IDEAS home Printed from https://ideas.repec.org/a/gam/jijerp/v17y2020i17p6167-d403800.html
   My bibliography  Save this article

Developing Key Safety Management Factors for Construction Projects in China: A Resilience Perspective

Author

Listed:
  • Zheng Zhu

    (Department of Construction and Real Estate, School of Civil Engineering, Southeast University, Nanjing 210096, China
    Mass Transit Divisional Department, CRRC Nanjing Puzhen Co., Ltd., Nanjing 210031, China)

  • Jingfeng Yuan

    (Department of Construction and Real Estate, School of Civil Engineering, Southeast University, Nanjing 210096, China)

  • Qiuhu Shao

    (Department of Construction and Real Estate, School of Civil Engineering, Southeast University, Nanjing 210096, China)

  • Lei Zhang

    (Department of Construction and Real Estate, School of Civil Engineering, Southeast University, Nanjing 210096, China)

  • Guangqi Wang

    (China Construction Communications Engineering Group Corp. Ltd., Beijing 100000, China)

  • Xuewei Li

    (Department of Construction and Real Estate, School of Civil Engineering, Southeast University, Nanjing 210096, China)

Abstract

It is acknowledged that construction safety is pivotal to the project management objectives. Meanwhile, the concept of resilience provides an effective and pragmatic countermeasure to improve the safety management level of construction projects. However, the “resilience” has not gained considerable attention in the construction safety management system. In this context, the paper aims to develop the key safety management factors for construction projects from the resilience perspective. Firstly, the theoretical framework and key safety management factors of construction safety management system based on the resilience theory are proposed. The importance of each factor is then obtained by using the method of structural equation modeling (SEM). The results indicate that information management, material and technology management, organization management and personnel management would improve the safety and resilience of the project. Specifically, improving the resilience of information flow to strengthen the interaction among elements of the system can enhance the safety management level. These findings can be used as references for construction safety managers to improve the abilities of preventing safety accidents and recovering after safety accidents.

Suggested Citation

  • Zheng Zhu & Jingfeng Yuan & Qiuhu Shao & Lei Zhang & Guangqi Wang & Xuewei Li, 2020. "Developing Key Safety Management Factors for Construction Projects in China: A Resilience Perspective," IJERPH, MDPI, vol. 17(17), pages 1-20, August.
  • Handle: RePEc:gam:jijerp:v:17:y:2020:i:17:p:6167-:d:403800
    as

    Download full text from publisher

    File URL: https://www.mdpi.com/1660-4601/17/17/6167/pdf
    Download Restriction: no

    File URL: https://www.mdpi.com/1660-4601/17/17/6167/
    Download Restriction: no
    ---><---

    References listed on IDEAS

    as
    1. Hosseini, Seyedmohsen & Barker, Kash & Ramirez-Marquez, Jose E., 2016. "A review of definitions and measures of system resilience," Reliability Engineering and System Safety, Elsevier, vol. 145(C), pages 47-61.
    2. Provan, David J. & Woods, David D. & Dekker, Sidney W.A. & Rae, Andrew J., 2020. "Safety II professionals: How resilience engineering can transform safety practice," Reliability Engineering and System Safety, Elsevier, vol. 195(C).
    3. Zhipeng Zhou & Javier Irizarry & Qiming Li, 2013. "Applying advanced technology to improve safety management in the construction industry: a literature review," Construction Management and Economics, Taylor & Francis Journals, vol. 31(6), pages 606-622, June.
    4. Zongjie Pi & Xin Gao & Linyan Chen & Jinghua Liu, 2019. "The New Path to Improve Construction Safety Performance in China: An Evolutionary Game Theoretic Approach," IJERPH, MDPI, vol. 16(13), pages 1-24, July.
    5. Xiangcheng Meng & Huaiyuan Zhai & Alan H. S. Chan, 2019. "Development of Scales to Measure and Analyse the Relationship of Safety Consciousness and Safety Citizenship Behaviour of Construction Workers: An Empirical Study in China," IJERPH, MDPI, vol. 16(8), pages 1-18, April.
    6. Righi, Angela Weber & Saurin, Tarcisio Abreu & Wachs, Priscila, 2015. "A systematic literature review of resilience engineering: Research areas and a research agenda proposal," Reliability Engineering and System Safety, Elsevier, vol. 141(C), pages 142-152.
    7. Cindy L. Menches & Juan Chen, 2013. "Using ecological momentary assessment to understand a construction worker’s daily disruptions and decisions," Construction Management and Economics, Taylor & Francis Journals, vol. 31(2), pages 180-194, February.
    8. Guo, Qingjun & Amin, Shohel & Hao, Qianwen & Haas, Olivier, 2020. "Resilience assessment of safety system at subway construction sites applying analytic network process and extension cloud models," Reliability Engineering and System Safety, Elsevier, vol. 201(C).
    9. Jieun Baek & Yosoon Choi, 2020. "Smart Glasses-Based Personnel Proximity Warning System for Improving Pedestrian Safety in Construction and Mining Sites," IJERPH, MDPI, vol. 17(4), pages 1-15, February.
    10. Jingjing Pei & Wen Liu & Lu Han, 2019. "Research on Evaluation Index System of Chinese City Safety Resilience Based on Delphi Method and Cloud Model," IJERPH, MDPI, vol. 16(20), pages 1-16, October.
    11. Yuzhong Shen & Chuanjing Ju & Tas Yong Koh & Steve Rowlinson & Adrian J. Bridge, 2017. "The Impact of Transformational Leadership on Safety Climate and Individual Safety Behavior on Construction Sites," IJERPH, MDPI, vol. 14(1), pages 1-17, January.
    12. du Plessis, Erik Mygind & Vandeskog, Bjarne, 2020. "Other stories of resilient safety management in the Norwegian offshore sector: Resilience engineering, bullshit and the de-politicization of danger," Scandinavian Journal of Management, Elsevier, vol. 36(1).
    13. Bergström, Johan & van Winsen, Roel & Henriqson, Eder, 2015. "On the rationale of resilience in the domain of safety: A literature review," Reliability Engineering and System Safety, Elsevier, vol. 141(C), pages 131-141.
    Full references (including those not matched with items on IDEAS)

