• 제목/요약/키워드: unified design

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Buckling of 2D FG Porous unified shear plates resting on elastic foundation based on neutral axis

  • Rabab, Shanab;Salwa, Mohamed;Mohammed Y., Tharwan;Amr E., Assie;Mohamed A., Eltaher
    • Steel and Composite Structures
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    • v.45 no.5
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    • pp.729-747
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    • 2022
  • The critical buckling loads and buckling modes of bi-directional functionally graded porous unified higher order shear plate with elastic foundation are investigated. A mathematical model based on neutral axis rather than midplane is developed in comprehensive way for the first time in this article. The material constituents form ceramic and metal are graded through thickness and axial direction by the power function distribution. The voids and cavities inside the material are proposed by three different porosity models through the thickness of plate. The constitutive parameters and force resultants are evaluated relative to the neutral axis. Unified higher order shear plate theories are used to satisfy the zero-shear strain/stress at the top and bottom surfaces. The governing equilibrium equations of bi-directional functionally graded porous unified plate (BDFGPUP) are derived by Hamilton's principle. The equilibrium equations in the form of coupled variable coefficients partial differential equations is solved by using numerical differential integral quadrature method (DIQM). The validation of the present model is presented and compared with previous works for bucking. Deviation in buckling loads for both mid-plane and neutral plane are developed and discussed. The numerical results prove that the shear functions, distribution indices, boundary conditions, elastic foundation and porosity type have significant influence on buckling stability of BDFGPUP. The current mathematical model may be used in design and analysis of BDFGPU used in nuclear, mechanical, aerospace, and naval application.

Development of Patient Gown for Children Applying Universal Design - Focused on the Public Design Improvement Project of Seoul - (유니버설 디자인을 적용한 어린이병원 환자복 개발 - 서울시 공공디자인 개선사업을 중심으로 -)

  • Kim, In-Kyung;Chung, So-Ha
    • Journal of the Korea Fashion and Costume Design Association
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    • v.14 no.1
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    • pp.161-174
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    • 2012
  • This project purpose to develop a "custom patient gown" can satisfy with functional and aesthetic aspects for improving the problems of the existing children's patient gown that no unified image and discomfort in cooperation with the Public Design Development office as part of the citizen-friendly design improvement projects which one of the public politicizes of Seoul. The following are the results of design process for children's patient gown applying the universal design. First, the children's patient gown of the shape were classified into patient gown, rehabilitative gown and special gown and based on human-centered design to pursue the custom patient gown. Second, the color used pastel shades part of the Seoul colors and focused on emotions with color therapy theory. It was emphasized the aesthetic aspect by arranged the colors which harmonized with the main colors, also classified the wards and sizes. Third, for the functional materials of patient gowns was used the washable fabric and tender processing. Fourth, the accessories were matched the unified image and colors are suitable for the hospital environment such as bibs, aprons, and bedding. Fifth, Haechi, the symbol of Seoul was used as the logo. The Haechi logo and emotional message were applied to patient gowns to enhance the communication efficiency between patients and their guardians. As described above, the custom patient gowns for children's hospital will have significant ripple effects when they are expanded to national, public and private children's hospital. Such a qualitative change will pursue the respect and value of human by expanding the areas of public design for adults, the weak and the old-age society in future.

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A Study on Digital design process of the materialization of Free form Design Architecture (비정형 건축 구현을 위한 디지털 디자인 프로세스에 관한 연구)

