Technology and Management Applied in Construction Engineering Projects
Abstract
1. Introduction
2. Contributions
3. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
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| No. | Author | Country | Title | Keywords |
|---|---|---|---|---|
| 1 | Daniel Przywara, Adam Rak [1] | Poland | Monitoring of Time and Cost Variances of Schedule Using Simple Earned Value Method Indicators | earned value method—EVM; time variances; cost variances; schedule |
| 2 | Xun Liu, Le Shen, Kun Zhang [2] | China | Estimating the Probability Distribution of Construction Project Completion Times Based on Drum-Buffer-Rope Theory | construction project; PERT; theory of constraint (TOC); drum-buffer-rope (DBR); construction schedule |
| 3 | Hubert Anysz, Jerzy Rosłon, Andrzej Foremny [3] | Poland | 7-Score Function for Assessing the Strength of Association Rules Applied for Construction Risk Quantifying | association analysis; tabu search; delay; risk; construction project |
| 4 | Tadeusz Kasprowicz, Anna Starczyk-Kołbyk, Robert Wójcik [4] | Poland | Randomized Estimation of the Net Present Value of a Residential Housing Development | efficiency; risk; randomization; construction project |
| 5 | Janusz Sobieraj, Dominik Metelski [5] | Poland, Spain | Project Risk in the Context of Construction Schedules—Combined Monte Carlo Simulation and Time at Risk (TaR) Approach: Insights from the Fort Bema Housing Estate Complex | time schedules; project risk; construction project management; time-at-risk (TaR); investment-construction process model; Monte Carlo simulation |
| 6 | Martina Milat, Snježana Knezić, Jelena Sedlar [6] | Croatia | Resilient Scheduling as a Response to Uncertainty in Construction Projects | resilience; baseline schedule; uncertainty; taxonomy; construction project |
| 7 | Parinaz Jafari, Malak Al Hattab, Emad Mohamed, Simaan AbouRizk [7] | Canada | Automated Extraction and Time-Cost Prediction of Contractual Reporting Requirements in Construction Using Natural Language Processing and Simulation | construction reports; construction contracts; natural language processing; machine learning; simulation modeling |
| 8 | Luz Duarte-Vidal, Rodrigo F. Herrera, Edison Atencio, Felipe Muñoz-La Rivera [8] | Chile, Spain | Interoperability of Digital Tools for the Monitoring and Control of Construction Projects | monitoring progress; construction phase; automated monitoring; digital tools; as-built; as-planned |
| 9 | Edison Atencio, Pablo Araya, Francisco Oyarce, Rodrigo F.Herrera, Felipe Muñoz-La Rivera, Fidel Lozano-Galant [9] | Chile, Spain | Towards the Integration and Automation of the Design Process for Domestic Drinking-Water and Sewerage Systems with BIM | building information modelling (BIM); automatization; facilities design; domestic plumbing and sanitation |
| 10 | Paul Sestras [10] | Romania | Applied Construction Layout Plan with Batter Boards Stake-Out Methods Comparison: A Case Study of Romania | land surveyor; construction surveying; building layout; polar coordinates; stake-out methods; total station |
| 11 | Zian Xu, Minshui Huang [11] | China | Improving Bridge Expansion and Contraction Installation Replacement Decision System Using Hybrid Chaotic Whale Optimization Algorithm | bridge expansion and contraction installation (BECI); decision making (DM); technical condition assessment; analytic hierarchy process (AHP); whale optimization algorithm; tent chaotic mapping; Lévy flight |
| 12 | Elżbieta Szafranko, Jolanta Harasymiuk [12] | Poland | Modelling of Decision Processes in Construction Activity | decision-making process; decision modelling in construction activities; decisions in civil engineering |
| 13 | Yingije Zhao, Fan Yang, Yijiang Ma [13] | China | Experimental Method for Flow Calibration of the Aircraft Liquid Cooling System | liquid cooling system; flow calibration; differential pressure; experimental method; aircraft |
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Szóstak, M.; Konior, J.; Sawicki, M. Technology and Management Applied in Construction Engineering Projects. Appl. Sci. 2022, 12, 11823. https://doi.org/10.3390/app122211823
Szóstak M, Konior J, Sawicki M. Technology and Management Applied in Construction Engineering Projects. Applied Sciences. 2022; 12(22):11823. https://doi.org/10.3390/app122211823
Chicago/Turabian StyleSzóstak, Mariusz, Jarosław Konior, and Marek Sawicki. 2022. "Technology and Management Applied in Construction Engineering Projects" Applied Sciences 12, no. 22: 11823. https://doi.org/10.3390/app122211823
APA StyleSzóstak, M., Konior, J., & Sawicki, M. (2022). Technology and Management Applied in Construction Engineering Projects. Applied Sciences, 12(22), 11823. https://doi.org/10.3390/app122211823
