• 제목/요약/키워드: Conceptual Structural Design

검색결과 213건 처리시간 0.03초

초고층건물의 통합설계시스템에서 개념구조설계법 개발 (Conceptual Structural Design Method in Integrated Design System for Tall Buildings)

  • 송화철;조용수
    • 한국공간구조학회논문집
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    • 제5권3호
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    • pp.75-82
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    • 2005
  • 초고층건물 구조설계를 효율적으로 수행하고 설계정보를 합리적으로 처리하기 위해서 통합설계에 대한 필요성이 증가하고 있으며, 또한 기존의 설계사례를 D/B화하여 초기 설계단계에 적용하는 연구가 필요하다. 구조설계 초기 단계에서는 주재료와 구조형태를 선정하고 대략적인 부재치수를 선정하게 되는데, 이것은 건물높이, 사용하중, 기본풍속, 설계가속도, 최대수평변위, 기둥간격, 층고 등과 같은 정보와 유사 사례에 대한 정보를 토대로 결정하게 된다. 그리고 초기 개념설계 단계에서 주어진 문제를 해결하는 방법은 과거 유사한 문제의 해결지식이 유용하게 적용된다. 본 논문에서는 초고층건물의 통합설계시스템에서의 개념구조설계법을 소개하고, 초기 설계단계에서의 적합성을 초고층건물 적용 예제를 이용하여 검토하고자 한다.

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Conceptual Design and Wind Load Analysis of Tall Building

  • Lee, S.L.;Swaddiwudhipong, S.
    • Computational Structural Engineering : An International Journal
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    • 제1권1호
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    • pp.11-20
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    • 2001
  • The paper describes the conceptual design, structural modelling and wind load analysis of tall buildings. The lateral stiffness of the building can be obtained economically through the interaction of core walls with peripheral frame tube and/or bundle of frame tubes and integrated design of the basement. The main structural components should be properly distributed such that the building will deflect mainly in the direction of the applied force without inducing significant response in other directions and twist. The cost effectiveness can be further enhanced through close consultation between architects and engineers at an early stage of conceptual design. Simplified structural modelling of the building and its response in three principal directions due to wind load are included. Effects of the two main structural components on the performances of a 70-story reinforced concrete building in terms of peak drift and maximum acceleration under wind load are discussed.

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개념적 설계를 배제한 관계형 데이터베이스 스키마의 설계 (A Design Methodology of Relational Database Schema Without the Conceptual Design Step)

  • 엄윤섭
    • 한국정보통신학회논문지
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    • 제9권2호
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    • pp.445-453
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    • 2005
  • 관계형 데이터베이스의 설계 과정은 요구사항 분석, ER 모델을 이용한 개념적 설계, 논리적 설계, 그리고 물리적 설계 과정으로 구성된다. 논리적 설계과정은 ER 다이어그램으로 구성된 개념적 스키마를 관계형 스키마로 전환하여 정규화시키는 과정으로 이루어진다. 이런 기존의 설계 과정에서 요구사항의 분석 후 개념적 스키마를 도출하는 개념적 설계 과정이 명확치 않음으로 인해서, 실제 데이터베이스 설계현장에서 적용하기 어려운 점이 있다. 본 논문에서는 작업과정이 모호한 개념적 설계를 제거함으로 보다 체계적으로 데이터베이스 스키마를 설계할 수 있는 방법을 제안한다. 구조적 설계 방법을 이용하여 자료 흐름도를 작성하고, 자료흐름도의 자료저장소에 파악된 애트리뷰트를 이용하여 관계합성으로 관계형 스키마를 도출한다. 관계형 스키마를 정규화하고, 정규화된 테이블로부터 데이터의 의미를 파악하여 테이블 관계도를 작성함으로써 최종 논리적 스키마를 결정한다.

모델베이스 설계를 위한 개념적 모델링 도구에 관한 연구 (A Conceptual Modeling Tools for the Model Base Design)

  • 정대율
    • 한국정보시스템학회지:정보시스템연구
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    • 제7권1호
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    • pp.181-208
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    • 1998
  • In many literatures of model management, various schemes for representing model base schema have proposed. Ultimately, the goal is to arrive at a set of mutually supportive and synergistic methodologies and tools for the modeling problem domain and model base design. This paper focus on how best to structure and represent conceptual model of problem domain and schema of model base. Semantic concepts and modeling constructs are valuable conceptual tools for understanding the structural relationships and constraints involved in an model management environment. To this end, we reviewed the model management literature, and analyzed the constructs of modeling tools of data model management graph-based approach. Although they have good tools but most of them are not enough for the representation of structural relationships and constraints. So we wanted more powerful tools which can represent diverse constructs in a decision support modeling and model base schema design. For the design of a model base, we developed object modeling framework which uses Object Modeling Techniques (OMT). In Object Modeling Framework, model base schema are classified into conceptual schema, logical schema, and physical schema. The conceptual schema represents the user's view of problem domain, and the logical schema represents a model formatted by a particular modeling language. The schema design, this paper proposes an extension of Object Model to overcome some of the limitations exhibited by the OMT. The proposed tool, Extended Object Model(EOM) have diverse constructs for the representation of decision support problem domain and conceptual model base schema.

