Abstract
Fiji is expected to come under increasing pressure and risk from various threats resulting from climate change and sea-level rise (SLR). Fiji consists of 332 islands and thus has a predominant and large coastline. Viti Levu is the largest and most important of the islands, harboring Fiji’s capital city and most of the major towns concentrated around its coast. The objectives of this study were to evaluate the extent of possible sea-level rise using GIS, and to identify high-risk locations. Potential sea level rise was shown graphically as an output to determine where inundation or flooding would take place. This analysis allowed important areas facing risk to be highlighted for future action. Flooding/inundation can be classified into two kinds: ‘permanent inundation’, which is the result of sea-level rise with tide; and ‘temporary flooding’, also including occasional storm surge events. The inundated area was displayed under different projections and quantified. The results produced output maps showing the distribution of inundation/flooding around the island of Viti Levu as well as the extent of flooding. Six scenarios for sea-level rise were used (0.09, 0.18, 0.48, 0.50, 0.59, 0.88 m). Six scenarios for storm surge were used with return intervals of 1, 2, 5, 10, 25, 50 years. High risk and priority locations are identified as Fiji’s capital Suva, the major tourist center and arrival port of Nadi, and Fiji’s second city Lautoka. Future action, adaptation and response strategies in these identified locations must occur to reduce risk from climate change.
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Acknowledgments
The authors are grateful to the staff at the South Pacific Applied Geoscience Commission, in particular Mr. A. Lal and Ms. L. Biukoto for their kind assistance in providing data. We are also indebted to Dr. Y. Kuwahara for his time and help.
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Gravelle, G., Mimura, N. Vulnerability assessment of sea-level rise in Viti Levu, Fiji Islands. Sustain Sci 3, 171–180 (2008). https://doi.org/10.1007/s11625-008-0052-2
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DOI: https://doi.org/10.1007/s11625-008-0052-2