RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN >> 2016, Vol. 25 >> Issue (03): 462-469.doi: 10.11870/cjlyzyyhj201603013
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XIE Qi-jiao1,2
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[1] LUBER G, MCGEEHIN M. Climate change and extreme heat events[J]. American Journal of Preventive Medicine, 2008, 35(5):429-435. [2] ZHENG B J, MYINT S W, FAN C. Spatial configuration of anthropogenic land cover impacts on urban warming[J]. Landscape and Urban Planning, 2014, 130:104-111. [3] KOLOKOTRONI M, REN X, DAVIES M, et al. London's urban heat island:Impact on current and future energy consumption in office buildings[J]. Energy and Buildings, 2012, 47:302-311. [4] SANTAMOURIS M, KOLOKOTSA D. On the impact of urban overheating and extreme climatic conditions on housing, energy, comfort and environmental quality of vulnerable population in Europe[J]. Energy and Buildings, 2015, 98:125-133. [5] 曹进, 曾光明, 石林, 等. 基于RS和GIS的长沙城市热岛效应与TSP污染耦合关系[J]. 生态环境, 2007, 16(1):12-17.[CAO J, ZENG G M, SHI L, et al. Coupling relationship between the urban Heat-Island and the total suspended particles pollution in Changsha city based on remote sensing and GIS[J]. Ecology and Environment, 2007, 16(1):12-17.] [6] SHI C, ROTH M, ZHANG H, et al. Impacts of urbanization on long-term fog variation in Anhui Province, China[J]. Atmospheric Environment, 2008, 42(36):8484-8492. [7] POUMADÈRE M, MAYS C, LEMER S L, et al. The 2003 heat wave in France:Dangerous climate change here and now[J]. Risk Analysis, 2005, 25(6):1483-1494. [8] 吴凡, 景元书, 李雪源, 等. 南京地区高温热浪对心脑血管疾病日死亡人数的影响[J]. 环境卫生学杂志, 2013, 3(4):288-292.[WU F, JING Y S, LI X Y, et al. Effect of heat wave on the death-toll of cardiovascular diseases in Nanjing Area[J]. Journal of Environmental Hygiene, 2013, 3(4):288-292.] [9] LIN Y K, CHANG C K, LI Y C, et al. High-temperature indices associated with mortality and outpatient visits:Characterizing the association with elevated temperature[J]. Science of the Total Environment, 2012, 427-428:41-49. [10] 谢苗苗, 王仰麟, 付梅臣. 城市地表温度热岛影响因素研究进展[J]. 地理科学进展, 2011, 30(1):35-41.[XIE M M, WANG Y L, FU M C. An overview and perspective about causative factors of surface urban heat island effects[J]. Progress in Geography, 2011, 30(1):35-41.] [11] MANEA D L, MANEA E, ROBESCU D N. Study on greenhouse gas emissions from wastewater treatment plants[J]. Environmental Engineering and Management Journal, 2013, 12(1):59-63. [12] 刘新, 刘寿东, 赵小艳, 等. 南京城市化进程与热岛效应的初步研究[J]. 长江流域资源与环境, 2013, 22(12):1543-1549.[LIU X, LIU S D, ZHAO X Y, et al. A preliminary research of urbanization process and heat island effect in Nanjing[J]. Resources and Environment in the Yangtze Basin, 2013, 22(12):1543-1549.] [13] 王频, 孟庆林. 城市人为热及其影响城市热环境的研究综述[J]. 建筑科学, 2013, 29(8):99-106.[WANG P, MENG Q L. Review on research of anthropogenic heat emission and its influence on urban thermal environment[J]. Building Science, 2013, 29(8):99-106.] [14] FAN H L, SAILOR D J. Modeling the impacts of anthropogenic heating on the Urban climate of Philadelphia:a comparison of implementations in two PBL schemes[J]. Atmospheric Environment, 2005, 39(1):73-84. [15] FREY C M, PARLOW E. Flux measurements in Cairo. Part 2:On the determination of the spatial radiation and energy balance using ASTER satellite data[J]. Remote Sensing, 2012, 4(9):2635-2660. [16] MOHAN M, KANDYA A. Impact of urbanization and land-use/land-cover change on diurnal temperature range:A case study of tropical urban airshed of India using remote sensing data[J]. Science of the Total Environment, 2015, 506-507:453-465. [17] 杨英宝, 苏伟忠, 江南, 等. 