• Title/Summary/Keyword: Active BIM

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Usability Improvement of BIM for Construction Projects Using Active BIM Functions (능동형 BIM 체계에 의한 토목 및 건축분야 BIM 활용성 개선 연구)

  • Kang, Leen-Seok;Moon, Hyun-Seok;Kim, Hyeon-Seung;Kwak, Joong-Min
    • Korean Journal of Construction Engineering and Management
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    • v.14 no.5
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    • pp.74-83
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    • 2013
  • Most current BIM systems are focused on the visual information of work status in the design and construction stages. In a passive BIM system, 3D CAD tool can visualize the interference elements of design drawings, however, it cannot suggest a solution to solve the interference status. And 4D CAD tool in the construction stage can simulate the appearance of each activity by construction schedule, however, it cannot suggest an optimized schedule plan considering specified schedule condition of the project. Recently, many organizations need BIM solutions that can improve the work status beyond the level of simple visual information from BIM system. Active BIM system can provide the solutions to the project manager. This study suggests active BIM functions for the solutions and attempts to develop a 4D CAD engine to validate the usability of the functions.

Development of Automation Technology for Modeling of Railway Infrastructure using BIM Library (BIM 라이브러리를 활용한 철도 인프라의 모델링 자동화 기술 개발)

  • Kim, Yun-Ok;Moon, So-Yeong;Yoon, Hee-Taek;Park, Young-Kon;Kim, Ji-Young
    • Journal of KIBIM
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    • v.12 no.3
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    • pp.18-29
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    • 2022
  • Recently, research on the application of BIM has continuously been active not only in architecture but also in civil engineering in order to improve work efficiency across the project's planning, design, construction and maintenance phases. However, the empirical applications of BIM targeting to civil engineering scope of construction sites still lags compared to architectural sized projects. This is because BIM tools are mainly based upon vertical structures of architecture, thereby most of them have difficulties and limitations to get utilized on horizontal structures of civil engineering. Therefore, this study intends to propose automation technology of design using BIM library and to indicate its field availability through case application on a railway project representing linear infrastructure. In addition, it put forward the utilization plan of the automation technology upto 4D and 5D by continue making use of the BIM model created in the project's design stage up through the maintenance stage. The novel method of the technology proposed in this paper incorporates the automatic creation of the BIM library based on two-dimensional tunnel cross-sections and sweeping of it over three-dimensional alignment to create a BIM model of linear infrastructure. The proposed technology is anticipated to improve the efficiecny of modeling process of railway projects based on linear structures.

BIM IMPLEMENTATION STRATEGY AND TASKS FOR ARCHITECTURAL INDUSTRY IN KOREA

  • Ki Byung Yoon
    • International conference on construction engineering and project management
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    • 2011.02a
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    • pp.88-92
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    • 2011
  • Even though attempts are made to transform from 2D CAD to BIM representation for building design and construction, it were not so successful for practical implementation until recently in construction industry in Korea. However, there is a dramatic change for the use of BIM by collaboration among government, independent organizations as well as industry itself. Government reckons that BIM is an important tool for environment friendly construction and industry competitiveness. The government not only makes national BIM standards and push policies in order to make market environment. Independent organizations such as BuildingSMART Korea does active role to stimulate the transformation process successfully. They act as opinion leaders for the Government to consider BIM implementation for industry competitiveness issue. They make roadmap as well as technical standards and guidelines. It also leads technical developments and supports for its implementation. Government supports researches for the implementation of BIM. The research includes BIM standards, guidelines, linking with existing Architectural Administrative Information Systems, making libraries as well as education. Government makes policy for BIM as a compulsory data for bidding process of newly designed government buildings. Private sector not only agrees BIM as a tool to adapt but also essential methods for its survival in domestic and foreign construction market. Architectural design companies and constructions companies currently develop technical skills and implement BIM for new projects such as Dongdaemoon Plaza that cannot be successfully drawn by conventional methods.