    Citations

    Citations are extracted by the CitEc Project, subscribe to its RSS feed for this item.
    as


    Cited by:

    1. Chen, Hong & Liu, Bei & Li, Yi & Cai, Yujie, 2022. "The relationship between negative life events and resilience among Chinese service employees: Nonlinearly moderated by lifestyle habits," Journal of Asian Economics, Elsevier, vol. 80(C).
    2. Haidong Guo & Xingshan Gao & Qiangqiang Lin & Baosheng Gao, 2023. "Assessing the Degradation of Safety Management Performance in Large Construction Projects: An Investigation and Decision Model Based on Complex Network Modeling," Sustainability, MDPI, vol. 15(16), pages 1-26, August.
    3. Felipe Muñoz-La Rivera & Javier Mora-Serrano & Eugenio Oñate, 2021. "Factors Influencing Safety on Construction Projects (fSCPs): Types and Categories," IJERPH, MDPI, vol. 18(20), pages 1-30, October.

    Most related items

    These are the items that most often cite the same works as this one and are cited by the same works as this one.
    1. Yang, Bofan & Zhang, Lin & Zhang, Bo & Xiang, Yang & An, Lei & Wang, Wenfeng, 2022. "Complex equipment system resilience: Composition, measurement and element analysis," Reliability Engineering and System Safety, Elsevier, vol. 228(C).
    2. Mottahedi, Adel & Sereshki, Farhang & Ataei, Mohammad & Qarahasanlou, Ali Nouri & Barabadi, Abbas, 2021. "Resilience estimation of critical infrastructure systems: Application of expert judgment," Reliability Engineering and System Safety, Elsevier, vol. 215(C).
    3. Terje Aven, 2019. "The Call for a Shift from Risk to Resilience: What Does it Mean?," Risk Analysis, John Wiley & Sons, vol. 39(6), pages 1196-1203, June.
    4. Tortorella, Guilherme Luz & Saurin, Tarcísio Abreu & Fogliatto, Flavio S. & Rosa, Valentina M. & Tonetto, Leandro M & Magrabi, Farah, 2021. "Impacts of Healthcare 4.0 digital technologies on the resilience of hospitals," Technological Forecasting and Social Change, Elsevier, vol. 166(C).
    5. Varajão, João & Fernandes, Gabriela & Amaral, António & Gonçalves, A. Manuela, 2021. "Team Resilience Model: An Empirical Examination of Information Systems Projects," Reliability Engineering and System Safety, Elsevier, vol. 206(C).
    6. Adrian J. Hickford & Simon P. Blainey & Alejandro Ortega Hortelano & Raghav Pant, 2018. "Resilience engineering: theory and practice in interdependent infrastructure systems," Environment Systems and Decisions, Springer, vol. 38(3), pages 278-291, September.
    7. Ouyang, Min, 2017. "A mathematical framework to optimize resilience of interdependent critical infrastructure systems under spatially localized attacks," European Journal of Operational Research, Elsevier, vol. 262(3), pages 1072-1084.
    8. Chen, Chao & Yang, Ming & Reniers, Genserik, 2021. "A dynamic stochastic methodology for quantifying HAZMAT storage resilience," Reliability Engineering and System Safety, Elsevier, vol. 215(C).
    9. Hans Pasman & Kedar Kottawar & Prerna Jain, 2020. "Resilience of Process Plant: What, Why, and How Resilience Can Improve Safety and Sustainability," Sustainability, MDPI, vol. 12(15), pages 1-21, July.
    10. Poulin, Craig & Kane, Michael B., 2021. "Infrastructure resilience curves: Performance measures and summary metrics," Reliability Engineering and System Safety, Elsevier, vol. 216(C).
    11. Kenneth Martínez & David Claudio, 2023. "Expanding Fundamental Boundaries between Resilience and Survivability in Systems Engineering: A Literature Review," Sustainability, MDPI, vol. 15(6), pages 1-27, March.