南京市热岛效应变化时空特征及其与土地利用变化的关系[J]. 地理研究, 2007, 26(5):877-886.[YANG Y B, SU W Z, JIANG N, et al. Spatial-temporal characteristics of urban heat island effect change of Nanjing city and its relation with land use change[J]. Geographical Research, 2007, 26(5):877-886.] [18] CIVCO D L, HURD J D, WILSON E H, et al. Quantifying and describing urbanizing landscapes in the northeast United States[J]. Photogrammetric Engineering and Remote Sensing, 2002, 68(10):1083-1090. [19] YUAN F, BAUER M E. Comparison of impervious surface area and normalized difference vegetation index as indicators of surface urban heat island effects in Landsat imagery[J]. Remote Sensing of Environment, 2007, 106(3):375-386. [20] 林云杉, 徐涵秋, 周榕. 城市不透水面及其与城市热岛的关系研究-以泉州市区为例[J]. 遥感技术与应用, 2007, 22(1):14-19.[LIN Y S, XU H Q, ZHOU R. A study on urban impervious surface area and its relation with urban heat island:Quanzhou City,China[J]. Remote Sensing Technology and Application, 2007, 22(1):14-19.] [21] ESSA W, VAN DER KWAST J, VERBEIREN B, et al. Downscaling of thermal images over urban areas using the land surface temperature-impervious percentage relationship[J]. International Journal of Applied Earth Observation and Geoinformation, 2013, 23:95-108. [22] 魏锦宏, 谭春阳, 王勇山. 中心城区不透水表面与城市热岛效应关系研究[J]. 测绘与空间地理信息, 2014, 37(4):69-72.[WEI J H, TAN C Y, WANG Y S. Study on the relationship between heat island effect and impervious surface area in central city[J]. Geomatics & Spatial Information Technology, 2014, 37(4):69-72.] [23] TANG Z, SHI C B, BI K X. Impacts of land cover change and socioeconomic development on ecosystem service values[J]. Environmental Engineering and Management Journal, 2014, 13(10):2697-2705. [24] XIE Q J, ZHOU Z X. Impact of urbanization on urban heat island effect based on tm imagery in Wuhan, China[J]. Environmental Engineering and Management Journal, 2015, 14(3):647-655. [25] CHEN X L, ZHAO H M, LI P X, et al. Remote sensing image-based analysis of the relationship between urban heat island and land use/cover changes[J]. Remote Sensing of Environment, 2006, 104(2):133-146. [26] ZHANG Y S, ODEH I O A, HAN C F. Bi-temporal characterization of land surface temperature in relation to impervious surface area, NDVI and NDBI, using a sub-pixel image analysis[J]. International Journal of Applied Earth Observation and Geoinformation, 2009, 11(4):256-264. [27] SHUDO H, SUGIYAMA J, YOKOO N, et al. A study on temperature distribution influenced by various land uses[J]. Energy and Buildings, 1997, 26(2):199-205. [28] LO C P, QUATTROCHI D A, LUVALL J C. Application of high-resolution thermal infrared remote sensing and GIS to assess the urban heat island effect[J]. International Journal of Remote Sensing, 1997, 18(2):287-304. [29] QIN Z, KARNIELI A, BERLINER P. A Mono-window algorithm for retrieving land surface temperature from Landsat tm data and its application to the Israel-Egypt border region[J]. International Journal of Remote Sensing, 2001, 22(18):3719-3746. [30] Raynolds M K, Comiso J C, Walker D A, et al. Relationship between satellite-derived land surface temperatures, arctic vegetation types, and NDVI[J]. Remote Sensing of Environment, 2008, 112(4):1884-1894. [31] 李东海, 艾彬, 黎夏. 基于遥感和GIS的城市水体缓解热岛效应的研究——以东莞市为例[J]. 热带地理, 2008, 28(5):414-418.