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Key Competency Factors of Professional Engineer in Environment - friendly Construction Industry

친환경 건설 전문 인력의 핵심 역량 요인 분석

  • Park, Soyeon (Department of Architectural Engineering, Hanyang University) ;
  • Kim, Suryeon (Department of Architectural Engineering, Hanyang University) ;
  • Ahn, Yonghan (Department of Architecture, Hanyang University)
  • Received : 2018.11.07
  • Accepted : 2018.02.01
  • Published : 2018.03.31

Abstract

The Environment - friendly construction industry has developed rapidly with sustained development of related technologies and government assistance. However, there is lack of consideration for nurturing professional manpower for Environment - friendly construction industry. In order to support rapid growth, it is necessary to analyze the competency of professional manpower to prepare for successful Environment - friendly construction industry. Thus, this research derive competency variables through the literature review and experts' interview was applied toward an validating of the key variables. Further, a survey of competency factors for sustainable construction was performed and analyzed through exploratory factor analysis. The result showed that four key competency factors were derived, and two factors stood out : Understanding of Sustainability and Affective Competency. The meaning of this research is to investigate relationship between the characteristics of Environment - friendly construction and importance of competency factor.

전 세계적으로 환경 문제가 대두되면서 에너지 사용량 절감에 대한 사회적 관심이 커지고 있다. 우리나라 또한 에너지 사용량 비중이 큰 건축부문의 에너지 사용량 절감을 위한 친환경 건설의 필요성이 강조되고 지속적인 기술개발과 정부의 지원을 바탕으로 친환경 건설 시장은 빠른 속도의 성장을 보이고 있다. 친환경 건설시장이 성장하면서 친환경 전문기업들이 생겨나고 있지만 관련 지식과 노하우를 갖춘 전문가들의 수는 부족하다. 지속적으로 성장하는 친환경 건설 시장의 변화에 대비하기 위하여 전문인력 양성의 기반 마련이 필요하다. 이에 본 연구는 친환경 건설 산업의 전문 인력에게 요구되는 역량요인에 대한 설문을 실시하고 탐색적 요인분석을 통하여 핵심 역량 요인을 도출하고 각각의 의미를 분석하였다. 분석 결과 총 4개의 역량 요인이 도출되었으며 그 중 2개의 요인인 '친환경 및 지속가능성에 대한 이해'와 '인적 관리 역량'이 핵심적인 역량 요인이라는 것을 도출하였다. 본 연구는 인력 양성에 필요한 역량 기준 및 평가에 대한 준비를 위한 기초연구가 될 것이다.

