車越

車越

車越,男,江蘇鎮江人,1977年3月出生,教授,博士生導師

基本介紹

  • 中文名:車越
  • 國籍中國
  • 籍貫:江蘇鎮江
  • 出生日期:1977年3月
  • 性別:男
  • 職稱:教授
人物經歷,工作經歷,研究方向,主要貢獻,獲獎記錄,

人物經歷

2002.09~2005.07 華東師範大學環境科學系環境科學專業‚博士研究生
1999.09~2002.07 華東師範大學河口海岸學國家重點實驗室自然地理學專業‚碩士研究生
1995.09~1999.07 蘇州城建環保學院(現蘇州科技大學)環境保護系環境工程專業‚本科

工作經歷

2014.12~至今 華東師範大學生態與環境科學學院‚教授
2013.12~2014.12 英國謝菲爾德大學(The University of Sheffield),Visiting Researcher
2008.12~2014.12 華東師範大學環境科學系‚副教授
2005.07~2008.12 華東師範大學環境科學系‚講師

研究方向

環境管理與城市生態方面:
(1)從自然和社會交叉視角,評估人類活動對流域/河網/河流生態系統的影響;
(2)從城市/社區/鄰里等不同尺度,開展生態環境政策與公眾環境行為的研究。

主要貢獻

英文代表性論文:
Zeng, P., Sun, F., Liu, Y., Tian, T., Wu, J., Dong, Q., Peng, S., Che, Y.* The influence of the landscape pattern on the urban land surface temperature varies with the ratio of land components: Insights from 2D/3D building/vegetation metrics, Sustainable Cities and Society, 2022, 78: 103599.
Zhang, R., Sun, F., Shen, Y., Peng, S., Che, Y.* Accessibility of urban park benefits with different spatial coverage: Spatial and social inequity, Applied Geography‚ 2021,135: 102555.
Zeng, P., Sun, F., Liu, Y., Feng, H., Zhang, R., Che, Y.* Changes of potential evapotranspiration and its sensitivity across China under future climate scenarios, Atmospheric Research, 2021,261: 105763.
Yang, M., Yang, K.*, Che, Y.,* Lu, S., Sun, F., Chen, Y., Li, M. Resolving transboundary water conflicts: Evolutionary analysis using an improved GMCR model, Water Resources Management, 2021, 35: 3321–3338.
Liu, Y., Zhang, H., Zeng, P., Wang, Y., Li, G., Sun, F., Che, Y.* Linking hydraulic geometry, land use and stream water quality in the Taihu Basin, China, Environmental Monitoring and Assessment‚ 2021,193: 484.
Li, G., Sun, F., Fu, B., Deng, L., Yang, K.*, Liu, Y., Che, Y.* How to promote the public participation in eco-compensation in transboundary river basins: A case from Planned Behavior perspective, Journal of Cleaner Production, 2021, 313: 127911.
Feng, H., Sun, F.*, Liu, Y., Zeng, P., Deng, L., Che, Y.* Mapping multiple water pollutants across China using the grey water footprint, Science of the Total Environment, 2021, 785: 147255.
Sun, F., Zhao, H., Deng, L., Liu, Y., Cheng, R., Che, Y.* Characterizing the warming effect of increasing temperatures on land surface temperature change, heat pattern dynamics and thermal sensitivity, Sustainable Cities and Society, 2021, 70: 102904.
Wei, H.W., Hassan, M., Che, Y., Peng, Q.K., Wang, Q., Su, Y.L., Xie, B. Spatio-temporal characteristics and source apportionment of water pollutants in upper reaches of Maotiao River, southwest of China, from 2003 to 2015, Journal of Environmental Informatics, 2021, 37(2): 93-106.
Zeng, P., Sun, F.*, Liu, Y., Wang, Y., Li, G., Che, Y.* Mapping future droughts under global warming across China: A combined multi-timescale meteorological drought index and SOM-Kmeans approach, Weather and Climate Extremes, 2021, 31: 100304.
