected powers of the sharp variations in minimum values are scattered in direction of the other angles except incident angle. The numerical results for normalized reflected power are analyzed by according as the width and spacing of conductive strip, the relative permittivity and thickness of the two dielectric layers, and incident angles. The numerical results of present numericl analysis are shown in good agreement compared to those of the existing papers using FGMM (fourier galerkin moment method).