• Title/Summary/Keyword: 치수 최적화

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The size and shape optimization of plane trusses using the multi-levels method (다단계 분할기법에 의한 평면트러스의 단면치수 및 형상 최적화)

  • Pyeon, Hae-Wan;Oh, Kyu-Rak;Kang, Moon-Myung
    • Journal of Korean Society of Steel Construction
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    • v.12 no.5 s.48
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    • pp.515-525
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    • 2000
  • The purpose of this paper was to develop size & shape optimization programming algorithm of plane trusses. The optimum techniques applied in this study were extended penalty method of Sequential Unconstrained Minimization Techniques(SUMT) and direct search method with multi-variables proposed by Hooke & Jeeves. Upper mentioned two methods were used iteratively at each level of size and shape optimization routines. The design variables of size optimization were circular steel tube(structural member) diameter and thickness, those of shape optimization were joint coordinates, and the objective function was represented as total weight of truss. During the optimum design, two level procedures of size and shape optimization were interacted iteratively until the final optimum values were attained. At the previous studies about shape optimization of truss, the member sectional areas and coordinates were applied as design variables. So that they could not apply the buckling effect of compression member. In this paper, actual sizes of member and nodal coordinates are used as design variables to consider the buckling effect of compression member properly.

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A Study on the Optimization of Main Dimensions of a Ship by Design Search Techniques based on the AI (AI 기반 설계 탐색 기법을 통한 선박의 주요 치수 최적화)

  • Dong-Woo Park;Inseob Kim
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.28 no.7
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    • pp.1231-1237
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    • 2022
  • In the present study, the optimization of the main particulars of a ship using AI-based design search techniques was investigated. For the design search techniques, the SHERPA algorithm by HEEDS was applied, and CFD analysis using STAR-CCM+ was applied for the calculation of resistance performance. Main particulars were automatically transformed by modifying the main particulars of the ship at the stage of preprocessing using JAVA script and Python. Small catamaran was chosen for the present study, and the main dimensions of the length, breadth, draft of demi-hull, and distance between demi-hulls were considered as design variables. Total resistance was considered as an objective function, and the range of displaced volume considering the arrangement of the outfitting system was chosen as the constraint. As a result, the changes in the individual design variables were within ±5%, and the total resistance of the optimized hull form was decreased by 11% compared with that of the existing hull form. Throughout the present study, the resistance performance of small catamaran could be improved by the optimization of the main dimensions without direct modification of the hull shape. In addition, the application of optimization using design search techniques is expected for the improvement in the resistance performance of a ship.

A Study on Lightweight Design of Double Deck High-Speed Train Hybrid Carbody Using Material Substitution and Size Optimization Method (소재대체법과 치수최적화 기법을 이용한 2층 고속열차 하이브리드 차체 구조물의 경량 설계 연구)

  • Im, Jae-Moon;Jung, Min-Ho;Kim, Jong-Yeon;Shin, Kwang-Bok
    • Composites Research
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    • v.32 no.1
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    • pp.29-36
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    • 2019
  • The purpose of this paper is to suggest a lightweight design for the aluminum extrusion carbody structure of a double deck high-speed train using material substitution and size optimization method. In order to conduct material substitution, the topology optimization was used to determine the application parts of sandwich composites at the carbody structures. The results of analysis showed that sandwich composites could be applied at roof and 2nd underframe. The size optimization was used to determine thickness of the aluminum extruded and carbon/epoxy composite. The design variable, state constraint and objective function were formulated to solve the size optimization, and then, the feasible design was presented by these conditions. The results of the lightweight design showed that the weight of double deck high-speed train hybrid carbody could be reduced by 2.18(17.70%) tons.

A Study on the Skirt Size Selection of a Composite Pressure Vessel using Optimum Analysis Technique (최적화 해석 기법을 이용한 복합재 압력용기의 스커트 치수 선정에 관한 연구)

  • Kim, Jun-Hwan;Jeon, Kwang-Woo;Shin, Kwang-Bok;Hwang, Tae-Kyung
    • Proceedings of the Korean Society of Propulsion Engineers Conference
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    • 2012.05a
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    • pp.403-407
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    • 2012
  • The purpose of this study is to find the optimum skirt size for a composite pressure vessel using optimum analysis technique. The size optimization for skirt shape of a composite pressure vessel was conducted using sub-problem approximation method and batch processing codes programmed by APDL(ANSYS Parametric Design Language). The thickness and length of skirt part were selected as design variables for the optimum analysis. The objective function and constraints were chosen as weight and displacement of skirt part, respectively. The numerical results showed that the weight of skirt of a composite pressure vessel would be saved by maximum 4.38% through the size optimization analysis for the skirt shape.

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Maximization of the natural frequency of a structure using shape optimization (형상 최적화를 통한 구조물의 고유진동수 최대화)

  • 서범석;박윤식
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2001.11a
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    • pp.167-172
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    • 2001
  • 구조최적화는 기계구조물의 동특성을 변경하기 위하여 필수적으로 수행되어야 할 요소이다. 어떠한 방법을 택하여 보다 효율적으로 수행할 것 인지가 엔지니어의 관심일 것이다. 구조최적화는 설계변수에 따라 치수최적화, 물성치최적화 형상최적화 등으로 나눌 수 있다. 형상 최적화는 구조물의 유한요소모델을 기본으로 경계의 형상이나 절점의 형상, 회전 등을 설계 변수로 삼는 것이다. 고유진동수를 높이거나 모드형상을 제어하기 위하여 평판에 보강재를 붙이는 경우가 있다. 이때 보강재의 위치나 치수 형상 등이 중요한 변수가 될 수 있다. 본 논문에서는 평판의 고유진동수를 극대화 하기위해 보 보강재를 붙이는 문제에서 보의 회전을 설계 변수로 삼아 최적설계를 수행 할 것이다.