Tian T., Sun, L., Peng, S., Sun, F.*, Che, Y.* Understanding the process from perception to cultural ecosystem services assessment by comparing valuation methods, Urban Forestry & Urban Greening, 2021, 57: 126945.
Sun, F., Mejia, A., Sharma, S., Zeng, P., Che, Y.* Evaluating the credibility of downscaling: Integrating scale, trend, extreme, and climate event into a diagnostic framework, Journal of Applied Meteorology and Climatology, 2020, 59(9): 1453-1467.
Deng, L., Cai, L., Sun, F., Li, G., Che, Y.* Public attitudes towards microplastics: perceptions, behaviors and policy implications, Resources, Conservation & Recycling, 2020, 163: 105096.
Zeng, P., Sun, F., Liu, Y., Che, Y. Future river basin health assessment through reliability-resilience-vulnerability: Thresholds of multiple dryness conditions, Science of the Total Environment, 2020, 741:140395.
Sun, F., Liu, M., Wang, Y.*, Wang, H., Che, Y.* The effects of 3D architectural patterns on the urban surface temperature at a neighborhood scale: Relative contributions and marginal effects, Journal of Cleaner Production, 2020, 258:120706.
Zou, C., Tai, J., Chen, L., Che, Y.* An environmental justice assessment of the waste treatment facilities in Shanghai: Incorporating counterfactual decomposition into the Hedonic Price Model, Sustainability, 2020, 12: 3325.
Arantes, V., Zou, C., Che, Y. Coping with waste: A government-NGO collaborative governance approach in Shanghai, Journal of Environmental Management, 2020, 259: 109653.
Pan, Y., Che, Y., Marshall, S., Maltby. L. Heterogeneity in ecosystem service values: Linking public perceptions and environmental policies, Sustainability, 2020, 12: 1217.
Zou, C., Tai, J., Wang, Y., Sun, F., Che, Y.* A factor analysis of residents’ performance in municipal solid waste source-separated collection: A case study of pilot cities in China,Journal of the Air & Waste Management Association, 2019, 69(8):918-933.
Sun, F.,Mejia, A., Che, Y.* Disentangling the contributions of climate and basin characteristics to water yield across spatial and temporal scales in the Yangtze River Basin: A combined hydrological model and boosted regression approach, Water Resources Management, 2019, 33(10): 3449-3468.
Sun, F., Mejia, A., Zeng, P., Che, Y.* Projecting meteorological, hydrological and agricultural droughts for the Yangtze River basin, Science of the Total Environment, 2019, 696: 134076.
Ding, L., Ren, X., Gu, R., Che, Y.* Implementation of the sponge city development plan in China: An evaluation of public willingness to pay for the life-cycle maintenance of its facilities, Cities, 2019, 93: 13-30.
Fu, B., Kurisu, K., Hanaki, K., Che, Y.* Influential factors of public intention to improve the air quality in China, Journal of Cleaner Production, 2019, 209: 595-607.
