A Forecast and Mitigation Model of Construction Performance by Assessing Detailed Engineering Maturity at Key Milestones for Offshore EPC Mega-Projects

The main subject of this research is to develop a forecast and mitigation model of schedule and cost performance during a detailed engineering stage of offshore engineering, procurement and construction (EPC) projects. The weight factors of major elements in detailed engineering completion rating in...

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Main Authors: Myung-Hun Kim, Eul-Bum Lee, Han-Suk Choi
Format: Article
Language:English
Published: MDPI AG 2019-02-01
Series:Sustainability
Subjects:
Online Access:https://www.mdpi.com/2071-1050/11/5/1256
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spelling doaj-8afddc588f2442b7ac553b2f42797ac62020-11-24T20:44:29ZengMDPI AGSustainability2071-10502019-02-01115125610.3390/su11051256su11051256A Forecast and Mitigation Model of Construction Performance by Assessing Detailed Engineering Maturity at Key Milestones for Offshore EPC Mega-ProjectsMyung-Hun Kim0Eul-Bum Lee1Han-Suk Choi2Graduate Institute of Ferrous Technology (GIFT), Pohang University of Science and Technology (POSTECH), 77 Cheongam-Ro, Nam-Ku, Pohang 37673, KoreaGraduate Institute of Ferrous Technology (GIFT), Pohang University of Science and Technology (POSTECH), 77 Cheongam-Ro, Nam-Ku, Pohang 37673, KoreaGraduate Institute of Ferrous Technology (GIFT), Pohang University of Science and Technology (POSTECH), 77 Cheongam-Ro, Nam-Ku, Pohang 37673, KoreaThe main subject of this research is to develop a forecast and mitigation model of schedule and cost performance during a detailed engineering stage of offshore engineering, procurement and construction (EPC) projects. The weight factors of major elements in detailed engineering completion rating index system (DECRIS) were measured using a fuzzy inference system (FIS) and an analytic hierarchy process (AHP). At five key engineering milestones, from an EPC contract being awarded to the start of construction, detailed engineering maturities were assessed in fourteen historical offshore EPC projects using the DECRIS model. DECRIS cutoff scores for successful project execution were defined at the key engineering milestones. A schedule and cost performance was forecasted and validated through comparison of DECRIS and other models using statistical confidence of a fuzzy set qualitative comparative analysis (fsQCA) and a regression analysis. As a mitigation method for engineering risks to EPC contractors, engineering resource enhancement is recommended for trade-off optimization of cost overrun using a Monte Carlo simulation. The main contribution of this research is that EPC contractors could continuously forecast construction costs and schedule performance utilizing the DECRIS model, and could review the adequacy of engineering resources, assessing the trade-off between said resources and cost/schedule risk mitigation.https://www.mdpi.com/2071-1050/11/5/1256construction cost and schedule performancefuzzy inference systemanalytic hierarchy processfuzzy set quantitative comparative analysisoffshore mega-projectengineeringprocurement and construction (EPC) projectDECRISrisk mitigation plan
collection DOAJ
language English
format Article
sources DOAJ
author Myung-Hun Kim
Eul-Bum Lee
Han-Suk Choi
spellingShingle Myung-Hun Kim
Eul-Bum Lee
Han-Suk Choi
A Forecast and Mitigation Model of Construction Performance by Assessing Detailed Engineering Maturity at Key Milestones for Offshore EPC Mega-Projects
Sustainability
construction cost and schedule performance
fuzzy inference system
analytic hierarchy process
fuzzy set quantitative comparative analysis
offshore mega-project
engineering
procurement and construction (EPC) project
DECRIS
risk mitigation plan
author_facet Myung-Hun Kim
Eul-Bum Lee
Han-Suk Choi
author_sort Myung-Hun Kim
title A Forecast and Mitigation Model of Construction Performance by Assessing Detailed Engineering Maturity at Key Milestones for Offshore EPC Mega-Projects
title_short A Forecast and Mitigation Model of Construction Performance by Assessing Detailed Engineering Maturity at Key Milestones for Offshore EPC Mega-Projects
title_full A Forecast and Mitigation Model of Construction Performance by Assessing Detailed Engineering Maturity at Key Milestones for Offshore EPC Mega-Projects
title_fullStr A Forecast and Mitigation Model of Construction Performance by Assessing Detailed Engineering Maturity at Key Milestones for Offshore EPC Mega-Projects
title_full_unstemmed A Forecast and Mitigation Model of Construction Performance by Assessing Detailed Engineering Maturity at Key Milestones for Offshore EPC Mega-Projects
title_sort forecast and mitigation model of construction performance by assessing detailed engineering maturity at key milestones for offshore epc mega-projects
publisher MDPI AG
series Sustainability
issn 2071-1050
publishDate 2019-02-01
description The main subject of this research is to develop a forecast and mitigation model of schedule and cost performance during a detailed engineering stage of offshore engineering, procurement and construction (EPC) projects. The weight factors of major elements in detailed engineering completion rating index system (DECRIS) were measured using a fuzzy inference system (FIS) and an analytic hierarchy process (AHP). At five key engineering milestones, from an EPC contract being awarded to the start of construction, detailed engineering maturities were assessed in fourteen historical offshore EPC projects using the DECRIS model. DECRIS cutoff scores for successful project execution were defined at the key engineering milestones. A schedule and cost performance was forecasted and validated through comparison of DECRIS and other models using statistical confidence of a fuzzy set qualitative comparative analysis (fsQCA) and a regression analysis. As a mitigation method for engineering risks to EPC contractors, engineering resource enhancement is recommended for trade-off optimization of cost overrun using a Monte Carlo simulation. The main contribution of this research is that EPC contractors could continuously forecast construction costs and schedule performance utilizing the DECRIS model, and could review the adequacy of engineering resources, assessing the trade-off between said resources and cost/schedule risk mitigation.
topic construction cost and schedule performance
fuzzy inference system
analytic hierarchy process
fuzzy set quantitative comparative analysis
offshore mega-project
engineering
procurement and construction (EPC) project
DECRIS
risk mitigation plan
url https://www.mdpi.com/2071-1050/11/5/1256
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