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1 NSC project for integrated research on Ho-Ching Lee Climate Chang Adaptation Technology
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2 International relations and law Environmental governance Environmental security Climate change negotiations IHDP – institutional dimensions COMPON – policy networks Climate change adaptation
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3 Outline Taiwan. Conceptual Framework Systems. Sectors. Regions. Cases Discussion
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4 Taiwan
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55 (EPA, 2009)
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66 Background Adaptation in urgent need: Taiwan is densely populated and at high risk for natural hazards to which climate change has a direct effect.
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77 Background 4 building blocks: Mitigation Adaptation Finance technology
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88 Background Adaptation: Engineering and non-engineering approaches Policy mainstreaming Social learning IPCC AR 4 and local knowledge Necessary, unavoidable, happening and on-going process
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99 Background Climate-sensitive island country: about 73% of Taiwan’s land and population is exposed to more than three natural hazards (EPA, 2009).
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10 Background Adaptation in dynamic process: the relationship between climate and society has always been dynamic (Hulme, 2009).
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11 2009 Shiao Lin village, Taiwan, drastic changes after typhoon Morakot (2009). Potential landslide area
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12 Lu-Shan hot spring, typhoon Morakot (2009). Potential flood area
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13 Taichung, 921 Jiji earthquake in 1999. Earthquake distribution in Taiwan
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14 Conceptual Framework
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15 Climate change Vulnerability Adaptation Driver State Response
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16 Driver State Response E nvironmental system Analysis Vulnerability Assessment Adaptation technology Planning
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17 DSR (exposure, sensitivity, adaptive capacity) CAV
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18 DSR (exposure, sensitivity, adaptive capacity) EA communication AP VA
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19 Systems
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20 DSR EA data knowledge EA communication AP VA
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21 DSR VA datainfo knowledge EA communication AP VA knowledge
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22 DSR AP knowledge info knowledge EA communication AP VA
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23 Sectors
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24 D EA Monitoring the past & present Projecting the future TCCIP
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25 Water resource Public health Ecosystem service Food security Environmental disaster S VA
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26 R AP Risk management Spatial planning Climate governance
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27 Regions
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28 S VA APEA DS infodata R knowledge Coastal, Urban, Rural, river-Basin, Offshore, Mountainous (CURBOM) regions knowledge
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29 Mountainous region Central mountain region with spatial composition Mm+Mr+Mb is likely to face extreme landslide by the extreme rainfall due to climate change Rural region Rural region Chia-Yi with spatial composition Rr+Ru+Rm+Rb+Rc is likely to face the extreme drought by the increase of temperture due to climate change Coastal region Yun-Lin region with spatial composition Cc+Cu+Cr+Cb is likely to face the extreme flood by the extreme rainfall due to climate change river-Basin region Kau-Pin region with spatial composition Bb+Bu+Br+Bm+Bc is likely to face the extreme flood by the extreme rainfall due to climate change Offshore region Lan-Yu region with spatial composition Oo+Or+Om+Oc is likely to face the extreme heat affecting human and natural systems by the increase of temperature due to climate change Urban region Taipei city region with spatial composition Uu+Ur+Um+Ub+Uc is likely to face the extreme heat island effect by the increase of temperture due to climate change Uc Ur Um UcUu UrUm UuUbUuUrUm Uu Ub Um Rr Rm Ru Rr Rm RcRbRr Rm RcUuRb Rm Cc Cr CcCuCr CcCuCbCr CcCrCbCr CcCr Cb Mr Mm Mr MbMrMm Mr Mb MmMbMm MrMm Mb BcBb Bm BbBuBr Bm Bu BbBm BcBuBr Bm Ic IrIiImIc IrIiImIc
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30 Cases
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34 M-region
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35 U-region
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36 R-region
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37 C-region
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39 Discussion
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40 Taiwan United Kingdom United Kingdom Germany Germany Netherlands Netherlands Austria Austria USA USA Japan Japan Vietnam Vietnam Indonesia Indonesia EAdatabase database VAmodel model EA regional study EA regional study VA regional study VA regional study Theories, Tools Theories, Tools Practices, Findings Practices, Findings APprototype prototype Australia regional study AP regional study
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41 Thanks
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