• Title/Summary/Keyword: Construction-phase

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A Study on the Environmental Friendly Noise and Vibration Management Method for the Construction Project (건설사업의 소음 $\cdot$ 진동 관리방안에 관한 연구)

  • Ko Kwang-il;Kim In-ho;Seo Sang-wook;Lee Chan-sik
    • Korean Journal of Construction Engineering and Management
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    • v.5 no.6 s.22
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    • pp.110-117
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    • 2004
  • The environmental-related disputes and claims are steeply increasing recently. Among them the number of disputes and claims on noise and vibration incurred in the process of construction is more than $85\%$. Since those disputes and claims cause cost overrun and or penalty and bad impression for the construction company, it is necessary to develop a systematic management method for solving them. This study presents a environmental management structure based on the examining many kinds of environmental-related laws including 'The Act on Regulation of Noise and Vibration' furthermore, through analysing various dispute and claim cases, and surveying literatures we suggest environmental study noise and vibration management method using for the preconstruction phase, the construction phase and the post construction phase, respectively.

Case Study of 4D CAD Modeling in Hi-Rise Complex Buildings Project (초고층 복합시설물의 4D CAD 모델링 사례연구)

  • Kwan Oh-Sung;Park Woo-Yul;Cho Hun-Hee;Kang Kyung-In
    • Proceedings of the Korean Institute Of Construction Engineering and Management
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    • autumn
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    • pp.187-192
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    • 2001
  • High-Rise Building Construction Project which has high uncertainty and complexity, causes lots of problems under construction. In particular, the integration between design phase and construction phase highly affects a construction project in terms of cost and time. To possibly make the flexible response and preliminary verification against the construction planning problems in high rise building project, this paper proposes the Engineering-Construction Management System based on 4D CAD that put the time factor together with 3D CAD. The usefulness of this system has been verified through the actual project. It could helps the reducing trials and errors during construction phase by catching the factors on problems of project. Ultimately it will allow users to save project cost and duration by field application.

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A ROBUST AND ACCURATE PHASE-FIELD SIMULATION OF SNOW CRYSTAL GROWTH

  • Li, Yibao;Lee, Dong-Sun;Lee, Hyun-Geun;Jeong, Da-Rae;Lee, Chae-Young;Yang, Dong-Gyu;Kim, Jun-Seok
    • Journal of the Korean Society for Industrial and Applied Mathematics
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    • v.16 no.1
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    • pp.15-29
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    • 2012
  • In this paper we introduce 6-fold symmetry crystal growth using new phase-field models based on the modified Allen-Cahn equation. The proposed method is a hybrid method which uses both analytic and numerical solutions. We then show this method can be extended to $k$-fold case. The Wulff construction procedure is provided to understand and predict the shape of crystals. We also present a detailed mathematical proof of the validity of the Wulff construction. For computational results, we verify the accuracy and efficiency of the method for snow crystal growth.

DESIGN MANAGEMENT FOR CONSTRUCTABILITY REVIEW OF HIGH QUALITY EXPOSED CONCRETE

  • Doo Won Hwang;Young woong Song;Yoon ki Choi;Dong Woo Shin;Jae Youl Chun
    • International conference on construction engineering and project management
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    • 2005.10a
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    • pp.1154-1157
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    • 2005
  • This report is to do design management for constructability review of high quality exposed concrete, which is used increasingly in recent. To secure systematic management at design phase, we reviewed each definition and work at each design phase, we define high quality exposed concrete, a part of architectural concrete, as "an exposed concrete which has well ordered joint & is in pursuit of smooth surface." We reviewed requirements and influential factor to obtain High quality finishing surface and compared construction process of high quality exposed concrete with that of other finishing method. Management method at each design phase for constructability review to meet additional works and requirements is presented.

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A Study for the Optimal Expression Level Definition of BIM Model in Construction Phase (시공단계 BIM모델의 적정표현수준 정의를 위한 기초 연구)

  • Noh, Hae-ra;Kim, Ji-yun;Lee, Da-un;Yun, Seok-heon
    • Korean Journal of Computational Design and Engineering
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    • v.21 no.4
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    • pp.378-388
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    • 2016
  • As the needs for the mega-sized, high-rise and irregular shape of building increase, domestic application of BIM in construction industry is increasing in recent years. In this circumstance, interests in BIM modeling and modeling detail level have been also increased. BIM that is based on a three-dimensions, requires a specific and precise building expressions. And model expression level required for each phase such as design, construction, and maintenance of the construction project could be different as its needs. Because that it is not clear to define the criteria for the expression level of construction BIM model, It is difficult to decide how detail and what to model is appropriate in the practical application of BIM model. It could be the reason why the productivity in construction project became lower and lower. In this study we consider the way how to improve the productivity of BIM and analyze the appropriate representation level of construction BIM model through the experts' survey. The results of study could suggest the basis for an appropriate expression level of construction BIM model.

