• Title/Summary/Keyword: complex construction project

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Analysing the Effects of Regional Development Project on Regional Economic Development: An Application of System Dynamics Approach (시스템다이내믹스를 이용한 지역개발사업의 파급효과분석)

  • Choi, Young-Chul
    • Korean System Dynamics Review
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    • v.6 no.1
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    • pp.147-176
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    • 2005
  • This paper attempts to analyse the financial validity of the Eco-therapy project which 'J' city in 'C' province has been eagerly trying to implement for its regional economic development and also to estimate the potential economic impact of the project on its regional economy. In doing so, it employs system dynamics which is a methodology for studying and managing complex systems, such as one finds in business and other social systems. Analytic framework for this study is constructed, based on the existing theoretical studies. This study concludes that the Eco-therapy Project concerned is economically and financially valid and it is also expected that the regional economic impacts arising from the construction and operation of the facilities concerned are greater than any other project which 'J' city has been pursuing.

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CFD Simulation of Changesin NOX Distribution according to an Urban Renewal Project (CFD 모델을 이용한 도시 재정비 사업에 의한 NOX 분포 변화 모의)

  • Kim, Ji-Hyun;Kim, Yeon-Uk;Do, Heon-Seok;Kwak, Kyung-Hwan
    • Journal of Environmental Impact Assessment
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    • v.30 no.3
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    • pp.141-154
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    • 2021
  • In this study, the effect of the restoration of Yaksa stream and the construction of an apartment complex by the urban renewal project in the Yaksa district of Chuncheon on air quality in the surrounding area was evaluated using computational fluid dynamics (CFD) model simulations. In orderto compare the impact of the project, wind and pollutant concentration fields were simulated using topographic data in 2011 and 2017, which stand for the periods before and after the urban renewal project, respectively. In the numerical experiments, the scenarios were set to analyze the effect of the construction of the apartment complex and the effect of stream restoration. Wind direction and wind speed data obtained from the Chuncheon Automated Synoptic Observing System (ASOS) were used as the inflow boundary conditions, and the simulation results were weighted according to the frequencies of the eight-directional inflow wind directions. The changes in wind speed and NOX concentration distribution according to the changes in building and terrain between scenarios were compared. As a result, the concentration of NOX emitted from the surrounding roads increased by the construction of the apartment complex, and the magnitude of the increase was reduced as the result of including the effect of stream restoration. The concentration of NOX decreased around the restored stream, while the concentration increased significantly around the constructed apartment complex. The increase in the concentration of NOX around the apartment complex was more pronounced in the place located in the rear of the wind direction to the apartment complex, and the effect remains up to the height of the building. In conclusion, it was confirmed that the relative arrangement of apartment complex construction and stream restoration in relation to the main wind direction of the target area was one of the major factors in determining the surrounding air quality.

Factors that Impact Construction Workers' Hazard Recognition Ability and their Technological Solutions

  • Shrestha, Bandana;Park, JeeWoong;Shrestha, Pramen
    • International conference on construction engineering and project management
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    • 2022.06a
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    • pp.458-464
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    • 2022
  • Hazard recognition is considered as one of the pre-requisites for effective hazard management and injury prevention. However, in complex and changing environments, construction workers are often unable to identify all possible hazards that can occur in the jobsite. Therefore, identification of factors that impact hazard recognition in the work environment is necessary to reduce safety incidents as well as to develop strategies that can improve worker's hazard recognition performance. This study identified factors/problems that impact worker's hazard recognition abilities and suggested some potential technologies that can mitigate such problems. Literature reviews of journal articles and published reports related to hazard recognition studies were conducted to identify the factors. The study found out that the major factor responsible for affecting worker's hazard recognition abilities were human-related. Industry factors, Organizational factors and Physical factors of the site were the other factors identified from the study that impact worker's hazard recognition performances. The findings from the study can help site personnel recognize areas where effective measures can be directed towards worksite safety of workers while working in complex construction environments.