[LI D H, AI B, LI X. Urban Water body alleviating heat island effect based on RS and GIS:A case study of Dongguan City[J]. Tropical geography, 2008, 28(5):414-418.] [32] NONOMURA A, KITAHARA M, MASUDA T. Impact of land use and land cover changes on the ambient temperature in a middle scale city, Takamatsu, in Southwest Japan[J]. Journal of Environmental Management, 2009, 90(11):3297-3304. [33] 李成范, 刘岚, 周廷刚, 等. 基于定量遥感技术的重庆市热岛效应[J]. 长江流域资源与环境, 2009, 18(1):60-65.[LI C F, LIU L, ZHOU T G, et al. Investigation on urban heat island effect of Chongqing City based on quantitative remote sensing technique[J]. Resources and Environment in the Yangtze Basin, 2009, 18(1):60-65.] [34] 王文娟, 邓荣鑫. 城市绿地对城市热岛缓解效应研究[J]. 地理空间信息, 2014, 12(4):52-54.[WANG W J, DENG R X. Alleviative effects of urban green space on urban heat island[J]. Geospatial Information, 2014, 12(4):52-54.] [35] 刘艳红, 郭晋平. 基于植被指数的太原市绿地景观格局及其热环境效应[J]. 地理科学进展, 2009, 28(5):798-804.[LIU Y H, GUO J P. The research of NDVI-based urban green space landscape pattern and thermal environment[J]. Progress in Geography, 2009, 28(5):798-804.] [36] WENG Q H, LIU H, LIANG B Q, et al. The spatial variations of urban land surface temperatures:Pertinent factors, zoning effect, and seasonal variability[J]. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 2008, 1(2):154-166. [37] 胡华浪, 陈云浩, 宫阿都. 城市热岛的遥感研究进展[J]. 国土资源遥感, 2005(3):5-9, 13.[HU H L, CHEN Y H, GONG A D. Advances in the application of remotely sensed data to the study of urban heat island[J]. Remote Sensing for Land & Resources, 2005(3):5-9, 13.] [38] 杨英宝, 苏伟忠, 江南. 基于遥感的城市热岛效应研究[J]. 地理与地理信息科学, 2006, 22(5):36-40.[YANG Y B, SU W Z, JIANG N. Application of remote sensing to study urban heat island effect[J]. Geography and Geo-Information Science, 2006, 22(5):36-40.] [39] 肖荣波, 欧阳志云, 李伟峰, 等. 城市热岛时空特征及其影响因素[J]. 气象科学, 2007, 27(2):230-236.[XIAO R B, OUYANG Z Y, LI W F, et al. Spatial-temporal distribution and causes of urban heat islands[J]. Scientia Meteorologica Sinica, 2007, 27(2):230-236.] [40] DENG C B, WU C S. Examining the impacts of urban biophysical compositions on surface urban heat island:A spectral unmixing and thermal mixing approach[J]. Remote Sensing of Environment, 2013, 131:262-274. [41] VAN DE GRIEND A A, OWE M. On the relationship between thermal emissivity and the normalized difference vegetation index for natural surfaces[J]. International Journal of Remote Sensing, 1993, 14(6):1119-1131. [42] 徐涵秋. 新型Landsat 8卫星影像的反射率和地表温度反演[J]. 地球物理学报, 2015, 58(3):741-747.[XU Q H. Retrieval of the reflectance and land surface temperature of the newly-launched Landsat 8 satellite[J]. Chinese Journal of Geophysics, 2015, 58(3):741-747.] [43] 宋挺, 段峥, 刘军志, 等. 基于Landsat-8数据和劈窗算法的地表温度反演及城市热岛效应研究[J]. 环境监控与预警, 2014, 6(5):4-14.[SONG T, DUAN Z, LIU J Z, et al. Land surface temperature retrieval from landsat-8 data using split-window algorithm and its application on the study of urban heat island effect[J]. Environmental Monitoring and Forewarning, 2014, 6(5):4-14.] [44] RIDD M K. Exploring a V-I-S (vegetation-impervious-surface-soil) model for urban ecosystem analysis through remote sensing:comparative anatomy for cities[J]. International Journal ofRemoteSensing, 1995, 16(12):2165-2185. [45] CARLSON T N. Land use and impervious surface area change by county in Pennsylvania (1985-2000) as interpreted quantitatively by means of satellite imagery[J]. The Open Geography Journal, 2012, 5(1):68-77. |
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