Sun, F., Xiang, J., Tao, Y., Tong, C., Che, Y.* Mapping the social values for ecosystem services in urban green spaces: Integrating a visitor-employed photography method into SolVES, Urban Forestry & Urban Greening, 2019, 38: 105-113.
Shen, Y., Sun, F., Che, Y.* Public green spaces and human wellbeing: Mapping the spatial inequity and mismatching status of public green space in the Central City of Shanghai,Urban Forestry & Urban Greening, 2017, 27: 59-68.
Fu, B., Wu, M., Che, Y.*, Yang, K. Effects of land-use changes on city-level net carbon emissions based on a coupled model, Carbon Management, 2017, 8(3): 245-262.
Sun‚ F.‚ Kuang, W.‚ Xiang, W.,Che‚ Y.* Mapping water vulnerability of the Yangtze River Basin: 1994-2013‚ Environmental Management‚ 2016, 58(5):857-872.
Ren, X., Yang, K., Che, Y., Wang, M., Zhou, L., Chen, L. Spatial and temporal assessment of the initial pattern of phytoplankton population in a newly built coastal reservoir, Frontiers of Earth Science, 2016, 10(3): 546-559.
Ren‚ X.‚ Che, Y.*, Yang, K., Tao, Y. Risk perception and public acceptance toward a highly protested Waste-to-Energy facility‚ Waste Management, 2016, 48: 528-539.
Zhu‚ H.‚ Ren, X., Jin‚ Y., Yang, K.‚ Che‚ Y.* Multilevel analysis of a riverscape under rapid urbanization in the Yangtze Delta Plain, China: 1965-2006‚ Environmental Monitoring and Assessment‚ 2015‚ 187(11): 711.
Fu‚ B.‚ Wu, M., Che‚ Y.*‚ Wang‚ M.‚ Huang‚ Y., Bai, Y. The strategy of a low-carbon economy based on the STIRPAT and SD models‚ Acta Ecologica Sinica‚ 2015, 35: 76-82.
Wu‚ M.‚ Ren, X.‚ Che‚ Y.*, Yang‚ K. A coupled SD and CLUE-S model for exploring the impact of land use change on ecosystem service value: a case study in Baoshan district, Shanghai, China‚ Environmental Management‚ 2015‚56(2): 402-419.
Wu‚ J.‚ Zhang, W., Xu‚ J.‚ Che‚ Y.* A quantitative analysis of municipal solid waste disposal charges in China‚ Environmental Monitoring and Assessment‚ 2015‚ 187(3):60.
Che‚ Y.‚ Li, W.‚ Shang‚ Z., Liu, C., Yang‚ K. Residential preferences for river network improvement: an exploration of choice experiments in Zhujiajiao, Shanghai, China‚Environmental Management‚ 2014‚54(3):517-530.
Che‚ Y.‚ Yang‚ K.‚ Jin‚ Y.‚ Shang‚ Z.‚ Tai‚ J.‚ Zhang, W. Conflicts and risk management of the Laogang Landfill in a developing world city, Shanghai‚ Waste Management‚ 2014‚34:239-241.
Che‚ Y.‚ Yang‚ K.‚ Jin‚ Y.‚ Zhang, W., Shang‚ Z.‚ Tai‚ J. Residents’ concerns and attitudes toward a municipal solid waste landfill: integrating a questionnaire survey and GIS techniques‚ Environmental Monitoring and Assessment‚ 2013‚185:10001-10013.
LÜ‚ Y.P.‚ Yang‚ K.‚Che‚ Y.‚ Shang, Z.Y., Zhu, H.F., Jian, Y. Cost-effectiveness-based multi-criteria optimization for sustainable rainwater utilization: A case study in Shanghai,Urban Water Journal, 2013‚10(2):127-143.
Yang‚ K.‚ LÜ‚ Y.P.‚ Shang, Z.Y., Che‚ Y. Stormwater Pollution and Management Initiatives in Shanghai, gwf-Wasser/Abwasser, 2013‚ International Issue:84-88.