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A Basic Study on Review the Classification System and the Process of BIM Information for an Automatic Review of Building Code (건축법규 자동검토를 위한 BIM정보의 분류체계 검토 및 프로세스에 관한 기초연구)

  • Lee, Chang-Yoon;Shim, Un-Jun;Ahn, Yong-Sun
    • Korean Journal of Construction Engineering and Management
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    • v.13 no.5
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    • pp.45-52
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    • 2012
  • Recently, BIM is used at several areas actively because of introduction of BIM in the construction industry. In particular, the recent many studies on activation of BIM information sharing is underway and it is the future direction of BIM. Moreover, it should be clearly realized. In the BIM levels of domestic construction phase, Interference Review, calculating volume estimates in part based on the active research is underway. However, still interested in reviewing building codes have relatively little interest. As BIM enabled, The methods of reviewing building codes should be transformed into a automated system by using information of BIM. In overseas, they are already using diverse softwares for reviewing modeling. Thus, For an automatic review of building regulations research is needed. this study is research on the development Domestic building codes as an automatic review process by using BIM. In order to Automatic review of the current building regulations by using BIM, this study analyzes the characteristics of each piece of information.

The construction management of BIM-based small building remodeling. (BIM 적용을 통한 소규모 건물 리모델링 시 현장시공관리)

  • Jung, Tae-Ho;Kim, Sang-Won;Park, Seung-Hwan;Hong, Seong-Wook
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2012.05a
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    • pp.191-192
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    • 2012
  • The BIM(Building Information Modeling) introduction of the construction and maintenance at the design phase through the life cycle of the building until it is destroyed, I will bring big changes in the process. If you are building a small action by a variety of variables difficult to manage on-site construction, but, BIM remodeling of the building by applying a small improvement in the quality of imported building and construction delays, such as design changes or re-construction by removing the elements of economic 04 to make. Since the early stages of applying BIM to complement the introduction part, but the future seems to lead to changes in the built environment, academics and practitioners of the construction industry seem to have an active research.

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A Study for Derivation of Participant's Information Flow At Framework Construction based on BIM (BIM 기반의 골조공사에서 참여자별 정보의 흐름 도출에 관한 연구)

  • Kim, Yong-Hwa;Lee, Ju-Sung;Oh, Jung-Keun;Kim, Jae-Jun
    • Korean Journal of Construction Engineering and Management
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    • v.14 no.2
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    • pp.22-34
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    • 2013
  • As construction project has been becoming larger, specialized and complicated, it is important to utilize a lot of information that is made by diverse participants. Especially this information is mainly produced in construction site that plays a leading role in construction project. The problem of information exchange between participants of construction site causes decline of construction productivity. So as to resolve this problem, there is a many interest in BIM(Building Information Modeling) that makes and manages a necessary data during building life cycle. But in Korea construction industry, applying BIM in construction phase is less active than in design phase. Through studying previous research, this study classify the main cause of failure related to information exchange in framework construction. And by interviewing expert, it draw a work that is possible to apply BIM. Next through analyzing framework construction site that is applied with BIM, this study proposes specific information flow model for supporting work by BIM.

Development of Model Requirements Checklist for Utilizing BIM in Construction Phase - Focused on the MEP - (시공단계 BIM 활용을 위한 모델 요구조건 체크리스트 개발 - MEP를 중심으로 -)

