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건설현장의 재해사례 분석을 통한 타워크레인 안전성 확보 방안 연구
Study to Secure the Safety of Tower Cranes through Disaster Case Analysis at Construction Sites 원문보기

한국건축시공학회지 = Journal of the Korea Institute of Building Construction, v.22 no.1, 2022년, pp.57 - 67  

손승현 (Department of Architectural Engineering, Mokpo National University) ,  김지명 (Department of Architectural Engineering, Mokpo National University) ,  안성진 (Department of Architectural Engineering, Keimyung University) ,  나영주 (Department of Architectural Engineering, U1 University) ,  김태희 (Department of Architectural Engineering, Mokpo National University)

초록
AI-Helper 아이콘AI-Helper

타워크레인은 기초 단면과 비교하여 상대적으로 불안정한 상부구조를 가지고 있어 사고위험성이 매우 크다. 현재 타워크레인 안전사고 저감을 위한 노력이 활발히 이루어지는 시점에 타워크레인의 안전성 확보를 위한 예방대책 수립이 필요하다. 따라서 본 연구의 목적은 타워크레인 안전성 확보를 위한 재해사례 분석 연구이다. 본 연구를 위해 2012년 7월부터 2020년 7월까지 한국산업안전보건공단에 접수된 타워 크레인 재해사례 260건을 대상으로 분석하였다. 그 결과, 작업 공종 중에서는 인양작업이 45.3%로 가장 높게 나타났으며, 재해 형태 중에서는 추락에 의한 사고가 35.8%로 가장 많이 발생하는 것으로 나타났다. 또한, 사고 발생원인은 작업방법 불량이 38.8%로 가장 높은 것으로 확인되었다. 향후 본 연구의 결과는 타워크레인 사고예방을 위한 정책수립에 기초자료로 활용될 것이다.

Abstract AI-Helper 아이콘AI-Helper

Tower cranes have an unstable superstructure, which means that there is a very high risk of accidents. It is necessary to establish preventive measures to ensure the safety of tower cranes at a time when active efforts are being made to reduce safety accidents involving tower cranes. As such, the pu...

주제어

표/그림 (8)

참고문헌 (26)

  1. Kim HH, Lee G. An analysis of the accident types and causes of construction cranes. Proceedings of the Korean Institute of Building Construction Conference; 2007 Apr 2; Gyeongju-si, Korea. Seoul (Korea): the Korean Institute of Building Construction; 2007. p. 109-12. 

  2. Kee D, Kim WK. Status of fatal crane accidents and their safety measures. Journal of the Korean Society of Safety. 2005 Mar;20(1):137-42. 

  3. Lee MG, Ro ML. Structural analysis for the collapse accident of tower crane. Journal of the Korean Society of Safety. 2001 Dec;16(4):147-52. 

  4. Ahn SJ, Kim TH, Kim JM. An analysis of factors affecting the safety of tower crane in construction site. Proceedings of the Korean Institute of Building Construction Conference; 2019 Nov 31-Nov 1; Chungju-si, Korea. Seoul (Korea): the Korean Institute of Building Construction. 2019. p. 44-5. 

  5. Kim YS, Cho JK, Kim MJ, Cho KM, Hyun CT. A productivity analysis of tower crane installation progress based on simulation technique. Journal of the Korea Institute of Building Construction. 2010 Apr;10(2):33-40. https://doi.org/10.5345/JKIC.2010.10.2.033 

  6. Korea Ministry of Land, Infrastructure and Transport. Strengthening construction site management supervision to prevent tower crane accidents. 2021 - [cited 2021 October 7] Available from: http://www.molit.go.kr/USR/NEWS/m_71/dtl.jsp?id95085821 

  7. Yun DH, Park JY, Kee JH. Measures to reduce tower crane accidents during operation by improving signal system and education for signalmen. Journal of the Korean Society of Safety. 2019 Aug;34(4):68-75. https://doi.org/10.14346/JKOSOS.2019.34.4.68 

  8. Lee EJ, Shin SW. Field survey on suitable in-service wind speed limit for tower crane operation. Journal of the Korean Society of Safety. 2018 Feb;33(1):103-8. https://doi.org/10.14346/JKOSOS.2018.33.1.103 

  9. Kim DY. A fundamental study on safety management for high-rise building tower crane operators - survey and analysis on tower crane operators' current work condition. Journal of the Architectural Institute of Korea Structure & Construction. 2013 Feb;29(2):59-66. 