Keywords

References

  1. Ahn, Y. H., and Pearce, A. R. (2012). "Key competencies for U.S. Construction Graduates: Industry Perspective." J. Professional Issues in Engineering Education and Practice, ASCE, 138(2), pp. 123-130. https://doi.org/10.1061/(ASCE)EI.1943-5541.0000089
  2. Ahn, Y. H., and Pearce, A. R. (2007). "Green construction: contractor experiences, expectations, and perceptions." J. Green build., 2(3), pp. 106-122. https://doi.org/10.3992/jgb.2.3.106
  3. Badger, W. W., Walsh, K., and MKayo, R. (2005). "Leadership and goal-setting in construction education." Proc., Construction research Congress, ASCE, Reston, VA.
  4. Beliveau, Y. J., and Peter, D. (2002). "Educationg the builder of tomorrow - A constructivist educational model." ASC Proc., 38th Annual Conf., Associated Schools of Construction(ASC), Ft Collins, CO, pp. 221-230.
  5. Kubba, S. (2012). Handbook of green building design and construction: LEED, BREEAM, and Green globes, Butterworth-Heinemann, Oxford, U.K.
  6. Bernold, L. E. (2007). "Preparedness of engineering freshman to inquiry based learning." J. Prof. Issues Eng. Educ. Pract., 133(2), pp. 99-106. https://doi.org/10.1061/(ASCE)1052-3928(2007)133:2(99)
  7. Pearce, A. R., and Ahn, Y. H. (2009). "Greening engineering and construction education: Strategies entry points for sustainability in existing curricula." Proc., Int. Conf. on Construction Engineering and Management/Project Management, KICEM, Seoul, Korea.
  8. Pearce, A. R., and Ahn, Y. H. (2010). "Greening the educational experience: Strategic entry points for sustainability in existing curricula." Proc., ASEE Regional Conf., American Society for Engineering Educaion SE, Starkville, MS.
  9. Hwang, B. K., Lei Ahu, and Joanne S. H. T. (2017a). "Identifying Critical Success Factors for Green Business parks: Case Strudy of Singapore." Journal of Management in Engineering, ASCE, 33(5).
  10. Hwang, B. K., and Lim, E-Sin. J. (2013). "Critical Success Factors for Key Project Players and Objectives: Case Study of Singapore." Journal of Construction Engineering and Management, ASCE, 139(2), pp. 204-215. https://doi.org/10.1061/(ASCE)CO.1943-7862.0000597
  11. Hwang, B. K. Lei Ahu, and Ming, T. T. J. (2017b). "Factors Affecting Productivity in Green Building Construction Projects: The Case of Singapore." Journal of Management in Engineering, ASCE, 33(3).
  12. Hong, S. H., Jung, D. W., and Oh, C. D. (2015). "Analysis of Competence Factors Assessment for Specialty Contractors' Employees using IPA." Korea Research Insstitute of Mechanical Facilities Industry, KRIMFI, 16(5), pp. 21-30.
  13. Lee, J. Y., and Choi, H. M. (2009). "A Study on the Modeling and Evaluating of Conpetence for Construction Engineers." Journal of the Architectural Institute of Korea (Structure & Construction), AIK, 25(4), pp. 193-200.
  14. Kim, S. J., and Kim, H. S. (2012). "Relationship between Core Competencies and Educational Fulfillments of Junior Field Engineers of General Contractors." Journal of the Architectural Institute of Korea (Structure & Construction), AIK, 28(1), pp. 183-190.
  15. Choi, H. M., and Kim, Y. (2007). "A study on the Model of Competency Evaluation for Design Engineer." Proc., Int. Conf. on Architectural Institute of Korea, Korea, 1, pp. 672-676.
  16. Woo, S. K., and Kim, S. B. (2005). "A Study on Civil Engineering College Education Trends." Journal of the Korean Society of Civil Engineers, 53(7), pp. 40-46.
  17. Mauro, L. Martens and Marly, M. Carvalho. (2017). "Key factors of sustainability in project management context : A survey exploring the project managers' perspective." International Journal of Project Management, 35(2017), pp. 1084-1102. https://doi.org/10.1016/j.ijproman.2016.04.004
  18. Gimenez, C., Sierra, V. Rodon, J., (2012). "Sustainable operations : Impect on the triple-bottom line." Int. J. Prod. Econ, 140(1), pp. 149-159. https://doi.org/10.1016/j.ijpe.2012.01.035
  19. Arain, F. M. (2010). "Identifying competencies for baccalaureate level construction education : Enhancing employability of young professionals in the construction industry." Proc., Construction Research Congress, ASCE, Reston, VA.
  20. Park, S. Y., and Ahn, Y. H. (2017). "Greening Strategies for a University Facility." Journal of The Korea Institute for Structural Maintenance and Inspection, The Korea Institute For Structural Maintenance and Inspection, 4, pp. 293-296.
  21. Annie Pearce and Ahn, Y. H. (2017). "Sustainable Buildings and Infrastructure : Patrhs to the Future." HanmiGlobla Co, Ltd., 2nd edition.
  22. Choi, Y. O., and Ahn, Y. H. (2012). "Implementation and Evaluation of Green Building Features: Case Study of Trees Atlanta Kendeda Center." Journal of Ecology and Encironment, ECOSK, 12(2), pp. 59-63.
  23. Choi, C. H., and You, Y. W. (2017). "The Study on the comparative analysis of EFA and CFA." Journal of Digital convergence, 15(10), pp. 103-111. https://doi.org/10.14400/JDC.2017.15.10.103
  24. Jang, S. M. (2015). "Best Practices in Exploratory Factor Analysis for the Development of the Likert-type Scale." Korean Journal of Clinical Psychology, 34(4), pp. 1079-1100. https://doi.org/10.15842/kjcp.2015.34.4.010
  25. Kline, R. B. (2011). "Principles and practice of structural equation modeling." New York: Guilford Press, 3rd edition.
  26. Hair, J. F., Black, W. C., Babin, B. J., and Anderson, R. E. (2010). "Multivariate data analysis." London : Prentice Hall, 7th edition.
  27. Gorsuch, R. L. (1997). "Exploratory factor analysis: Its role in item analysis." Journal of Personality Assessment, 68(3), pp. 532-560. https://doi.org/10.1207/s15327752jpa6803_5