    12. Sperstad, Iver Bakken & Kjølle, Gerd H. & Gjerde, Oddbjørn, 2020. "A comprehensive framework for vulnerability analysis of extraordinary events in power systems," Reliability Engineering and System Safety, Elsevier, vol. 196(C).
    13. Susanne Moser & Sara Meerow & James Arnott & Emily Jack-Scott, 2019. "The turbulent world of resilience: interpretations and themes for transdisciplinary dialogue," Climatic Change, Springer, vol. 153(1), pages 21-40, March.
    14. Gonçalves, L.A.P.J. & Ribeiro, P.J.G., 2020. "Resilience of urban transportation systems. Concept, characteristics, and methods," Journal of Transport Geography, Elsevier, vol. 85(C).
    15. Elkady, Sahar & Hernantes, Josune & Labaka, Leire, 2023. "Towards a resilient community: A decision support framework for prioritizing stakeholders' interaction areas," Reliability Engineering and System Safety, Elsevier, vol. 237(C).
    16. Yang, Bofan & Zhang, Lin & Zhang, Bo & Wang, Wenfeng & Zhang, Minglinag, 2021. "Resilience Metric of Equipment System: Theory, Measurement and Sensitivity Analysis," Reliability Engineering and System Safety, Elsevier, vol. 215(C).
    17. Liu, Wei & Song, Zhaoyang, 2020. "Review of studies on the resilience of urban critical infrastructure networks," Reliability Engineering and System Safety, Elsevier, vol. 193(C).
    18. Patriarca, Riccardo & De Paolis, Alessandro & Costantino, Francesco & Di Gravio, Giulio, 2021. "Simulation model for simple yet robust resilience assessment metrics for engineered systems," Reliability Engineering and System Safety, Elsevier, vol. 209(C).
    19. Haavik, Torgeir Kolstø, 2021. "Debates and politics in safety science," Reliability Engineering and System Safety, Elsevier, vol. 210(C).
    20. Caputo, A.C. & Donati, L. & Salini, P., 2023. "Estimating resilience of manufacturing plants to physical disruptions: Model and application," International Journal of Production Economics, Elsevier, vol. 266(C).

    Corrections

    All material on this site has been provided by the respective publishers and authors. You can help correct errors and omissions. When requesting a correction, please mention this item's handle: RePEc:gam:jijerp:v:17:y:2020:i:17:p:6167-:d:403800. See general information about how to correct material in RePEc.

    If you have authored this item and are not yet registered with RePEc, we encourage you to do it here. This allows to link your profile to this item. It also allows you to accept potential citations to this item that we are uncertain about.

    If CitEc recognized a bibliographic reference but did not link an item in RePEc to it, you can help with this form .

    If you know of missing items citing this one, you can help us creating those links by adding the relevant references in the same way as above, for each refering item. If you are a registered author of this item, you may also want to check the "citations" tab in your RePEc Author Service profile, as there may be some citations waiting for confirmation.

    For technical questions regarding this item, or to correct its authors, title, abstract, bibliographic or download information, contact: MDPI Indexing Manager (email available below). General contact details of provider: https://www.mdpi.com .

    Please note that corrections may take a couple of weeks to filter through the various RePEc services.

    IDEAS is a RePEc service. RePEc uses bibliographic data supplied by the respective publishers.