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Design and optimization of steel trusses using genetic algorithms, parallel computing, and human-computer interaction

  • Agarwal, Pranab;Raich, Anne M.
    • Structural Engineering and Mechanics
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    • 제23권4호
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    • pp.325-337
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    • 2006
  • A hybrid structural design and optimization methodology that combines the strengths of genetic algorithms, local search techniques, and parallel computing is developed to evolve optimal truss systems in this research effort. The primary objective that is met in evolving near-optimal or optimal structural systems using this approach is the capability of satisfying user-defined design criteria while minimizing the computational time required. The application of genetic algorithms to the design and optimization of truss systems supports conceptual design by facilitating the exploration of new design alternatives. In addition, final shape optimization of the evolved designs is supported through the refinement of member sizes using local search techniques for further improvement. The use of the hybrid approach, therefore, enhances the overall process of structural design. Parallel computing is implemented to reduce the total computation time required to obtain near-optimal designs. The support of human-computer interaction during layout optimization and local optimization is also discussed since it assists in evolving optimal truss systems that better satisfy a user's design requirements and design preferences.

교량형태의 개념적 설계: 기하학적 접근법 (Conceptual Design of Bridge Forms: Geometric Approach)

  • 김남희;고현무;홍성걸
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 2010년도 정기 학술대회
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    • pp.166-169
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    • 2010
  • In early design stages structural form finding is of importance. Theses days the structural forms are forced to satisfy not only engineering criteria but also aesthetic concerns including symbolism. Geometric approach seems to provide many possibilities in generating creative forms as design alternatives for bridge structures. However, the increase in possibilities of geometric application didn't gather much attention from bridge designers who are focusing mainly on structural aspects. Prior to adopting the geometric approach, it is needed to review bridge structures in terms of geometric vocabulary. This study has proposed how to generate geometric forms of bridge structures in terms of geometric computing concepts.

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Application Analysis of Artificial Intelligence Technology in Museum Concept Design

  • Chen Xi;Jeanhun Chung
    • International journal of advanced smart convergence
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    • 제12권4호
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    • pp.321-327
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    • 2023
  • The current rapid development of artificial intelligence technology has involved all aspects of the production field. The development of various algorithms and programs has pushed artificial intelligence to a new peak. Due to its complexity and diversity in the field of architectural design, the positive impact of artificial intelligence technology on architectural design is discussed from the perspective of conceptual design. For museums, which are one of the increasingly popular public facilities, the introduction of artificial intelligence technology has provided certain help in assisting the conceptual design of the museum. This article analyzes the theoretical and practical support of artificial intelligence technology in improving conceptual design, analyzing the architectural appearance, structural layout, materials, etc., to increase the feasibility and practicality of assisting conceptual design. It has certain reference significance for building a modern, advanced, international and interactive modern museum.

Layout evaluation of building outrigger truss by using material topology optimization

  • Lee, Dongkyu;Shin, Soomi;Lee, Jaehong;Lee, Kihak
    • Steel and Composite Structures
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    • 제19권2호
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    • pp.263-275
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    • 2015
  • This study presents conceptual information of newly optimized shapes and connectivity of the so-called outrigger truss system for modern tall buildings that resists lateral loads induced by wind and earthquake forces. In practice, the outrigger truss consists of triangular or Vierendeel types to stiffen tall buildings, and the decision of outrigger design has been qualitatively achieved by only engineers' experience and intuition, including information of structural behaviors, although outrigger shapes and the member's connectivity absolutely affect building stiffness, the input of material, construction ability and so on. Therefore the design of outrigger trusses needs to be measured and determined according to scientific proofs like reliable optimal design tools. In this study, at first the shape and connectivity of an outrigger truss system are visually evaluated by using a conceptual design tool of the classical topology optimization method, and then are quantitatively investigated with respect to a structural safety as stiffness, an economical aspect as material quantity, and construction characteristics as the number of member connection. Numerical applications are studied to verify the effectiveness of the proposed design process to generate a new shape and connectivity of the outrigger for both static and dynamic responses.

쉘형 차체 구조의 소재대체 개념설계에 대한 경량화 예측 기법 (Weight-reduction Prediction for the Conceptual Design of Carbody with Shell Type Sections Using the Material Substitution Technique)

  • 구정서;조현직
    • 한국자동차공학회논문집
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    • 제15권4호
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    • pp.17-26
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    • 2007
  • In this paper, a theoretical approach is studied to predict structural performances and weight reduction rates of a car-body with shell type sections in case that its materials have to be substituted. For the material substitution design of a car-body, bending, axial and twisting deformations are considered under constant stiffness and strength conditions, which utilize some new indices derived from a structural performance point of view. The developed indices to measure the weight reduction by the material substitution give good guidelines on conceptual design of car-bodies.

Conceptual design of buildings subjected to wind load by using topology optimization

  • Tang, Jiwu;Xie, Yi Min;Felicetti, Peter
    • Wind and Structures
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    • 제18권1호
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    • pp.21-35
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    • 2014
  • The latest developments in topology optimization are integrated with Computational Fluid Dynamics (CFD) for the conceptual design of building structures. The wind load on a building is simulated using CFD, and the structural response of the building is obtained from finite element analysis under the wind load obtained. Multiple wind directions are simulated within a single fluid domain by simply expanding the simulation domain. The bi-directional evolutionary structural optimization (BESO) algorithm with a scheme of material interpolation is extended for an automatic building topology optimization considering multiple wind loading cases. The proposed approach is demonstrated by a series of examples of optimum topology design of perimeter bracing systems of high-rise building structures.