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  1. National Taiwan Ocean University Research Hub

The Natural and Artificial Coastline Increasing/Decreasing Rate and Strategy for Mitigation Development of Taiwan Due to Environmental Changes

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基本資料

Project title
The Natural and Artificial Coastline Increasing/Decreasing Rate and Strategy for Mitigation Development of Taiwan Due to Environmental Changes
Code/計畫編號
MOST105-2625-M019-002
Translated Name/計畫中文名
全流域觀點之河口及海岸避災社經發展模式與減災策略研究-總計畫暨子計畫:環境變遷下台灣「自然海岸」與「防災海岸」合宜的增減發展及減災策略之研究(II)
 
Project Coordinator/計畫主持人
Sung-Shan Hsiao
Funding Organization/主管機關
National Science and Technology Council
 
Co-Investigator(s)/共同執行人
江允智
簡連貴
 
Department/Unit
Department of Harbor and River Engineering
Website
https://www.grb.gov.tw/search/planDetail?id=11904827
Year
2016
 
Start date/計畫起
01-08-2016
Expected Completion/計畫迄
31-07-2017
 
Co-Investigator(s)
Lien-Kwei Chien
Bugetid/研究經費
1232千元
 
ResearchField/研究領域
防災工程
 

Description

Abstract
沿海區域是各國經濟社會發展最迅速的地區,也是世界人口最集中的地區,約佔全世界60% 以上的人口生活在海岸地區。且海平面上升,加強了近岸水動力作用,使海岸侵蝕加劇或原本遭 遇的問題更加複雜。且近年來海岸地區複合式自然災害頻傳,颱風、暴雨,暴潮強度加劇及伴隨 發生是海平面上升的另一個災害。IPCC AR5研究報告指出,氣溫上升將會導致颱風強度的增加, 而颱風路徑通過沿海地區的暴潮災害發生頻率亦將提高,海平面升高無疑會抬升暴潮位,本來不 易受襲擊的地區,有可能受到波及。因此,為了台灣海岸地區的永續發展,實有必要針對上述問 題進行研究。故本計晝係以全流域整體觀點以河道、河口及海岸區域進行考慮水動力及漂沙與地 形變遷交互作用的河口海岸地區地形變遷模式為基礎,配合環境變遷下區域海平面上升研究、地 下水位及鹽化研究,進行整合型量化風險評估QRA(quantitative risk assessment)分析,及環境變遷 下台灣「自然海岸」與「防災海岸」合宜的增減發展與防災策略整合型研究,並進而提出調適對 策,提供政府永續發展政策規劃及12年國教海洋環境教育教材之參考。 Coastal areas are not only the fastest growing countries in economic and social development of the region, but also the most heavily populated areas in the world, accounting for over 60 percent of the world's population lives in coastal areas. Sea-level rise, coastal hydrodynamics strengthened the role of the coastal erosion problem exacerbated or otherwise suffered more complicated. In recent years, the coastal areas of composite frequent natural disasters, exacerbated by typhoons, torrential rain, storm surge intensity and rising sea levels associated with the occurrence of another disaster. IPCC AR5 report noted that rising temperatures will lead to increased typhoon intensity, but the typhoon path by storm surges will also increase the frequency of disaster occurrence in coastal areas, sea level rise will undoubtedly storm surge lifted position, the attack would have been less vulnerable areas, there may be affected. Therefore, in order to sustainable development of Taiwan's coastal areas, there is a need for research on these issues. So this project is based on a full river basin, with rivers, estuaries and coastal areas to consider hydrodynamic and sediments transport and topography changes the interaction of estuarine and coastal areas based on the model. The Regional Environmental Change with sea levels rising, the groundwater and salinization, conducted integrated quantitative risk assessment (QRA) analysis, and environmental changes around Taiwan's "Nature Coastline" and "Artificial Coastline" expedient changes in development Disaster Prevention strategy and integrated studies.
 
 
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