Che‚ Y.‚ Yang‚ K.‚ Wu‚ E.‚ Shang‚ Z.‚ Xiang‚ W. Assessing the health of an urban stream: a case study of Suzhou Creek in Shanghai‚ China‚ Environmental Monitoring and Assessment‚ 2012‚184:7425-7438.
Che‚ Y.‚ Yang‚ K.‚ Chen‚ T.‚ Xu‚ Q. Assessing a riverfront rehabilitation project using the comprehensive index of public accessibility‚ Ecological Engineering‚ 2012‚40:80-87.
Zhang, W., Che‚ Y.*‚ Yang‚ K.‚ Ren, X., Tai, J. Public Opinion about the Source Separation of Municipal Solid Waste in Shanghai, China, Waste Management & Research‚ 2012‚30(12):1261-1271.
Shang, Z., Che, Y.*, Yang, K., Jiang, Y. Assessing local communities’ willingness to pay for river network protection: a contingent valuation study of Shanghai, China,International Journal of Environmental Research and Public Health, 2012,9:3866-3882.
LÜ‚ Y.‚ Yang‚K.‚ Che‚ Y.‚ Xu‚ Q.‚ Tai‚ J.‚ Jian‚ Y. Industrial solid waste flow analysis of eco-industrial parks: Implications for sustainable waste management‚ Frontiers of Environmental Science & Engineering‚ 2012,6(4):575-587.
Wang‚ M.‚ Che‚ Y.*‚ Yang‚K.‚ Wang‚ M.‚ Xiong‚ L.‚ Huang‚ Y. A local-scale low-carbon plan based on the STIRPAT model and the scenario method: the case of Minhang District‚ Shanghai‚ China‚ Energy Policy‚ 2011‚39(11):6981-6990.
Tai‚ J.‚ Zhang‚W.‚ Che‚ Y.*‚ Feng‚ D. Municipal solid waste source-separated collection in China: A comparative analysis‚ Waste Management‚2011‚31(8):1673-1682.
*: Corresponding author.
中文代表性論文:
車越,鄒燦.城市生活垃圾全過程管理中的環境正義問題,南京林業大學學報(人文社會科學版),2022,(1):18-27.
張舒,秦紅,黃慧慧,車越,石磊.論長三角一體化示範區河湖健康評估——以上海青浦區“藍色珠鏈”為例,中國水利,2022,(2):36-39.
董芊芊,劉垚燚,曾鵬,孫鳳雲,張然,田恬,車越.城市三維景觀格局特徵與社會環境因子的互動影響:基於增強回歸樹,套用生態學報,2021,32(9):3311-3320.
孫鳳雲,鄧靈稚,劉垚燚,孟醒,董芊芊,車越*.基於增強回歸樹與區域增溫敏感性指數的城市升溫效應空間分異研究,生態學報,2021,41(15):5929-5939.
高文麗,沈芳,車越.基於衛星觀測及水質動力模型的感潮河流水質監測分析,環境工程學報,2021,15(8):2821-2830.
劉垚燚,曾鵬,張然,孫鳳雲,車越.基於GEE和BRT的1984—2019年長三角生態綠色一體化發展示範區植被覆蓋度變化,套用生態學報,2021,32(3):1033-1044.
車越,丁磊,吳阿娜,湯琳,楊凱.城市合流制排水系統雨天溢流對蘇州河水質的影響—基於線上監測數據的Sen趨勢分析.In:成玉寧,楊銳主編:數字景觀—中國第五屆數字景觀國際論壇.南京:東南大學出版社,2021.36-43.
胡波,朱慧峰,季海萍,朱宜平,陳蓓蓓,車越.跨區域、跨部門的金澤水源水質水量監測與預警業務化平台,淨水技術,2020,39(12):48-53.
張新雨,向婧怡,車越.基於地名的上海地域性水文化特徵及建設途徑,南京林業大學學報(人文社會科學版),2020,(6):13-21.
劉垚燚,田恬,曾鵬,張新雨,車越*.基於Google Earth Engine 平台的1984—2018 年太湖水域變化特徵,套用生態學報,2020,31(9):3163-3172.
劉垚燚,汪昱昆,曾鵬,王話翔,車越*.基於改進熵權物元模型的河網尺度物理生境評價—以太湖流域為例,長江流域資源與環境,2020,29(10):2230-2239.
曾鵬,汪昱昆,劉垚燚,王話翔,陳氏權,車越*.基於河段尺度的太湖流域城市河流生境評價,套用生態學報,2020,31(2):581-589.
汪昱昆,程銳輝,曾鵬,車越*.上海地區河網水質空間分異及對河岸帶土地利用的回響,生態與農村環境學報,2019,35(7):925-932.
程銳輝,范群傑,汪昱昆,劉垚燚,車越*.基於PSR模型的上海地區河網脆弱性探討,華東師範大學學報(自然科學版),2019,(3):144-154.
程丹陽,李夢婷,丁楊洋,車越*.基於生態系統服務社會價值的城市濱水空間評估—以黃浦江為例,上海城市規劃,2018,(5):125-130.
車越,楊凱.發揮河網調蓄功能 消減城市雨洪災害—基於傳統生態智慧的思考,生態學報,2016,36(16):4946-4948.
王玉,傅碧天,呂永鵬,楊凱,車越*.基於SolVES模型的生態系統服務社會價值評估-以吳淞炮台灣濕地森林公園為例,套用生態學報,2016,27(6),1767-1774.
田多松,傅碧天,呂永鵬,楊凱,車越*.基於SD和CLUE-S模型的區域土地利用變化對土壤有機碳儲量影響研究,長江流域資源與環境‚2016‚25(4):613-620.
陶贇,傅碧天,車越*.基於遊憩行為偏好的城市公園環境設施空間最佳化,城市環境與城市生態‚2016‚29(2):21-26.
