References
- International Strategy for Disaster Reduction, Disaster Risk
Reduction in the United Nations, Geneva, Switzerland: United
Nations, 2011, pp. 1–155.
- K.Y. Park, M.H. Lee, Vulnerability analysis of urban district on
the urban flood damage, Desal. Wat. Treat , 119 (2018) 27–35.
- K.Y. Park, Flood Risk Assessment Modelling Reflected upon
Vulnerability and Exposure, Degree of Doctor of Philosophy,
Chungbuk National University, 2018, pp. 1–179.
- T.R. Schueler, Controlling Urban Runoff: A Practical Manual
for Planning and Designing Urban BMPs, Metropolitan
Washington Council of Governments, Washington, D.C., 1987.
- T. Beatley, Planning and sustainability: the elements of a new
(improved?) paradigm, J. Plann. Lit., 9 (1995) 383–395.
- P.R. Berke, T. Beatley, After the Hurricane: Linking Recovery to
Sustainable Development in the Caribbean, The Johns Hopkins
University Press, Baltimore and London, 1997.
- J.P. Kossin, T.L. Olander, K.R. Knapp, Trend analysis with a new
global record of tropical cyclone intensity, J. Clim., 26 (2013)
9960–9976.
- UNISDR, Sendai Framework for Disaster Risk Reduction
2015–2030, Geneva, Switzerland, 2015.
- S. Mannakkara, A Framework for Building Back Better During
Post-Disaster Reconstruction and Recovery, Degree of Doctor of
Philosophy in Civil Engineering, University of Auckland, 2014.
- S. Harrison, A. Silver, B. Doberstein, Post-storm damage surveys
of tornado hazards in canada: implications for mitigation and
policy, Int. J. Disaster Risk Reduct., 13 (2015) 427–440.
- M.G. Stewart, Cyclone damage and temporal changes to
building vulnerability and economic risks for residential
construction, J. Wind Eng. Ind. Aerodyn., 91 (2003) 671–691.
- Ministry of the Interior and Safety, 2018 Statistical Yearbook of
Natural Disaster, Republic of Korea, 2019.
- K.Y. Park, J.H. Won, Analysis on distribution characteristics of
building use with risk zone classification based on urban flood
risk assessment, Int. J. Disaster Risk Reduct., 38 (2019) 101192.
- Water Directors, Core Group on Flood Protection of the
Water Directors (Europe): Best Practices on Flood Prevention,
Protection and Mitigation, European Initiative on Flood
Prevention, 2003.
- B. Petry, Coping with Floods: Complementarity of Structural
and Non-Structural Measures, Science Press, New York Ltd.,
2002.
- E.J. Kaiser, J. David, Godschalk, F. Stuart Chapin Jr., Urban
Land Use Planning, Fourth Edition, Chicago: University of
Illinois Press, 1995.
- R.J. Burby, R.E. Deyle, D.R. Godschalk, R.B. Olshansky, Creating
hazard resilient communities through land use planning, Nat.
Hazard Rev., 1 (2000) 99–106.
- FEMA, The Oklahoma City Bombing: Improving Building
Performance Through Multi-hazard Mitigation, Amercian
Society of Civil Engineers, 1996.
- Ulsan Metropolitan City, 2030 Urban Masterplan for Ulsan,
2016, pp. 1–495.
- K. Park, M.H. Lee, The development and application of the
urban flood risk assessment model for reflecting upon urban
planning elements, Water, 11 (2019), https://doi.org/10.3390/
w11050920.
- L.A. Zadeh, Fuzzy sets, Inf. Control, 8 (1965) 338–353.
- N. Chang, H.W. Chen, S.K. Ning, Identification of river
water quality using the fuzzy synthetic evaluation approach,
J. Environ. Manage., 63 (2001) 293–305.
- S. Gopal, C. Woodcock, Remote sensing of forest change using
artificial neural networks, IEEE Trans. Geosci. Remote Sens.,
34 (1996) 398–404.
- J. Curlander, W. Kober, Rule Based System for Thematic
Classification in SAR Imagery, Proc. IGARSS, IEEE Press, New
York, 1992, pp. 854–856.
- C. Tsatsoulis, Expert Systems in Remote Sensing Applications,
IEEE Geosci. Remote Sens. Lett., 1993, pp. 7–15.
- U.C. Benz, P. Hofmann, G. Willhauck, I. Lingenfelder,
M. Heynen, Multi-resolution, object-oriented fuzzy analysis of
remote sensing data for GIS-ready information, J. Photogramm.
Remote Sens., 58 (2004) 239–258.
- C.O. Unanwa, J.R. McDonald, K.C. Mehta, D.A. Smith, The
development of wind damage bands for buildings, J. Wind Eng.
Ind. Aerodyn., 84 (2000) 119–149.