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Vanning Management System (컴퓨터를 이용한 유닛로드 설계시스템)

  • Eom, Jae-Gyun
    • Pallet News
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    • s.40
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    • pp.36-45
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    • 2006
  • 한국파렛트풀(주)의 임직원을 대상으로 개발한 온라인 강좌 프로그램인 "파렛트와 유닛로드시스템 실무과정"의 일부분인 [컴퓨터를 이용한 유닛로드설계시스템:Vanning Management System]강좌의 VMS솔류션을 총 5회에 걸쳐 나누어 소개한다. 이 VMS소프트웨어는 Logen Solutions 라는 국내벤처기업이 개발한 제품으로서, Supply Chain상에서 발생하는 포장 및 적재 문제들 즉, 물류포장을 위한 제품 치수 및 포장 박스 치수 최적화와 일정한 용기내의 적재량 최적화 및 적재 패턴 최적화를 쉽고 빠르게 해법을 제공하는 종합 솔루션이다.

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Vanning Management System (컴퓨터를 이용한 유닛로드설계시스템)

  • 엄재균
    • Pallet News
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    • s.38
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    • pp.8-19
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    • 2005
  • 한국파렛트풀㈜의 임직원을 대상으로 개발한 온라인강좌 프로그램인 '파렛트와 유닛로드시스템 실무과정'의 일부분인 [컴퓨터를 이용한 유닛로드설계시스템: Vanning Management System] 강좌의 VMS 솔루션을 총 5회에 걸쳐 나누어 소개한다. 이 VMS 소프트웨어는 Logen solutions 라는 국내벤처기업이 개발한 제품으로서, Supply Chain상에서 발생하는 포장 및 적재 문제들 즉, 물류포장을 위한 제품 치수 및 포장 박스 치수 최적화와 일정한 용기내의 적재량 최적화 및 적재 패턴 최적화를 쉽고 빠르게 해법을 제공하는 종합솔루션이다.

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Vanning Management System (컴퓨터를 이용한 유닛로드 설계시스템)

  • Eom, Jae-Gyun
    • Pallet News
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    • s.39
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    • pp.20-32
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    • 2005
  • 한국파렛트풀(주)의 임직원을 대상으로 개발한 온라인 강좌 프로그램인 "파렛트와 유닛로드시스템 실무과정"의 일부분인 [컴퓨터를 이용한 유닛로드설계시스템:Vanning Management System]강좌의 VMS솔류션을 총 5회에 걸쳐 나누어 소개한다. 이 VMS소프트웨어는 Logen Solutions 라는 국내벤처기업이 개발한 제품으로서, Supply Chain상에서 발생하는 포장 및 적재 문제들 즉, 물류포장을 위한 제품 치수 및 포장 박스 치수 최적화와 일정한 용기내의 적재량 최적화 및 적재 패턴 최적화를 쉽고 빠르게 해법을 제공하는 종합 솔루션이다.

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Vanning Management System (컴퓨터를 이용한 유닛로드 설계시스템)

  • Eom, Jae-Gyun
    • Pallet News
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    • s.41
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    • pp.21-32
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    • 2006
  • 한국파렛트풀(주)의 임직원을 대상으로 개발한 온라인 강좌 프로그램인 "파렛트와 유닛로드시스템 실무과정"의 일부분인 [컴퓨터를 이용한 유닛로드설계시스템:Vanning Management System]강좌의 VMS솔류션을 총 5회에 걸쳐 나누어 소개한다. 이 VMS소프트웨어는 Logen Solutions 라는 국내벤처기업이 개발한 제품으로서, Supply Chain상에서 발생하는 포장 및 적재 문제들 즉, 물류포장을 위한 제품 치수 및 포장 박스 치수 최적화와 일정한 용기내의 적재량 최적화 및 적재 패턴 최적화를 쉽고 빠르게 해법을 제공하는 종합 솔루션이다.

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Size Optimization of a Rod Using Frequency Response Functions of Substructures (부분 구조의 주파수 응답 함수를 이용한 봉의 치수 최적화)

  • Yoon, Hong Geun;Lee, Jin Woo
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.41 no.10
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    • pp.905-913
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    • 2017
  • In this work, a method of size optimization is proposed to maximize the natural frequency of a rod that consists of a hidden shape in one part and an exposed shape in the other. The frequency response function of a rod composed of two parts is predicted by using the frequency response functions of each of the parts instead of the shapes of the parts. The mass and stiffness matrices of the rod are obtained by using the mass and stiffness matrices of the equivalent vibration systems, which are obtained by applying the experimental modal analysis method to the frequency response functions of the parts. Through several numerical examples, the frequency response function obtained by using the proposed method is compared with that of a rod to validate the prediction method based on equivalent vibration systems. A size optimization problem is formulated for maximizing the first natural frequency of a combined rod, which is replaced with an equivalent vibration system, and a rod structure is optimized by using an optimization algorithm.