• 제목/요약/키워드: Construction-IT Convergence

검색결과 740건 처리시간 0.025초

저심도 터널의 천단침하 및 내공변위의 초기변위속도와 최종변위의 관계 (Relations between Initial Displacement Rate and Final Displacement of Arch Settlement and Convergence of a Shallow Tunnel)

  • 김치환
    • 터널과지하공간
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    • 제23권2호
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    • pp.110-119
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    • 2013
  • 터널 시공 중 천단침하와 내공변위를 측정하는 것이 일반화되어 있다. 터널 시공 중 계측기를 설치한 후 첫 번째로 측정한 천단침하와 내공변위의 1일간 변위량을 각각 초기천단침하속도와 초기내공변위속도로 또 마지막으로 계측한 천단침하와 내공변위를 각각 최종천단침하와 최종내공변위로 정의하고 계측한 최종변위와 초기변위속도의 관계를 분석하였다. 이를 위한 분석용 자료는 서울지하철 906공구에서 터널 시공 중 계측한 것이다. 이 터널의 폭과 높이는 각각 약 11.5 m, 10 m이며 지표에서 터널천단까지의 깊이는 약 10-20 m의 저심도 터널이다. 또 터널이 시공된 지층은 풍화토 또는 풍화암으로 연약한 지반이다. 터널은 상하반으로 나누어 시공되었고 길이는 1,820 m이다. 이번 분석에 이용한 계측치는 터널 상하반 시공 중에 얻은 것으로 천단침하계측 결과가 184개, 내공변위계측 결과는 258개이다. 분석결과 풍화토의 터널에서 초기변위속도와 최종변위가 상대적으로 큰 경향이 있었다.

IFC와 디지털 수량산출정보 교환표준의 연계 가능성 평가 (Evaluation on the Possibility of Connection Between IFC and Digital Quantity DataBase Exchange Standard)

  • 원지선;문진석;최원식
    • 한국산학기술학회논문지
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    • 제14권12호
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    • pp.6488-6494
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    • 2013
  • 최근 BIM이 건설생산성을 향상시키는 기술로 주목 받으면서, BIM 발주가 화두가 되고 있다. BIM 사업에 적용될 표준은 현행 2D 기반의 표준을 최대한 활용하거나 연계를 지원하는 방향으로 제시되는 것이 필요하다. 따라서 본 논문에서는 BIM 기반 수량산출서와 내역서 표준을 개발함에 있어 현재 도로사업 공사비 관리를 위해 적용 중인 디지털 수량산출정보 교환표준(QDBEx)을 활용하고 BIM 데이터 납품 포맷인 IFC 표준과 연계하는 관점에서 연구를 수행하였다. BIM 기반 수량산출서와 내역서가 IFC 파일로 납품될 경우, IFC 파일이 QDBEx에 따른 XML 수량산출정보로 변환되어 활용될 수 있는지를 평가하였다. 그 결과, 전체의 66%가 바로 연계가 가능하며, 17%가 인스턴스의 가공을 통해 연계가 가능하였다. 나머지 17%는 연계가 불가능한 것으로 평가되었다. 향후, 이 결과를 바탕으로 연계 가능성을 높이기 위한 IFC와 QDBEx의 스키마 개선방안을 제시할 계획이다.

A FUNDAMENTAL STUDY TO DEVELOP STANDARD TECHNOLOGY CRITERIA FOR IT-CONSTRUCTION FUSION TECHNOLOGIES, TO BE APPLIED TO A U-CITY

  • Kyoon-Tai Kim;Jae-Goo Han;Chang-Han Kim
    • 국제학술발표논문집
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    • The 3th International Conference on Construction Engineering and Project Management
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    • pp.1352-1358
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    • 2009
  • As the demand for a convergence between construction technologies and IT is on the rise, as seen in the visualization of U-City construction, studies on the ways in which IT in should be utilized in the building and construction field have been continuously and actively performed. However, there has been almost no development of standardized technology criteria relating to the life cycle of a building (planning, design, construction, and maintenance). That is, there are almost no examples of efforts made to combine construction technology and IT in a fundamental way, considering the environment, the facility, its spatial characteristics, engineering, materials, and structure, aspects that are commonly required not only for interior spaces but also for exterior construction of U-City. Despite the fact that a state-of-the-art infrastructure has been built, and the competency of users with the cutting-edge technology, composite studies on technologies, facilities, services and spaces are still lacking, and basic research on the composite operation method including compatibility and linkage between facilities and services within a U-City has been insufficient as well. It is generally known that by fusing IT with construction technologies, the total period of construction taken can be reduced and construction expenses can be curtailed, while construction quality can be improved. For this reason, it is vital to prepare a standardized base to connect cutting-edge IT with the construction technologies. In preparing such a base, the most urgent issue is to develop standardized technology criteria. The ultimate objective of this research is to establish the technological criteria system required to apply construction-IT fused technologies to U-Cities, and to develop the technological criteria for the design, construction and maintenance of the U-Cities. This paper, whose objective is to establish development strategies for construction-IT fused technologies by way of analyzing the criteria for conventional construction projects, the necessity of criteria for construction-IT fused technologies, and the current status of U-Cities' development, is the underlying research for this purpose. The strategies established are expected to be utilized in establishing the system of criteria for construction-IT fused technologies, and to contribute to a knowledge base in the construction-IT field. In addition, based on the strategies established, criteria for construction-IT fused technologies, such as design criteria and construction standards, will be developed, and by applying these criteria and standards, the ultimate objectives of U-Cities, which are the enhancement of urban competitiveness and the satisfaction of residents, will be attained