  10. Tam VW, Fung IW. Tower crane safety in the construction industry: A hong kong study. Safety science. 2011 Feb;49(2):208-15. https://doi.org/10.1016/J.ssci.2010.08.001 

  11. Kook DH, Kim AY, Seo JM, Kim SK. Analysis of the construction crane accidents according to the accident case study. Proceedings of the Korean Institute of Construction Engineering and Management Conference; 2007 Nov 9-10; Busan, Korea. Seoul (Korea): the Korean Institute of Construction Engineering and Management. 2007. p. 436-40. 

  12. Kim YS, Koo KH, Choe SW, Kwon OJ. Estimation of occupational accident rate about start-up establishment and analysis of characteristics about occurrence. Journal of the Korean Society of Safety. 2012 Aug;27(4):83-9. https://doi.org/10.14346/JKOSOS.2012.27.4.083 

  13. Shim KH, Rie DH. A quantitative risk analysis of related to tower crane using the fmea. Journal of the Korean Society of Safety. 2010 Dec;25(6):34-9. 

  14. Qing Y, Li HZ, Jing JH, Zeng FY, Rui R. Dynamic behavior analysis and its application in tower crane structure damage identification. Advanced Materials Research. 2012 Oct;368-373:2478-82. https://doi.org/10.4028/www.scientific.net/AMR.368-373.2478 

  15. Kim JD, Jung JW, Lee SH, Son JW. Significance analysis of major accident factors of remote control tower crane using AHP technique. Journal of the Korean Society of Safety. 2019 Dec;2(2):76-81. https://doi.org/10.20931/JKICS.2019.2.2.076 

  16. Kwon GM. Deduction of accident cause for tower-crane using FMEA method [dissertation]. [Seoul (Korea)]: Hanyang University; 2015. 120 p. 

  17. Kim DS, Kang KS. A study for safety countermeasures of crane working. Journal of the Korea Safety Management & Science. 1999 Dec;1(1):171-81. 

  18. Park JH, Park TJ, Seo DW, Yang DD, Lim HK, Seo YH. Ergonomic design guideline for cranes to prevent industrial accidents. Proceedings of the Ergonomics Society of Korea Conference; 2006 May 12-13; Seoul, Korea. Seoul (Korea): the Ergonomics Society of Korea. 2006. p. 146-150. 

  19. Ho JK, Kim SK, Kook DH. A system for the selection of the optimum tower cranes(Opt-TC). Journal of the Korean Institute of Construction Engineering and Management. 2007 Dec;8(6):216-26. 

  20. Bae JH, Kim KH, Lee DH. Efficiency analysis of tower crane lifting work for project management of construction. Journal of the Korean Society of Safety. 2019 Dec;2(2):63-9. https://doi.org/10.20931/JKICS.2019.2.2.063 

  21. Kim DH, Kim HJ. A plan of the accident classification system for the analysis of disaster information in construction projects. Journal of the Architectural Institute of Korea Structure & Construction. 2001 Nov;17(11):139-45. 

  22. Lee JW. Key management POINT shown in the analysis of construction disaster status. Journal of the Korea Construction Safety Engineering Association. 1997;25:64-8. 

  23. Kim YR, Lee IY. A study on alternative budget classification for disaster and safety management. Journal of the Korean Society and Public Administration. 2018Feb;28(4):139-69. https://doi.org/10.53865/KSPA.2018.02.28.4.139 

  24. Choi SY, Cho KH, Park DH, Choi BG. A study on the work environment and accident exposure status of Tower Crane workers. Journal of the Korea Safety Management and Science. 2015 Sep;17(3):115-23. https://doi.org/10.12812/ksms.2015.17.3.115 

  25. Lee MK, No MR. Analysis of causes of tower crane accidents due to poor construction of foundation anchors. Proceedings of the Korean Society of Safety conference. 2000 Feb; Seou, Korea. Seoul (Korea): the Korean Society of Safety conference. 2000. p. 411-6. 

  26. Woo, BM, Park JM, Lee JW, Chung NH. A study on economical analysis of yarding operation by cable crane. Journal of Korean Society of Forest Science. 1990 Dec;79(4):413-8. 

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