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표준습지 분석을 통한 대체습지의 생태 성능 기준 개발

Developing the Ecological Performance Standard for Replaced Wetlands by Analyzing Reference Wetlands

  • 투고 : 2010.04.19
  • 심사 : 2011.02.02
  • 발행 : 2011.02.28

초록

This study was established to build and suggest the Ecological Performance Standards for replaced wetlands as the mitigation strategies for the construction projects. The request performance and assessment factors and standards were derived by bibliographic review and verified by the field survey for the reference wetlands. And the weights for each factor were derived by AHP(Analytical Hierarchy Process) method. The results are as follows : 1) Assessment factors were induced by in-depth research of many wetland assessment models and benchmarks evaluated ecological functions. This study proposed final 12 assessment factors through ecological specialist and experts interviews added with literature analysis. 2) 10 natural wetlands were selected as Reference Wetlands as the measure to propose assessment factors and assessment criteria. Those reference wetlands are well-conserved inland natural wetlands classified to the one having worthy to conserve (grade "high") according to RAM(Rapid Assessment Method). Reference wetlands chosen by the study are Parksilji, Jeongyangji, Mulkubi, Bawineupkubi, Jilnalneup, Jinchonneup, Doomoso, Haepyung wetland, Whangjeong wetland, and Whapo wetland. The research developed assessment criteria for the performance assessment factors based on several explorations of the reference wetlands. 3) "Requiring performance" of replaced wetlands is defined as "to carry out similar or same ecological functions provided by natural wetlands", in overall. The detailed requiring performances are as follows; ${\bullet}$ to play a role of wildlife habitats ${\bullet}$ to have biological diversity ${\bullet}$ to connect with other ecosystems ${\bullet}$ to provide water environment to perform good ecological functions 4) The assessment factors for required performance are categorized by wildlife habitat function, biological diversity, connectivity of adjacent ecosystem, and water environment. Wildlife habitat category is consisted of wildlife habitat creation, size of replacement wetland, and site suitability. Biological diversity category contains the number of plant species, the number of wildlife species, and number of protected species as the sub-factors. Connectivity of adjacent ecosystem is comprised of wildlife corridor, green network and distance from other ecosystem. Finally, water environment make up with water quality, depth of water body, and shape of waterfront. 5) Finally, every assessment factors were verified and weighted by the AHP methods and the final standards were proposed. The weights of factors of requiring performance suggested as habitat (0.280), connectivity (0.261), diversity (0.260), hydraulic environment (0.199). And those of detailed sub-factors are site suitability (0.118), protected species (0.096), distance to neighbor ecosystem (0.093), habitat creating (0.091), green corridor (0.090) etc.

키워드

참고문헌

  1. 구본학. 2008. 국가습지유형분류체계. UNDP/GEF, 환경부, 습지사업단.
  2. 구본학․김민수․이상석․김성용. 2008. 성능중심의 건설기술기준 작성지침 pp.8-10. 건설기술연구원.
  3. 김민수. 2007. 조경분야 성능중심의 건설기술기준 개발방안. 한국조경학회 2007년도 추계학술대회 논문집 pp.24-30. 한국조경학회.
  4. 김태송. 2008. 건설공사 성능보증계약제도 도입방안 연구. 중앙대학교 박사학위논문.
  5. 이창복. 2003. 원색 대한식물도감. 향문사.
  6. 정진용. 2009. 대체습지의 성능기준 개발. 상명대학교 박사학위논문.
  7. 한국건설기술연구원. 2007. 성능중심의 건설기준 개발 기본계획 수립 연구보고서:기본계획 수립 및 성능기준 작성지침 개발. 건설교통부:한국건설교통기술평가원.
  8. 龜山 章. 2002. (문석기, 이동근, 김남춘, 이규석, 남상준, 윤소원, 강명수, 예경록 공동번역, 2004) 생태공학. 보문당.
  9. Admiraal, A. N., M. J. Morris, T. C. Brooks, J. W. Olson and M. V. Miller. 1997. Illinoos Wetland Restoration & Creation Guide. Natural History Survey Special Publication.
  10. Brinson, M. M. 1993. Hydrogeomorphic Classification for Wetlands. Wetlands Research Program Technical Report WRP-DE-4. U.S. Army Corps of Engineers.
  11. Campbell, C. S., and M. Ogden. 1999. Constructed Wetlands in the Sustainable Landscape. John Wiley & Sons, Inc.
  12. Cowardin, L. M., V. Carter and E. T. LaRoe. 1979. Classification of Wetlands and Deep-water Havitats of the United States. U.S. Department of the Interior Fish and Wildlife Service Office of Biological Services .
  13. Cylinder, P. D., K. M. Bogdan, E. M. Davis and A. I. Herson. 1995. Wetlands Regulation. Solano Press Books.
  14. DeBusk, T. A., & W. F. DeBusk. 2001. "Wetlands for Water Treatment". Applied Wetlands Science and Technology. Kent, D.M. (ed.). Lewis Publishers. pp.241-279.
  15. France, R. L. 2003. Wetland Design:Principles and Practices for Landscape Architects and Land-Use Planners. W.W Norton.
  16. Hammer, D. A. 1992. Creating Freshwater Wetlands. Lewis Publishers.
  17. Kadlec, R. H., and R. L. Knight. 1996. Treatment Wetlands. Lewis Publishers.
  18. Kantor, R. A., and D. J. Charette. 1986. Wetlands Mitigation in New Jersey's Coastal Management Program. National Wetlands Newsletter, Vol. 8, No. 5. Environmental Law Institute, Washington, DC.
  19. Kentula, M. E., R. P. Brooks, S. E. Gwin, C. C. Holland, A. D. Sherman and J. C. Sifneos. 1993. An Approach to Improving Decision Making in Wetland Restoration and Creation. C.K. SMOLEY, INC.
  20. Kruczynski, W. L. 1990. Options to be Considered in Preparation and Evaluation of mitigation plans. Island Press, Washington, DC, USA.
  21. Marble, A. D. 1991. A Guide to Wetland Functional Design. Lewis Publishers.
  22. Mitsch, W. J., and J. G. Gosselink. 1993. Wetlands (2nd ed.). John Wiley & SONS, INC.
  23. Ramsar Convension. 2008. Strategic Framework and guidelines for the future development of the List of Wetlands of International Impor tance of the Convention on Wetlands (3rd. ed.). Ramsar Convension.
  24. Smith, R. D., A. Ammann., C. Bartoldus and M. M. Brinson. 1995. An approach for Assessing Wetland Functions Using Hydrogeomorphic Calssification, Reference Wetlands, and Functional Indices. Technical Report WRP-DE-9. Waterways Experiment Station, U.S. Army Corps of Engineers, Vicksburg, MS. p.7-25
  25. USEPA. 1996. Biological Criteria:Technical Guidance for Streams and Small Rivers, EPA 822-B-96-001. U.S. Environmental Protection Agency. Office of Water. Washington, D.C. p.17-38.
  26. http://www.usace.army.mil

피인용 문헌

  1. 유리섬유강화콘크리트를 이용한 자연형 경관석의 성능기준 연구 vol.40, pp.5, 2012, https://doi.org/10.9715/kila.2012.40.5.033