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로버 카메라 시스템을 이용한 건설공간정보화 기술의 개발 방안 연구 (Research on Development of Construction Spatial Information Technology, using Rover's Camera System)

  • 홍성철;정태일;박재민;신휴성
    • 한국산학기술학회논문지
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    • 제20권7호
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    • pp.630-637
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    • 2019
  • 달에 얼음 형태의 물과 희귀 자원의 대량 존재하는 것이 밝혀지면서, 달의 경제적, 산업적 가치는 증대되고 있다. 이에 우리나라를 포함한 전 세계 주요 우주국들은 달 자원 확보와 유인 기지 건설을 위한 현지 자원 활용 기술을 개발하고 있다. 향후 달 현지 건설을 준비하기 위해서는 로버에서 취득한 지형 및 건설 영상을 가공하여, 건설 전 주기의 의사결정 지원정보를 제공하는 무인 건설공간정보화 기술을 개발해야한다. 본 연구에서는 달 로버 카메라 시스템을 기반으로 한 건설공간정보화 기술의 개발 방안을 소개하였다. 세부적으로 로버의 주행 영상, 지형 및 건설 영상 취득을 위한 로버 기반 카메라 시스템의 개념 설계와 달 건설공간정보 구축을 위한 분산 환경 기반의 개념적 아키텍쳐인 달 로버 운영 시스템을 제안하였다. 또한 달 표면에 특화된 로버의 위치 결정 및 3차원 지형복원 기법 개발 방안을 제시하였다. 본 연구에 도출한 달 무인 건설공간정보화 기술은 개념적 설계로 실험을 통한 검증이 필요하다. 따라서 개발된 로버와 로버운영 시스템은 향후, 달 모의 지형에 적용하여 개선할 예정이다.

탄소 제로화를 위한 혁신 기술 연구: 건설 및 콘크리트 산업에서의 이산화탄소 저감 방안 동향 (Research on Innovation Technologies for Zero Carbon: Carbon Dioxide Reduction in Construction and Concrete Industries)

  • 김주현;박정준;김종규
    • 한국산업융합학회 논문집
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    • 제25권4_2호
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    • pp.549-563
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    • 2022
  • Continuous global warming is causing ecosystem destruction and direct damage to human life. The main cause of global warming is greenhouse gases, which account for more than 90 % of carbon dioxide. The leaders of each country signed the Paris Agreement at the United Nations Convention on Climate Change (UNFCCC) to reduce greenhouse gas emissions. Currently, the total amount of CO2 emitted from South Korea is 664.7 million tons as of 2018, ranking eighth in the world. 37 % of South Korea's total CO2 emissions come from the construction & building field, especially the cement production, which is a construction material. Carbon reduction technologies can be largely divided into four types: carbon reduction (CC), carbon reduction and storage technology (CCS), carbon reduction and utilization technology (CCU), and carbon reduction, storage and utilization technology (CCUS). Overseas, CCUS technology is mainly applied to reduce and store CO2 emitted from construction and construction field. A technology for permanently storing CO2 through mineralization by capturing CO2 and utilizing CO2 into a cement production process was developed, and this technology is applied to the entire cement industry. However, the development of CCUS technology applicable to the cement industry is still insignificant in South Korea. In this study, carbon dioxide reduction technology and methods for reducing carbon dioxide emitted during the cement manufacturing process, which is the main component of concrete mainly used in civil engineering construction, were investigated. Overseas, it has reached the commercialization stage beyond the demonstration stage as a way to reduce carbon dioxide by vomiting carbonation reactions. Accordingly, if carbon dioxide reduction plan technology generated during cement manufacturing is developed based on domestic technology differentiated from foreign technology, it is expected to contribute one more step to the carbon neutrality policy.

Risk Analysis on Offshore Windfarm Industry in South Korea: Based on the Jeonnam Offshore Windfarm Project

  • Kim, Tae Hyun;Kim, Yea-Sang;Chin, Sangyoon;Pallesen, Kristian
    • 국제학술발표논문집
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    • The 9th International Conference on Construction Engineering and Project Management
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    • pp.204-212
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    • 2022
  • Recently, the Korean government has been actively promoting the smart city as their strategic agenda. However, to build smart cities that are greener, the authors believe it is essential to rapidly transit conventional energy sources such as fossil fuels to renewable energy. Although there is a big potential for Offshore wind in Korea, there has not been a full-scale commercial offshore wind farm until today. Since Korea is relatively a new market compared to the EU, it can be risky for developers. The authors will introduce risk management best practices in the offshore wind industry applicable to the Korean environment. This paper will mainly introduce an offshore wind project size of 99 MW. The project is expecting a Finance Close (FC) in Q3 2022, so the project team has prepared a risk register with over 150 risks and levers throughout the project lifecycle. Overall risks include risks with Development Expenditure (DEVEX) impact, a Capital Expenditure (CAPEX) impact, and an Operating Expenditure (OPEX) impact. Based on the identified risks, a more qualitative assessment of Cost and Schedule Impact was conducted. In conclusion, a Monte Carlo simulation was performed to propose a quantitative risk assessment to evaluate a benchmark contingency of the project cost.