  • Kim, Woojin;Park, Jinho;Cha, Yongwoon;Hyun, Changtaek;Han, Sangwon
    • Korean Journal of Construction Engineering and Management
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    • v.20 no.1
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    • pp.22-31
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    • 2019
  • The application of BIM that can manage and integrate information generated during the entire life cycle of buildings in domestic and overseas construction projects is becoming active. When BIM is utilized in the construction phase, it can shorten the construction period, reduce the occurrence of reworks and improve collaboration capability. However, there are limitations in applying BIM to the construction phase due to the insufficient definition level of domestic BIM guidelines and inadequate design standards. In this regard, this study developed BIM model requirements checklist for the application of BIM in the construction phase. To develop the checklists, 21 domestic and overseas BIM guidelines, three public construction projects and four private construction projects to which construction BIM was applied, were analyzed. Based on the guidelines and cases, a total of 62 construction BIM model requirements (31 model objects and 31 attribute rules) and proposed construction BIM model requirement checklists by dividing the 61 requirements according to the requirement and purpose for utilization were identified. It is expected that the practical applications of the checklists proposed in this study will improve the level of BIM model in construction phase. In addition, this study has its significance as a basic research that can be used in the development of standardized guidelines for BIM model in construction phase from academic aspects.

BIM Quality Assurance for DFS in Design Phase (설계단계에서의 BIM 안전설계 품질검토)

  • Kwon, Ocheol;Cho, Joowon;Jo, Chanwon
    • Korean Journal of Computational Design and Engineering
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    • v.18 no.5
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    • pp.348-358
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    • 2013
  • Since the safety accidents on the construction sites take large part of total industry disasters, research on the construction safety has been getting important. Recently, as BIM technology allows cooperation between designer and constructor groups, it becomes more active worldwide than before to study on the ways of accomplish construction safety improvement in the design phase. In this paper, we suggested a checklist for assuring construction safety in the phase of design, and performed automatic evaluation by using a BIM quality checking tool. This shows that it is possible for us to find out the construction safety has been improved in the design phase. Once the standard checklist and assurance process are developed, they are expected to play a great role of reducing disasters in the construction industry.

Development of BIM Utilization Level Evaluation Model in Construction Management Company (건설사업관리기업의 BIM 활용수준 평가 모형 개발)

  • Jeong, Seo-Hee;Kim, Gwang-Hee
    • Korean Journal of Construction Engineering and Management
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    • v.25 no.4
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    • pp.24-33
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    • 2024
  • Recently, as smart construction has become more active, construction companys are evaluating their smart construction capabilities in order to transform into smart construction companies. However, the revitalization of smart construction doesn't only apply to construction companies, the level of utilization of all participants, including owners, designers, construction project managers, and construction company, must be improved. Therefore, this study aims to present a model that evaluate the building information modeling (BIM) utilization level for measuring the BIM utilization level of construction management companies in executing construction project management. In this study, an AHP questionnaire survey targeting BIM practitioners to calculate the weight of each BIM utilization item and score it to construct evaluation model and evaluate it by applying it to construction management companies are conducted. As a result of the evaluation using model, there were differences between companies in the number of BIM users, and in the qualitative evaluation, it is mainly used for interference review, constructability review, and design change management. Therefore, in order to revitalize BIM, it is believed that it is necessary to strengthen BIM utilization ability through separate training for construction manager (CMr) and to present clear utilization standards and scope of work for BIM utilization in performing construction management tasks. Consequently, evaluating more construction management companies using the model presented in this study will result in the transition of CM companies to smart construction and revitalization of BIM adoption.

A Development of Railway Infrastructure BIM Prototype Libraries for Roadbed and Track (노반, 궤도분야 철도인프라 BIM 원형 라이브러리 구축)

  • Park, Hyung-Jin;Seo, Myoung-Bae
    • Journal of the Computational Structural Engineering Institute of Korea
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    • v.30 no.5
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    • pp.461-468
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    • 2017
  • The introduction of BIM in domestic construction industry has become more active. Library development and standardization in civil-engineering are unexhausted. This research develop and standardize prototype library for railway infrastructure. We define target facility for library based on railway standard drawings and select BIM software according characteristic of each facility. In this research, we develop libraries composed of 199 files and 489 types for alignment, roadbed and track and make specifications as defined attribution item and description. As we consider for application to diverse use case, develop prototype library in low LoD. We expect that library can increase 3D design productivity and ensure consistency of quality.