  • Lee, Jae-Kook;Lee, Kang-Bok
    • Journal of The Korean Digital Architecture Interior Association
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    • v.11 no.2
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    • pp.13-19
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    • 2011
  • Starting in modern times by Le Corbusier, architectures made by concretes are still developing in these times. For several decades, the shape of box architecture has been the most familiar type of buildings. Of course "The concrete is the type of box building" isn't always right, but what we have most seen was the buildings which has been stylized and made by concretes. Through modern times to these days based on international style and functionalism, the type of box building was the most effective and good profit type of architecture which has not disregarded the capitalism. Free-form building are becoming a common place, and many of these are designed and constructed using sophisticated techniques. The main technique being used is Generative Technology of Form for free-form construction. People's interest is growing in this, and it is becoming widely used both abroad and domestically. The purpose of this paper is to investigate the use of Generative Technology of Form which is a digitally adapted design methodology in architecture. The digital design process used for contemporary buildings share many typical features that exist within a standard digital template, but also an increasing amount of mass customization that has to be produced at an additional cost. This paper will summarize these features in terms of free-form architecture, and in terms of the digital design process. In fact, 3D models have to be conceded as main design products considering features of Free Form Design Architecture. However it is practical to design twice over, because all forms of architectural drawings are 2D. From now on, design of Free Form Design Building is not to separate between design process and practical process, but to compound them as unified design system applied the process to communicate information interactively. For this, it should be required to impose unified digital design process and perform researches about effective way to apply in the field of Free-form Design Architecture.

Design and Validation of Model Inversion Flight Control Law for Fly By Wire Helicopter (FBW 헬리콥터 모델 역변환 비행제어법칙 설계 및 검증)

  • Kim, Chong-Sup;Cho, In-Je;Lee, Seung-Duck;Lee, Han-Ju
    • Journal of the Korean Society for Aeronautical & Space Sciences
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    • v.40 no.8
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    • pp.678-687
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    • 2012
  • The Fly-By-Wire(FBW) flight control system is essential to improve the stability and flying quality of the helicopter. Advanced aerospace companies, such as Bell-Sikorsky (USA) and NHI (European Consortium), have already applied the FBW flight control system to manufacture V-22 and NH-90 helicopters, respectively. This paper addresses the development of control law design using model inversion method improve the hover and low speed handling qualities of helicopter based on BO-105 model in 'Day' and 'Degraded visual environments(DVEs)' in accordance with ADS-33E-PRF. Design parameters are optimized to satisfy the handling qualities specification using Control Designer's Unified Interface (CONDUIT) commercial control law software. The result of the analysis based on CONDUIT and non-real time simulation in-house software, HETLAS (HElicopter Trim Linearization And Simulation) reveals that the provides an efficient mean to achieve Level 1 handling qualities.

Design and Implementation of Web-based Factory Monitoring System for Complement MES (제조실행시스템의 기능 보완을 위한 웹 기반 공장 모니터링시스템의 설계 및 구현)

  • Kim, Yun-Gi;Gang, Mun-Seol;Kim, Byeong-Gi
    • The KIPS Transactions:PartD
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    • v.9D no.4
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    • pp.667-676
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    • 2002
  • Digital environment that is represented to Internet is displacing business way of industry and business achievement way with the fast speed being giving great change on life whole. Improve existent business process utilizing Internet and Web connection technology, information superhighway to tradition industrialist manufacturer and e-Transformation's propulsion that wish to maximize productivity and administration efficiency is spread vigorously. In this paper, administration efficiency raising of Web-based factory monitoring system to do monitoring when everywhere integrating operation present condition current point of time of discrete factories in inside and outside of the country by purpose design and implemented. That is, do to normalize system structure and achievement function, and administration data of Web-based, and design using VML (Unified Modeling Language) and take advantage of ASP (Active Server Pages) and implemented web function. Implemented Web-based factory monitoring system is applying two factory (Kl, K2) of K CO., LTD. tire operation division to caravan, and application result was evaluated by very efficient thing to grasp operation situation of whole factory synthetically.

An Implementation of Product Data Management System for Design of Ship Propulsion System (선박 추진시스템 설계를 위한 PDM 구현)

  • Suh, Sung-Bu
    • Journal of Navigation and Port Research
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    • v.35 no.6
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    • pp.489-494
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    • 2011
  • Present study introduces an implementation of product data management (PDM) that can be applied to the design of ship propulsion system. The PDM system is developed based on both object oriented software development environment and Open Scene Graph (OSG) library while the system architecture is modeled by the unified modeling language (UML). Suggested PDM system also integrates the modeling & simulation components required to estimate the performance of ship propulsion system as the product information is represented based on the 3-dimensional digital mock-up (DMU). Finally, functions of the implemented PDM system that is integrated with the M&S softwares are illustrated in order to suggest a practical guidance for the efficient design of ship propulsion system.

