Communication and Information Flow in Polish Construction Projects
Abstract
:1. Introduction
2. Methodology
2.1. Literature Review Methodology
2.2. Research Design and Survey Questionnaire
3. Results and Discussion
3.1. Analysis of the Literature
3.2. Characteristics of Construction Industry Practitioners
3.3. General Information about Communication and Information Flow between Construction Project Participants
3.4. Opinions about Problems in the Carrying Out of Construction Projects with Respect to a Lack of Effective Communication
3.5. Opinions about the Impact of Communication on the Success of Construction Projects
3.6. Opinions about the Cost of Communication
3.7. Opinions about the Need to Develop a Tool (Digital System), which Could Aid Construction Project Managers in the Optimal Controlling of Communication between Project Participants
3.8. Respondent Opinion Concordance
- satisfactory, for a range of 0.20–0.40,
- good, for a range of 0.41–0.60,
- plus good, for a range of 0.61–0.80,
- very good, for a range of 0.81–0.95,
- perfect, for a range of 0.96–1.00.
3.9. Limitations of the Investigation
4. Conclusions
Author Contributions
Funding
Conflicts of Interest
References
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Factors | Authors |
Effectiveness | Austin et al., (1993) [54]; Hill (1995) [30]; Azam et al., (1998) [29]; Yap and Skitmore (2020) [55]; Shirazi and Hampson (1998) [56]; Swaffield (1998) [31]; Swan et al. (2001) [32]; Mutti and Hughes (2001) [33]; Gushgari et al., (1997) [35]; Zakeri et al. (1996) [36]; Higgin and Jessop (1965) [24]; Guevara and Boyer (1981) [5]; Cheung, Liu and Yam (2013) [57]; Meng (2012) [41]; Dawood, Akinsola and Hobbs (2002) [28]; Aiyewalehinmi (2013) [58]; Chiu (2002) [59]; Xie, Thrope and Baldwin (2000) [10]; Zhang et al., (2018) [60]; Chinowsky, Taylor and Di Marco (2011) [61]; Hossain (2009) [62]; Pryke et al. (2018) [63]; Gardounis, Chong and Wang (2017) [64]; Śladowski, Radziszewska-Zielina and Kania (2018) [52]; Radziszewska-Zielina et al. (2019) [53]; Jafari et al. (2020) [65]. |
Time, Cost, Quality | Thamhain and Wilemon (1986) [66]; Sonnenwald (1996) [4]; Thomas et al. (1998) [8]; Olanrewaju et al. (2017) [67]; Cheung, Liu and Yam (2013) [57]; Meng (2012) [41]; Berenger and Justus (2016) [68]; Chiu (2002) [59]; Xie, Thrope and Baldwin (2000) [10]; Bowen and Edwards (1996) [69]; Zulch (2014) [11]; Jelonek, Nowakowska-Grunt and Ziora (2014) [48]; Preece and Stocking (1999) [70]; Abudayyeh (1994) [71]; Harback et al. (1994) [72]; De Vilbiss and Leonard (2000) [73]; Black et al. (2000) [74]; Gamil and Rahman (2017) [75]; Gorse, Emmitt and Lowis (1999) [27]; Hoezen, Reymen and Dewulf (2006) [12]; Emmitt and Gorse (2007) [76]; Dainty, Moore and Murray (2006) [22]; Muller and Turner (2005) [77]; Malisiovas and Song (2014) [78]; Hossain (2009) [62], Pryke et al. (2018) [63]; Radziszewska-Zielina et al. (2019) [53]; Jafari et al. (2020) [65]. |
Delays | Berenger and Justus (2016) [68]; Gamil and Rahman (2017) [75]; Gorse, Emmitt and Lowis (1999) [27]; Hoezen, Reymen and Dewulf (2006) [12]; Larsen et al. (2015) [79]; Liu et al. (2007) [80]; Assaf and A-Hejji (2006) [81]; Zidane and Andersen (2018) [82]; Durdyev and Hossein (2019) [83]; Leśniak and Plebankiewicz (2010) [84]; Malisiovas, Song (2014) [78]. |
Redesign And Rework | Cook and Pasquire (2001) [34]; Love et al. (1999a, 1999b) [85,86]; Fayek et al. (2003) [87]; Hwang et al. (2009) [88]; Boon Hui, Abdul-Rahman and Chen (2017) [89]; Kamalirad et al. (2017) [90]; Safapour, Kermanshachi and Taneja (2019) [91]; Safapour and Kermanshachi (2019) [92]; Calvert et al. (1995) [93]; Harvey and Ashworth (1997) [94]; Gorse (2002) [95]. |