Development of Optimum Design Factor for Automated Steel Fabrication Construction System (철골조립자동화시스템의 설계최적화를 위한 요구성능도출에 관한 연구)

  • Lee, Myung-Do;Kim, Dae-Won;Lee, Bo-Hyeong;Cho, Hunhee;Kang, Kyung-In
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2009.11a
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    • pp.235-239
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    • 2009
  • As robotic technologies have become more actively utilized to automate many construction tasks, they have been able to improve the construction productivity, quality, and worker's safety on site. A new advanced system, Robot-based Construction Automation (RCA) system, is currently being developed. To accomplish RCA system effectively, Design for automation (DFA) should be performed in automation system developing phase. The performance criteria of this system are a major cause of design changes. It is required exhaustive review for development new system. This research analyzed the design changes of Climbing Hydraulic Robot system and Construction Factory (CF), being currently developed in the field of applied RCA systems. And the design change matters according to performance criteria in each system's design-by-step were analyzed. The purpose of this research is developing the performance criteria in the developing phase of RCA system, and then will be served as basis for system design in similar projects.

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Disaster Risk Assessment by Work Unit of Construction Work for Improve the Efficiency of Design for Safety Task (설계의 안전성 검토(DFS) 업무의 효율성 증대를 위한 공동주택 건설공사의 단위작업별 재해위험성 평가)

  • Kim, Jin-Won;Kim, Jae-Jun
    • Journal of the Architectural Institute of Korea Structure & Construction
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    • v.34 no.6
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    • pp.45-53
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    • 2018
  • The construction work to establish a safety management plan should be carried out Design for Safety(DFS) task by the designers from May 2016 according to the amendment of the Construction Technology Promotion Act. However, designers lack experience in construction work and lack of information on safety accidents, so it is not easy to predict a disaster that may occur during the construction phase. Therefore, the purpose of this study is to provide information about disasters that can occur in each construction work in order to enable designers to efficiently perform DFS task in the design phase. In this study, the construction work was classified by work unit and the disaster risk assessment was conducted using the Failure Mode and Effect Analysis technique. The disaster information by work unit analyzed in this study can be used to provide designers with an alternative to prevent disasters at the design stage. Disaster information by work unit of apartment construction can be used by designers to prepare an alternative for disaster prevention at the design stage.

WHEN CM AT RISK MEETS VIRTUAL DESIGN AND CONSTRUCTION (VDC) IN CONSTRUCTION PHASE: CASE STUDY OF PRACTICIES IN U.S.

  • Joo-Sung, Lee;Sung-Kon, Moon;Ju-Hyung, Kim;Jae-Jun, Kim
    • International conference on construction engineering and project management
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    • 2009.05a
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    • pp.566-572
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    • 2009
  • Turn-key and CMF(CM for Fee) have been selected as procurement paths of large public projects in Korea. However, recently, researches and discussions on CMR(CM at Risk) have been popular as the Korean government seeks for alternative procurement paths to enhance the performance. In the CMR projects, the part who is responsible for construction management should predict and control the potential risks for guaranteeing benefits. In this paper, CMR projects in which a general contractor plays the role as CMr is mainly analyzed. We give attentions to risk management during construction process given that subcontractors, main parts in this phase, work in various ways and thus more chances for faults exist. In this case, for the general contractor, to recognize potential risks in previous to start construction works of subcontractor by means of virtual design and construction (VDC) must be essential to this end. The case study of practices on VDC in U.S in which CMR has been introduced can provide considerable aspects to implement it in Korea.

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Toward the Future of Mechanized Construction Introduction and Future Prospects of Mechanized Constructions Using Digital Information

  • Makoto Kayashima;Yuusuke Noguchi
    • International Journal of High-Rise Buildings
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    • v.11 no.2
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    • pp.87-102
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    • 2022
  • In Japan, the population progresses to the extreme aging society and it is entering the phase of the population decrease while the population increase is continuing in the world. The construction market is expected to shrink accordingly, however the situation of labor shortage is expected to continue at a faster rate, because the aging of construction workers is progressing and new younger labor force cannot be secured. In order to supplement the labor shortage, it is required to progress mechanization, automation, labor saving, and efficiency improvement by utilizing the information well in each stage in a series of flow of planning, design, construction, operation, and disassembly in one building. The measures to maintain and expand the construction market by the new efficiency improvement techniques which enhance the utilization degree of building information are required. Currently, the elemental technologies which utilized BIM (Building Information Modeling) are accumulated by advancing digitization in each phase. DX (Digital transformation) in the construction industry can be achieved by the technology maturing and having a series of continuities. It is anticipated that this will evolve to a new method which is unprecedented. Present status of BIM and mechanized constructions in Taisei Construction are introduced, and future prospect is described.

Development of Carbon Emission Casual Map Considering Variable Factors in Steel Erection Work (가변요인을 고려한 철골세우기 작업의 탄소배출 인과지도 개발)

  • Nam, Chulu;Lee, Dongyoun;Cho, Hunhee;Kang, Kyung-In
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2016.10a
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    • pp.75-76
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    • 2016
  • Because of variable factors in construction phase, measurement of carbon emission in construction industry is more difficult than in other industries. To enhance accuracy of the measurement, the impact of variable factors must be considered. In this paper, to understand the influence of variable factors in steel erection work, a carbon emission casual map was developed. The map demonstrates that the considerations of variable factors in measurement of carbon emission improves the accuracy. The results of this paper are expected to contribute to development of carbon emission casual map and carbon emission measurement model for the entire construction phase.

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