A Study on the Jewelry decorative pattern based on Wa-Dang in Unified Silla period (통일신라시대 와당을 모티브로 한 주얼리장식용 문양 연구)

  • kyeng-Tae Kim
    • The Journal of the Convergence on Culture Technology
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    • v.9 no.6
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    • pp.113-122
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    • 2023
  • This study was conducted on the premise of the development of cultural products using relic assets of traditional culture in a knowledge and information society led by culture and soft power. It was conducted in the context of exploring the possibility of cultural content products of Wa-Dang relics excavated from traditional architecture in the Unified Silla Period and expanding the scalability of commercialization motifs that are highly useful in jewelry design. First, the original form, material, use, size, meaning, and formative aesthetics of Wa-Dang were identified through literature and media research. Among the considered Wa-Dang, 10 types of Wa-Dang which represent the category and have values in modules and patterns were selected, and, then, circular images were extracted and modularized with a "formal simplification technique." Based on the "mathematical symmetry analysis technique," which is a method of systematizing pattern composition arrangement format. we derived a planar formative element that can be used in the development of the cultural content industry and jewelry design. In order to expand its usability in the jewelry industry in the future, it was presented as a 2D digital image. In the future, we hope more studies on the various cultural content industry utilizing the traditional culture will be carried out.

Unified Design Methodology and Verification Platform for Giga-scale System on Chip (기가 스케일 SoC를 위한 통합 설계 방법론 및 검증 플랫폼)

  • Kim, Jeong-Hun
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.47 no.2
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    • pp.106-114
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    • 2010
  • We proposed an unified design methodology and verification platform for giga-scale System on Chip (SoC). According to the growth of VLSI integration, the existing RTL design methodology has a limitation of a production gap because a design complexity increases. A verification methodology need an evolution to overcome a verification gap. The proposed platform includes a high level synthesis, and we develop a power-aware verification platform for low power design and verification automation using it's results. We developed a verification automation and power-aware verification methodology based on control and data flow graph (CDFG) and an abstract level language and RTL. The verification platform includes self-checking and the coverage driven verification methodology. Especially, the number of the random vector decreases minimum 5.75 times with the constrained random vector algorithm which is developed for the power-aware verification. This platform can verify a low power design with a general logic simulator using a power and power cell modeling method. This unified design and verification platform allow automatically to verify, design and synthesis the giga-scale design from the system level to RTL level in the whole design flow.

DESIGN AND FLIGHT SOFTWARE EMBEDDING OF KOMPSAT-2 SIMULATOR

  • Lee, Sang-Uk;Cho, Sung-Ki;Kim, Jae-Hoon
    • Journal of Astronomy and Space Sciences
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    • v.19 no.2
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    • pp.97-106
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    • 2002
  • The design feature of KOMPSAT-2 simulator based on object oriented design methodology in terms of unified modeling language (UML) has been discussed in this paper. Also, we present how to embed flight software into the simulator. Flight software em-bedding for KOMPSAT-2 simulator is compared to that of the KOMPSAT-1 simulator.

Topology Design Optimization of Nonlinear Thermoelasticity Problems (비선형 열탄성 연성 구조물에 대한 위상 최적설계)

  • 문세준;하윤도;조선호
    • Proceedings of the Computational Structural Engineering Institute Conference
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    • 2004.10a
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    • pp.347-354
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    • 2004
  • Using an efficient adjoint variable method, we develop a unified design sensitivity analysis (DSA) method considering both steady state nonlinear heat conduction and geometrical nonlinear elasticity problems. Design sensitivity expressions with respect to thermal conductivity and Young's modulus are derived. Beside the temperature and displacement adjoint equations, another coupled one is defined regarding the obtained adjoint displacement field as the adjoint load in temperature field. The developed DSA method is shown to be very efficient and further extended to a topology design optimization method for the nonlinear weakly coupled thermo-elasticity problems using a density approach.

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