Workplace Health And Safety | Preece and Stocking (1999) [70]; Pandit et al. (2020) [96]; Albert and Hallowell (2017) [97]; Alsamadani, Hallowell and Javernick-Will (2013) [98]; Cigularov, Chen and Rosecranceb (2010) [99]; Kines et al., (2010) [100]; Liao et al. (2014) [101]; Kaskutas et al. (2013) [102]; Tutt et al. (2013) [103]; Hofmann and Stetzer (1998) [104]; Pandit et al. (2019) [105]; Ghodrati, Yiu and Wilkinson (2018) [106]; Hoła and Polak (2012) [107]. |
Partnering | CII (1991) [108]; Cowan et al. (1992) [109]; Uher (1999) [110]; Cheng and Li (2002) [111]; Abudayyeh (1994) [71]; Harback et al. (1994) [72]; De Vilbiss and Leonard (2000) [73]; Black et al. (2000) [74]; Chan et al. (2004) [38]; Ng et al. (2002) [39]; Cheng et al. (2000) [40]; Meng (2012) [41]; Xie et al. (2010) [112]; Radziszewska-Zielina and Szewczyk (2014, 2015. 2016) [43,44,45]; Chan et al. (2006) [113]; Szewczyk and Radziszewska-Zielina (2020) [114]. |
Success Factors |
Developer (a developer that properly presents their requirements and has an appropriate budget) |
Communication (project coordination, negotiations, design solutions, network of linkages between participants) |
Decisiveness (making decisions on time) |
Workplace health and safety (procedures ensuring safe working conditions during a construction project) |
Knowledge management (possession of experienced and well-qualified management cadre and sharing knowledge appropriately during the project) |
Construction crew and equipment performance (possessing experienced and highly qualified construction crews and proper machinery and equipment during the project) |
Planning (planning the entire process of the construction project, cost planning, time planning, quality planning, controlling changes) |
Risk management (identification, assessment, monitoring and minimization of risk occurring during the execution of the project; minimization of the effects of adverse events) |
Team management (managing management, construction crew and subcontractor personnel, delegating work, involvement in executing the project) |
Parameter under Analysis | p | m | S | T | W | Interpretation | χr2 | df | α | χα2 | H0 |
---|---|---|---|---|---|---|---|---|---|---|---|
Number of projects in need of better communication | 11 | 160 | 296,986 | 13,200 | 0.422 | Good concordance degree | 674.968 | 10 | 0.05 | 18.3070 | Rejected |
Stage when communication problems appear | 8 | 300,533.9 | 2224.5 | 0.418 | Good concordance degree | 467.965 | 7 | 14.0671 | Rejected | ||
Construction project success factor | 9 | 474,641 | 383 | 0.322 | Satisfactory concordance degree | 411.970 | 8 | 15.5073 | Rejected |
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Kania, E.; Radziszewska-Zielina, E.; Śladowski, G. Communication and Information Flow in Polish Construction Projects. Sustainability 2020, 12, 9182. https://doi.org/10.3390/su12219182
Kania E, Radziszewska-Zielina E, Śladowski G. Communication and Information Flow in Polish Construction Projects. Sustainability. 2020; 12(21):9182. https://doi.org/10.3390/su12219182
Chicago/Turabian StyleKania, Ewelina, Elżbieta Radziszewska-Zielina, and Grzegorz Śladowski. 2020. "Communication and Information Flow in Polish Construction Projects" Sustainability 12, no. 21: 9182. https://doi.org/10.3390/su12219182
APA StyleKania, E., Radziszewska-Zielina, E., & Śladowski, G. (2020). Communication and Information Flow in Polish Construction Projects. Sustainability, 12(21), 9182. https://doi.org/10.3390/su12219182