Education, Science, Technology, Innovation and Life
Open Access
Sign In

Maintainability and Evaluation of Construction Projects

Download as PDF

DOI: 10.23977/jceup.2023.050401 | Downloads: 15 | Views: 365

Author(s)

Zichen Li 1

Affiliation(s)

1 Auckland University of Technology, Auckland, New Zealand

Corresponding Author

Zichen Li

ABSTRACT

The concept of sustainable development guides people to think about things, thereby achieving the goal of protecting the environment and maintaining ecological balance. Therefore, sustainable development needs to be reflected in the process of construction projects. The rapid expansion of construction projects poses increasingly severe challenges to the sustainable development of engineering projects. Research on sustainable methods for construction projects is conducive to promoting the healthy development of projects. This article mainly used the survey method and analytic hierarchy process to analyze the data related to the sustainable strategy of the project. The survey data showed that the weighted value of ROI (return on investment) in the sustainable development of the project reached 0.3, and the weighted value of community participation and ecological environment maintenance reached 0.25. Community residents should be encouraged to participate in the project decision-making process and establish transparent communication channels to avoid social conflicts and negative impacts.

KEYWORDS

Construction Project, Sustainable Development, Project Evaluation, Environmental Protection

CITE THIS PAPER

Zichen Li, Maintainability and Evaluation of Construction Projects. Journal of Civil Engineering and Urban Planning (2023) Vol. 5: 1-11. DOI: http://dx.doi.org/10.23977/jceup.2023.050401.

REFERENCES

[1] Peter E. D. Love, Lavagnon A. Ika, Jane Matthews, Weili Fang, Brad Carey. (2023) The Duality and Paradoxical Tensions of Quality and Safety: Managing Error in Construction Projects. IEEE Trans. Engineering Management 70(2): 791-798 
[2] Soteris Constantinou, Andreas Konstantinidis, Panos K. Chrysanthis, Demetrios Zeinalipour-Yazti. (2022) Green Planning of IoT Home Automation Workflows in Smart Buildings. ACM Trans. Internet Things 3(4): 29:1-29:30 
[3] Amin Mahmoudi, Mehdi Abbasi, Jingfeng Yuan, Lingzhi Li. (2022) Large-scale group decision-making (LSGDM) for performance measurement of healthcare construction projects: Ordinal Priority Approach. Appl. Intell. 52(12): 13781-13802 
[4] Amr G. Mansour, Mohamed S. Eid, Emad E. Elbeltagi. (2022) Construction facilities location selection for urban linear infrastructure maintenance projects using uniform cost search method. Soft Comput. 26(3): 1403-1415 
[5] Abd-Elhamid M. Taha, Aliaa Elabd. (2021) IoT for Certified Sustainability in Smart Buildings. IEEE Netw. 35(4): 241-247 
[6] Kalpana Chauhan, Rajeev Kumar Chauhan. (2020) Design and development of two levels electronic security and safety system for buildings. Int. J. Electron. Secur. Digit. Forensics 12(3): 279-292 
[7] Ayham A. M. Jaaron, Ihab Hamzi Hijazi, Khader Issa Yousef Musleh. (2022) A conceptual model for adoption of BIM in construction projects: ADKAR as an integrative model of change management. Technol. Anal. Strateg. Manag. 34(6): 655-667 
[8] Franck Taillandier, Alice Micolier, Gérard Sauce, Myriam Chaplain. (2021) DOMEGO: A Board Game for Learning How to Manage a Construction Project. Int. J. Game Based Learn. 11(2): 20-37 
[9] Milad Zoghi, Donghoon Lee, Sungjin Kim. (2021) A computational simulation model for assessing social performance of BIM implementations in construction projects. J. Comput. Des. Eng. 8(2): 799-811 
[10] Vahid Mohagheghi, Seyed Meysam Mousavi, Mohammad Mojtahedi, Sidney Newton. (2021) Introducing a multi-criteria evaluation method using Pythagorean fuzzy sets: A case study focusing on resilient construction project selection. Kybernetes 50(1): 118-146 
[11] Abroon Qazi, Irem Dikmen. (2021) From Risk Matrices to Risk Networks in Construction Projects. IEEE Trans. Engineering Management 68(5): 1449-1460 
[12] Peter Mesáros, Annamária Behúnová, Tomás Mandicák, Marcel Behún, Katarína Krajníková. (2021) Impact of enterprise information systems on selected key performance indicators in construction project management: An empirical study. Wirel. Networks 27(3): 1641-1648 
[13] Mohammad Miralinaghi, Wubeshet Woldemariam, Dulcy M. Abraham, Sikai Chen, Samuel Labi, Zhibin Chen.: (2020) Network-level scheduling of road construction projects considering user and business impacts. Comput. Aided Civ. Infrastructure Eng. 35(7): 650-667 
[14] Amin Mahmoudi, Mehdi Abbasi, Xiaopeng Deng, Muhammad Ikram, Salman Yeganeh. (2020) A novel model for risk management of outsourced construction projects using decision-making methods: a case study. Grey Syst. Theory Appl. 10(2): 97-123 
[15] Akihisa Ogawa, Andante Hadi Pandyaswargo, Daiki Yoshidome, Hiroshi Onoda. (2020) Environmental and Economic Evaluation of a Mechanical Biological Treatment System for a Small and Medium-Sized Waste Treatment Facility Considering the Karatsu Smart Disaster-Resilience Base Construction Project. Int. J. Autom. Technol. 14(6): 984-998 
[16] F. Henry Abanda, A. M. Musa, P. Clermont, Joseph H. M. Tah, Akponanabofa Henry Oti. (2020) A BIM-based framework for construction project scheduling risk management. Int. J. Comput. Aided Eng. Technol. 12(2): 182-218 
[17] Abdelrahman Osman Elfaki, Zaid Bassfar. (2020) Construction of a Software Development Model for Managing Final Year Projects in Information Technology Programmes. Int. J. Emerg. Technol. Learn. 15(21): 4-23 
[18] Sayed Muhammad Fawad Sharif, Naiding Yang, Yan Xu, Atiq ur Rehman. (2020) The effect of contract completeness on knowledge leakages in collaborative construction projects: a moderated mediation study. J. Knowl. Manag. 24(9): 2057-2078 
[19] Johanna Meurer, Claudia Müller, Carla Simone, Ina Wagner, Volker Wulf. (2018) Designing for Sustainability: Key Issues of ICT Projects for Ageing at Home. Comput. Support. Cooperative Work. 27(3-6): 495-537 
[20] Mohammad Nabipour, Amir Reza Momen. (2023) A Novel Approach to Adaptive Resource Allocation for Energy Saving in Reconfigurable Heterogeneous Networks. Comput. J. 66(1): 128-143

All published work is licensed under a Creative Commons Attribution 4.0 International License.

Copyright © 2016 - 2031 Clausius Scientific Press Inc. All Rights Reserved.