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A Case Study of Disaster Accidents at Construction Site Based on PDCA Theory

  • Shin, Dong-Won;Kong, Ha-Sung
    • International journal of advanced smart convergence
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    • 제10권3호
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    • pp.245-256
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    • 2021
  • This study is significant in determining the reduction of safety accidents by applying PDCA's theory by subdividing it into a case analysis technique for construction sites by PDCA's theory. For this study, accidents accounted for the largest proportion of each type of disaster in the construction site were considered, and safety accidents were reduced through the PDCA theory through prior research. The analysis method of this study derived improvement plans by applying PDCA techniques to plan, implement, confirm, review, and improve disaster accidents at construction sites. The conclusions of this study are as follows. In the plan, first of all, measures shall be taken to prepare a safety management plan, to verify the implementation of the plan, and to verify the degree of implementation by the field manager. In the implementation, first of all, it is necessary to introduce a safety education history system to strengthen the safety education curriculum to suit the site, as long-term work is impossible for field workers depending on field conditions. First of all, it is necessary to strengthen the installation of safety facilities, including "work scaffolding" and "conducting prevention facilities" at construction sites. In management review and improvement, the risk assessment system for construction sites needs to be expanded first°.

GIS를 이용한 효율적 주차관리시스템 개발에 관한 연구 (A Study on the Development of Efficient Parking Management System using the GIS)

  • 김재석;우용한;이승준
    • 한국산업융합학회 논문집
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    • 제7권3호
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    • pp.273-279
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    • 2004
  • There are several ways to solve parking problem in the downtown One of them is to manage parking efficiently, that is, to raise use-efficiency of parking place and to help drivers to select easily. When we manage the parking place m the block efficiently, It can prevent disproportion that some parking space is over capacity and the other parking one is under. It causes not only the disproportion of economic efficiency but also the congestion of local road. The precondition to manage parking efficiently is to analyse the parking characteristics. In this study we found out the characteristics of parking vehicles by analyzing the turnover per parking mesh and occupancy rate And we build up total D/B by collecting every information about parking space. We developed the Parking Management System by using GIS with D/B and digital map. The efficient Parking Management System is for convenience of drivers and efficient usage of parking space. And this system is also the basic study to be developed as the total Parking Management System by upgrading every information.

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토공현장 적용성 검증을 위한 MMS 정밀도 분석 (MMS Accuracy Analysis for Earthwork Site Application)

  • 박재우;김석
    • 한국산업융합학회 논문집
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    • 제22권2호
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    • pp.183-189
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    • 2019
  • Researches utilizing the fourth industrial revolution technology are being conducted as a breakthrough for improving the earthworker productivity. In order to make the earthwork site smarter, it is necessary to digitize the construction site topography at first. For this purpose, photogrammetry using drones and LiDAR on MMS have been recently used. The purpose of this study is to analyze the accuracy of LiDAR by installation angles for verifying the application of MMS in the construction site. As a result of comparing the coordinates measured by the total station and the LiDAR, a small error of about 1-2 centimeters was shown. It is confirmed that MMS could be well applied to the earthwork site. In addition, there was no significant difference in the accuracy of the acquired coordinates according to the installation angle of the LiDAR, but the shape of the point clouds was different. The larger the installation angle, the better the shape of the site terrain is measured.

도로 토목 공사 현장에서 UAV를 활용한 위성 영상 지도의 정확도 분석 (Accuracy Analysis of Satellite Imagery in Road Construction Site Using UAV)

  • 신승민;반창우
    • 한국산업융합학회 논문집
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    • 제24권6_2호
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    • pp.753-762
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    • 2021
  • Google provides mapping services using satellite imagery, this is widely used for the study. Since about 20 years ago, research and business using drones have been expanding. Pix4D is widely used to create 3D information models using drones. This study compared the distance error by comparing the result of the road construction site with the DSM data of Google Earth and Pix4 D. Through this, we tried to understand the reliability of the result of distance measurement in Google Earth. A DTM result of 3.08 cm/pixel was obtained as a result of matching with 49666 key points for each image. The length and altitude of Pix4D and Google Earth were measured and compared using the obtained PCD. As a result, the average error of the distance based on the data of Pix4D was measured to be 0.68 m, confirming that the error was relatively small. As a result of measuring the altitude of Google Earth and Pix4D and comparing them, it was confirmed that the maximum error was 83.214m, which was measured using satellite images, but the error was quite large and there was inaccuracy. Through this, it was confirmed that there are difficulties in analyzing and acquiring data at road construction sites using Google Earth, and the result was obtained that point cloud data using drones is necessary.