DOI QR코드

DOI QR Code

Development of Disaster Risk Analysis System for Environment Friendly Road

친환경 도로노선의 재해위험도 평가시스템 개발

  • 송민태 (평화엔지니어링 기술연구원) ;
  • 강호근 (평화엔지니어링 기술연구원) ;
  • 김흥래 (평화엔지니어링 기술연구원) ;
  • 이태옥 (평화엔지니어링 민자단지개발부) ;
  • 이한주 (단국대학교 토목환경공학과)
  • Received : 2012.07.03
  • Accepted : 2012.09.12
  • Published : 2012.10.15

Abstract

PURPOSES: This study is to investigate the consideration which relates with a disaster from route alignment process and proposed the method it will be able to evaluate a disaster danger fixed quantity. METHODS: Use the landslide disaster probabilistic map of GIS based and in about landslide occurrence of the route alignment at the time of neighboring area after evaluating a risk fixed quantity, it compared LCC expense in about each alternative route. It developed the system it will be able to analyze a LCC and a disaster risk in about the alternative route. In order to verify a risk analytical algorithm and the system which are developed it selected national road 59 lines on the demonstrative route and it analyzed a disaster risk. RESULTS: Demonstrative route not only the disaster risk to be it will be able to compare a disaster risk fixed quantity like the economical efficiency degree in compliance with LCC expense productions it compared and there being the designer will be able to decide the alternative route, it confirmed. CONCLUSIONS: Roads can be designed by considering occurs repeatedly landslides and debris flow caused by disasters in advance and expect to be able to effect that can reduce the overall cost to recover losses caused by the disaster, and temporally loss is expected.

Keywords

References

  1. D.de Wrachien, C.A. Brebbia, M.A Lenzi (2008). "Monitoring, Simulation, Prevention and Remediation of Dense and Debris Flow II", WIT press
  2. D.de Wrachien, C.A. Brebbia (2010). "Monitoring, Simulation, Prevention and Remediation of Dense and Debris Flow III", WIT press
  3. Kang Ho-Geun (2010), "GIS based Environmentally Friendly Route Selection for Road Construction", Doctoral dissertation, Ajou Univ.
  4. Kang Ho Geun, kim Sang Tae, Kim Heung Rae, Park Tae Kweon, An Seoung Sun, Lee Sang Eun (2011), "Assessment of Environment - Friendly Degree in Road routes", The Journal of Korean Society of Road Engineers, no. 13 vol. 1, pp.129-138 https://doi.org/10.7855/IJHE.2011.13.1.129
  5. Korea Highway Corporation (2009), "Development of Debris Flow Hazard Analysis Method and Its Application"
  6. Korea Institute of Geoscience and Mineral Resources (2009), "Development of the System for Landslide Risk Analysis based on GIS Techniques"
  7. Lee Seung-Woo, Kim Gi-Hong, Yune Chan-Young, Ryu Han- Joong, Hong Seong-Jae (2012), "Development of Landslide-Risk Prediction Model thorough Database Construction", The Journal of Korean Geotechnical Society, Vol. 28 No. 4, pp.23-39 https://doi.org/10.7843/kgs.2012.28.4.23
  8. Matthias Jakob, Oldrich Hungr, "Debris-flow Hazards and Related Phenomena", Springer
  9. Ministry of Construction and Transportation, Korea (1999), "Road Design Handbook"
  10. Ministry of Construction and Transportation, Korea (2007)", Design Manual of National Highway"
  11. Ministry of Construction and Transportation, Korea (2007), "Road Design Manual of Mountain Area"
  12. WIe Gwang-jae, Lee Young-kyun, Lee Dong-ha, Suh Yong-cheol (2010), "Development of GIS-based Debris Flow Simulation Program", The Journal of Korea Society of Hazard Mitigation, Vol.10 no.1, pp.49-55
  13. Yoon-Seuk Oh, Jee-Hee Koo, Tae-Hoon Kim (2005), "Decision Support System Design for GIS based Construction Planning of Urban Railroad", The Journal of GIS Association of Korea, Vol. 13 No. 2, pp.139-155