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題名:臺北盆地的熱環境特徵與都市綠色基盤的影響
書刊名:都市與計劃
作者:石婉瑜Mabon, Leslie
作者(外文):Shih, Wan-yu
出版日期:2018
卷期:45:4
頁次:頁283-300
主題關鍵詞:都市熱島效應都市熱環境綠地涼化效應綠色基盤氣候變遷調適都市規劃臺北Greenspace cooling effectUrban heat islandEcosystem-based adaptationClimate change adaptationUrban adaptation planningTaipei
原始連結:連回原系統網址new window
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  • 被引用次數被引用次數:期刊(1) 博士論文(0) 專書(0) 專書論文(0)
  • 排除自我引用排除自我引用:1
  • 共同引用共同引用:6
  • 點閱點閱:22
本研究以LANDSAT 8衛星影像探討臺北盆地內地表溫度的分布特徵以及綠色基盤度對此特徵的影響。結果顯示熱島產生的地點多位於新北市境內,多有大面積、高密度、連續不透水面的開發特徵,而冷島則多產生在有較大水體或綠地混合的地點。地表溫度受到地表覆蓋類別的影響,水體、樹木、草地的覆蓋地點均呈現相對低溫,但水體的涼化強度最高,其次是樹木。涼化效應的空間分布受到綠色基盤的空間紋理以及其周遭地區溫度的影響,在具有大型綠地與水體的地點,若緊鄰地區沒有其他高溫熱源,則較容易觀察冷島與涼化擴散的現象。據此,本研究建議在擬定臺北盆地的降溫策略時,應整合考量綠色基盤與周遭建成環境間的相互關係,透過1.保護既有冷島;2.增加綠地內部樹木與水體的面積;3.降低綠色基盤周遭地區的溫度⋯等規畫設計原則,應能提升既有綠色基盤的涼化強度與穩定度,並促使涼化效應向外延伸擴展。
Thermal distribution patterns and the influence of green infrastructure in Taipei Basin were analyzed using LANDSAT 8 satellite imagery. The image analysis results showed that most heat islands are distributed within New Taipei City, where they are characterised by densely built areas and/or large and continuous impervious surfaces; whereas cool islands are mostly associated with areas that are mixed with large water bodies and vegetated grounds. Land surface temperature is significantly influenced by land cover, with areas covered by water, trees, and grasses having relatively low temperature. Water body is the coolest land cover type, which is followed by trees. The spatial distribution of the cooling effects is affected by the pattern of green infrastructure and the temperature of its surroundings. Cool islands and cooling dispersal tend to occur in areas mixed with water and greenspaces, which are not adjacent to hotter surroundings. Accordingly, this study suggests integrated consideration of green infrastructure and its interrelationship with surrounding built environments when developing a heat mitigation strategy for Taipei Basin. This can be achieved through planning and design principles including: preserving existing cool islands, increasing water and tree coverage inside greenspaces, and mitigating temperature at the surroundings of green infrastructure. These actions may enhance the cooling magnitude and stability of existing cool islands and facilitate cooling extension in Taipei Basin.
期刊論文
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13.Chen, X.、Su, Y.、Li, D.、Huang, G.、Chen, W.、Chen, S.(2012)。Study on the cooling effects of urban parks on surrounding environments using Landsat TM data: A case study in Guangzhou, southern China。International Journal of Remote Sensing,33(18),5889-5914。  new window
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17.Hathway, E. A.、Sharples, S.(2012)。The interaction of rivers and urban form in mitigating the Urban Heat Island effect: A UK case study。Building and Environment,58,14-22。  new window
18.Li, X.、Zhou, W.、Ouyang, Z.、Xu, W.、Zheng, H.(2012)。Spatial pattern of greenspace affects land surface temperature: Evidence from the heavily urbanized Beijing metropolitan area, China。Landscape Ecology,27(6),887-898。  new window
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學位論文
1.潘豐家(2015)。結合衛星資料與建物資訊解析台北市空間發展與都市熱島效應之鏈結(碩士論文)。國立中央大學,桃園。  延伸查詢new window
2.嚴綾(2012)。應用衛星資料探討大台北地區都市熱島效應之時空分布(碩士論文)。國立中央大學。  延伸查詢new window
3.Shih, W. Y.(2010)。Optimising Urban Green Networks in Taipei City: Linking Ecological and Social Functions in Urban Green Space Systems(博士論文)。University of Manchester。  new window
圖書
1.Benedict, M. A.、McMahon, E. T.(2012)。Green Infrastructure: Linking Landscapes and Communities。Washington:Island Press。  new window
2.Congedo, L.(2016)。Semi-Automatic Classification Plugin Documentation。Rome:Sapiena University。  new window
3.Intergovernmental Panel on Climate Change(2014)。Climate Change 2014- Impacts, Adaptation, and Vulnerability: Part A: Global and Sectoral Aspects: Working Group II Contribution to the IPCC Fifth Assessment Report。Cambridge:Cambridge University Press。  new window
4.Melbourne (Vic.) Council(2011)。Urban Forest Strategy: Making a Great City Greener 2012-2032。Mclbourne:City of Mclbourne。  new window
5.U.S. Geological Survey(2016)。LANDSAT 8 (L8) Data Users Handbook。Sioux Falls:Earth Resorces Observation and Science。  new window
6.World Meteorological Organization、World Health Organization(2015)。Heatwaves and Health: Guidance on Warning-System Development。Geneva:WMO。  new window
其他
1.交通部中央氣象局(2017)。全球平均溫度長期趨勢監測報告,http://www.cwb.gov.tw/V7/climate/climate_info/monitoring/monitoring_7.html。  延伸查詢new window
2.交通部中央氣象局(2017)。106年8月臺灣天氣概述--逐日氣溫、雨量,https://www.cwb.gov.tw/V7/climate/climate_info/monitoring/monitoring_8.html。  延伸查詢new window
3.(2018)。全臺年平均溫度平均改變量,https://tccip.ncdr.nat.gov.tw/v2/future_chart_2.aspx。  延伸查詢new window
4.Hsu, H. H.,Chou, C.,Wu, Y. C.,Lu, M. M.,Chen, C. T.,Chen, Y. M.(2011)。Climate Change in Taiwan: Scientific Report 2011 (Summary),Taipei:National Science Council。  new window
5.Shih, W. Y.(2017)。The impact of urban development patterns on thermal distribution in Taipei,Dubai。  new window
圖書論文
1.溫在弘、陳慈忻(2017)。氣候變遷下的登革熱擴散風險與調適策略。氣候變遷下的國家發展藍圖。臺北:國立臺灣大學出版中心。  延伸查詢new window
2.Bai, Y.、Juang, J-Y.、Kondoh, A.(2011)。Urban warming and urban heat islands in Taipei, Taiwan。Groundwater and Subsurface Environments: Human Impacts in Asian Coastal Cities。Tokyo:Springer。  new window
3.Hebbert, M.、Webb, B.(2012)。Towards a liveable urban climate: Lessons from Stuttgart。Liveable Cities: Urbanising World。The Hague:International Society of City and Regional Planners。  new window
 
 
 
 
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