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A System Dynamics View of Safety Management in Small Construction Companies

  • Guo, Brian H.W.;Yiu, Tak Wing;Gonzalez, Vicente A.
    • International conference on construction engineering and project management
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    • 2015.10a
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    • pp.92-96
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    • 2015
  • Due to unique characteristics of small construction companies, safety management is comprised of complex problems (e.g., resources constraints, a lack of formalized management structures, low level of management safety commitment etc.). In order to understand causal interdependencies between safety factors at different system levels (regulation, organization, technical and individual), this paper aims to develop a system dynamics (SD) model of safety management in small construction companies. The purpose of the SD model is to better understand why small construction companies have low level of safety performance. A causal loop diagram (CLD) was developed based on literature, with an attempt to map causal relationships between variables. The CLD was then converted into stock and flow diagram for simulation. Various tests were conducted to build confidence in the model's ability to represent the reality. A number of policies were analyzed by changing the value of parameters. The value of a system dynamics approach to safety management in small construction companies is its ability to address joint effects of multiple safety risk factors on safety performance with a systems thinking perspective. By taking into account feedback loops and non-linear relationships, such a system dynamics model provides insights into the complex causes of relatively poor safety performance of small construction companies and improvement strategies.

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현장탐방 - 하자없는 시공, 철저한 안전관리로 완벽 추구, 성창E&C(주) SK이노베이션 인천 V4-PROJECT

  • 대한설비건설협회
    • 월간 기계설비
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    • s.290
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    • pp.53-59
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    • 2014
  • SK이노베이션이 발주한 V-PROJECT는 이미 가동중인 SK에너지 인천COMPLEX 석유화학플랜트 기존 공장에 Condensate와 Crude를 처리하여 Benzene과 p-Xylene 생산시설 및 부대시설 증설 프로젝트이다. 이 시설에서 주로 생산되는 자일렌(p-Xylene)은 폴리에스터 섬유의 원료로서 국내를 비롯하여 중국, 인도, 남미 등의 섬유시장 성장으로 최근들어 수요가 많아짐에 따라 생산시설을 증설한 것이다. 이 프로젝트 완공으로 2015년부터는 기존보다 3배 증가한 벤젠 50만톤, 톨루엔 10만톤, 자일렌 130만톤이 연간 생산될 예정이다. 본지는 V4 Area의 기계설치 및 배관 철골제작 설치, 도장공사를 시공한 성창E&C(주)(대표 김기영)의 이종윤 소장을 만나 플랜트 현장 특성 상 기밀사항인 시공은 생략하고 현장 이야기를 들어 보았다.

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An Analysis of Economic Benefits derived from the Construction of One-Stop Seafood Export Complex - with reference to the case of GamCheon Port - (One-Stop 수산물 수출단지의 조성에 따른 경제적 편익분석 - 부산 감천항의 사례를 중심으로 -)

  • Pak, Myong-Sop;Lee, Kwang-Nam
    • THE INTERNATIONAL COMMERCE & LAW REVIEW
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    • v.20
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    • pp.181-212
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    • 2003
  • Many seafood processing and export companies are scattered in Pusan area. Most of them has experienced hardships, because of physical distribution and sanitary costs, rent costs and Non-tariff barriers. GamCheon One-Stop Seafood Export Complex (GOSEC) is considered as the project which is necessary to establish GamCheon port as the seafood trade hub of Northeast Asia. GOSEC is to build the processing and export complex for seafood export. It applies to small and medium seafood export company. This paper aims to examine the economic benefit which could be derived from the construction of GOSEC. It reviews the quantifiable benefits of companies which wants to move into GOSEC. It also shows the results of questionnaire carried out to find the characteristics of potential GOSEC tenants.