李旭,車越,曾寒梅.城市形態地域特徵識別與生成原則探析—以成渝兩地城市形態歷史演變為例,城市發展研究,2015,22(5):24-30.
胡蘭心,李雯,曹敏,車越*,楊凱.上海市蘇州河景觀公眾偏好研究‚環境科學與技術,2014,37(6N):412-428.
金妍,車越*,楊凱.基於最小累積阻力模型的江南水鄉河網分區保護研究,長江流域資源與環境‚2013‚22(1):8-14.
吳蒙,車越*,楊凱.基於生態系統服務價值的城市土地空間分區最佳化研究—以上海市寶山區為例,資源科學‚2013‚35(12):2390-2396.
徐佳萱,袁銘皎,壽凱莉,陳柯莉,車越*.上海寶山快速城市化進程對河網演變影響分析‚環境科學與技術,2013,36(4):79-83.
李雯,簡耘,車越*,楊凱.上海河岸帶公眾偏好及生態系統服務價值評估,中國人口資源與環境,2012,22(6):147-151.
曹敏,吳阿娜,車越*,陳婷.RBPs在蘇州河水系生境評價中的套用,華東師範大學學報(自然科學版),2012,(3):130-137.
車越‚吳阿娜‚曹敏‚楊凱.河流健康評價的時空特徵與參照基線探討‚長江流域資源與環境‚2011‚20(6):761-767.
王銘偉,徐啟新‚車越‚楊凱.澱山湖藍藻水華暴發的氣象水文因素探討‚華東師範大學學報(自然科學版),2011,(1):21-31.
劉辰,金妍,楊凱‚車越.基於河網水系的江南水鄉風貌和文化保護途徑—以上海朱家角鎮為例‚世界地理研究,2011,20(2):169-176.
呂永鵬‚車越*‚邰俊‚吳阿娜‚黃小芳.貴州省黔東南苗族侗族自治州生態環境規劃研究—兼談西南少數民族山區資源、環境與發展的互動與協調‚山地學報‚2010‚28(2):191-198.
呂永鵬,徐啟新,楊凱,車越.城市河流生態修復的環境價值及實現機制,水利學報,2010,41(3):278-285.
吳阿娜,張錦平,湯琳,車越*.上海地區河道整治規劃的特徵識別及有效性評估,中國給水排水,2010,26(6):11-15.
汪冬冬,楊凱,車越,呂永鵬.河段尺度的上海蘇州河河岸帶綜合評價,生態學報,2010,30(13):3501-3510.
車越,吳阿娜,趙軍,楊凱.基於不同利益相關方認知的水源地生態補償探討—以上海市水源地和用水區居民問卷調查為例,自然資源學報,2009,24(9):1829-1836.
呂永鵬‚車越*‚趙軍‚張明成‚萬雲峰‚呂世會.貴州省黔東南苗族侗族自治州水資源可持續利用策略,自然資源學報,2009,24(6):1004-1013.
呂永鵬,楊凱,車越,林逢春.生態型城區工業固體廢棄物流向及驅動機制—以上海市閔行區為例,資源科學,2009,31(1):157-163.
張宏偉,吳健‚車越*,李巍,童春富.長江口青草沙水源地開發的生態環境影響‚華東師範大學學報(自然科學版),2009,(3):38-47.
吳阿娜‚車越‚楊凱.基於內容分析法的河流健康內涵及表征,長江流域資源與環境,2008,17(6): 938-942.
呂永鵬‚邰俊‚車越*,吳冰思,夏蘇湘.黔東南州可持續發展的度量研究—基於BEF與TEF的綜合測度,山地學報,2007,25(6):698-705.
車越,吳阿娜‚楊凱.區域發展與水源保護的協調方法研究—以中國東部平原河網地區為例.中國軟科學,2007,(4):94-93.
車越‚吳阿娜‚楊凱.中國東部平原河網地區水源地環境管理的理論框架‚華東師範大學學報(自然科學版),2007,(2):111-121.
曾小瑱,車越*,吳阿娜.3種河流健康綜合性評價方法的比較,中國給水排水,2007,23(4):92-96.
吳阿娜,楊凱,車越,袁雯.河流健康評價在城市河流管理中的套用,中國環境科學,2006,26(3):359-363.
程江,吳阿娜,車越,徐啟新.平原河網地區水體黑臭預測評價關鍵指標研究,中國給水排水,2006,22(9):18-22.
車越,張明成,楊凱.基於SD模型的崇明島水資源承載力評價與預測,華東師範大學學報(自然科學版),2006,(6):67-74.
車越,楊凱,吳阿娜,袁雯.上海城市水源戰略與水源地保護:格局、問題與展望,自然資源學報,2005,20(5):651-659.
車越,楊凱,范群傑,張勇.黃浦江上游水源地水環境演變規律及其影響因素研究,自然資源學報,2005,20(2):163-171.
吳阿娜,車越,楊凱,趙軍.城市內河綜合整治效益的後評估方法及實證,水利學報,2005,36(9):1088-1093.
吳阿娜,楊凱,車越,袁雯.河流健康狀況的表征及其評價,水科學進展,2005,16(4):602-608.
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圖書及出版物:
趙宏宇, 車越 著. 傳統村落生態治水智慧. 北京: 中國建築工業出版社. 2021. (國家出版基金項目、“十三五”國家重點圖書出版規劃項目)
Che, Y., Sun, F., Lv, Y. China: Developing a Sponge City - Innovative practices in Shanghai. In: the joint report City-to-City partnerships and South-South and triangular cooperation on sustainable urban development. Launched by The United Nations Office for South-South Cooperation (UNOSSC) in partnership with the Inter-American Institute for Global Change Research (IAI). 2020.
車越, 周天舒, 何國富. 崇明水環境保護. In: 孫斌棟主編:崇明世界級生態島綠皮書2020.北京:科學出版社. 2020.54-83.
Che, Y., Shang, Z. Water pricing in China: impact of socioeconomic development. In: Global issues in water policy 9: water pricing experiences and innovations. Edited by Dinar, A., Pochat, V. and Albiac-Murillo, J. Springer International Publishing Switzerland. 2015.

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