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Development of intranet-based Program Management Information System of multi-complex project with application of BIM (BIM을 활용한 다중복합 프로젝트의 인트라넷 기반 통합사업관리체계 구축 방안)

  • Song, Il-Bab;Hur, Young-Ran;Seo, Jong-Won
    • Journal of KIBIM
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    • v.2 no.1
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    • pp.27-39
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    • 2012
  • Public construction projects need complex and multi-functional management skill, since the most of public construction projects are comprised of multi-project and mega-projects. In order to effectively manage construction projects, PMIS is widely used. However the majority of the current PMIS have been developed as a single project-oriented business management system. Thus compatibility problems are encountered during the process of integrating the entire systems to manage the multi-complex projects. In addition, the form of orders applying BIM are increased recently, but the research and development of BIM based PMIS are still lacking. In this study, therefore, the functions of PMIS main objectives based on the analysis of PMIS As-Is and To-Be of PMIS, the dual management system utilizing Internet and Intranet will be proposed to integrate the individual PMIS with Integrated Program Management System. Rather than combining commercial BIM tool and PMIS directly, which is the common method of failure, the sequential process model to adopt BIM based PMIS is also explained. Step-by-step development method of BIM based PMIS is suggested to prepare for the activation of BIM technology in the nearest future.

A System Dynamics View of Safety Management in Small Construction Companies

  • Guo, Brian H.W.;Yiu, Tak Wing;Gonzalez, Vicente A.
    • Journal of Construction Engineering and Project Management
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    • v.5 no.4
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    • pp.1-6
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    • 2015
  • Due to unique characteristics of small construction companies, safety management is comprised of complex problems. This paper aims to better understand the complexity and dynamics of safety management in small construction companies. A system dynamics (SD) model was built in order to capture the causal interdependencies between factors at different system levels (regulation, organization, technical and individual) and their effects on safety outcomes. Various tests were conducted to build confidence in the model's usefulness to understand safety problems facing small companies from a system dynamics view. A number of policies were analyzed by changing the value of parameters. The value of a system dynamics approach to safety management in small construction companies is its ability to address joint effects of multiple safety risk factors on safety performance with a systems thinking perspective. By taking into account feedback loops and non-linear relationships, such a system dynamics model provides insights into the complex causes of relatively poor safety performance of small construction companies and improvement strategies.

Establishing Risk Management Process for Improved Business Value of a Multi-Purpose Building Project (복합 시설 프로젝트의 사업 가치 향상을 위한 리스크 관리 프로세스 구축 방안)

  • Lee, Jong-Sik;Cho, Seung-Ho
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.22 no.1
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    • pp.64-71
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    • 2018
  • Project Management Institute of America separates the types of risk with external risks and internal risks. The external risk is an uncontrollable risk in projects such as changes of policy and related systems, climate, natural disasters, exchange rates and so on. The internal risk is an existing risk in the project itself that is controllable items in the project. Technical risks in project management are cost, quality, time, safety and environment. Therefore, both the external and internal risks should be managed to perform the construction project successfully. In particular, we can secure the quality and safety of facilities through the technical risk management. The importance of potential risk management has been emerging as a major interest and the lack of risk management delays projects and increases construction costs with negative effects of the building safety since the complex building, which is composed of a great number of facilities, consists of many project units and there are conflicts between various participants and stake-holders. This study presents the ways of establishing risk management processes to ensure the safety of the complex building. To that end, establishing procedure of risk management processes is presented and types of risk and factors in construction projects and counter strategies are presented as available risk information on the stages.

Framework for Estimating Appropriate Construction Duration of CFRD in the Planning Phase

  • Kim, In Kyum;Kim, Kyong Ju;Yun, Won Gun
    • International conference on construction engineering and project management
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    • 2015.10a
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    • pp.604-605
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    • 2015
  • To secure quality of dam construction needs appropriate construction duration. Tight construction schedule may have negative influence on infrastructure quality, work safety and maintenance cost. It is necessary to reflect proper construction duration in the planning phase. There have been standards for estimating construction duration of building and industrial complex development but dam construction have not. In order to estimate construction duration of CFRD, feasible study reports and design reports were analyzed to acquire available information. After that, considering on construction duration methods such as comparison with similar cases, approximate estimating formula, approximate quantity assumption were adapted to Critical Path items. Hence, this study present framework for construction duration estimating of CFRD in the planning phase. This framework can be applied other types of dam along the same line.

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