摘要
基于广州市2009,2000和1990年工业、交通、生活能源统计数据,通过能源清单法估算出广州市对应年份的人为热排放量,再通过在WRF模式中引入2009,2000和1990年的下垫面数据和人为热排放方案,对2005,2012和2017年广州市的3次持续高温过程进行模拟,从而评估不同年代人为热排放水平对广州市极端高温天气的影响.结果表明,模拟的2m气温较为准确,能合理模拟出城市地区的热岛效应,但对极端高温的模拟略有偏低,而引入人为热有助于改善模拟结果.在case2012中,2009,2000和1990年3种人为热排放水平使广州城市下垫面的平均气温分别上升0.53,0.44和0.13℃,热岛强度增强0.43,0.38和0.13℃.3个模拟个例的结果均表明,日间的人为热排放比夜间大,但夜间气温及热岛强度的变化比日间要明显.
In this study,the impacts of anthropogenic heat(AH)emission on the heat wave events in Guangzhou was investigated.First,an AH emission database was built with the energy inventory method in the year of 2009,2000,and 1990 based on energy consumption statistics of industry,transportation and domestic energy in the corresponding year.Then,three heat wave events occurred in 2005,2012 and 2017 in Guangzhou were simulated using weather research and forecasting model(WRF),under different land-use and AH emission conditions(from 2009,2000 and 1990 respectively).The impacts of AH on heat waves in different decades can thus be estimated.The results show that WRF can well replicate the 2 m temperature and urban heat island effects in Guangzhou during the heat wave events.The maximum temperature was originally underestimated without the input of AH.With AH,the estimate of the maximum temperature was improved.Specifically,in the case of simulating 2012 heat wave event,2 m temperature in the urban area increased by 0.53℃,0.44℃and 0.13℃respectively when we superimposed AH conditions in 2009,2000 and 1990.The intensity of urban heat island effects also increased by 0.43℃,0.38℃and 0.13℃respectively.Moreover,simulation results from all the three heat wave cases indicated that the variations of 2 m temperature and unban heat island intensity in night time were more substantial,although the AH emissions were stronger in the day time.
作者
于玲玲
潘蔚娟
肖志祥
王子谦
麦健华
YU Ling-ling;PAN Wei-juan;XIAO Zhi-xiang;WANG Zi-qian;MAI Jian-hua(Guangdong Meteorological Observatory,Guangzhou 510080,China;Guangzhou Climate Center,Guangzhou 511430,China;Guangxi Institute of Meteorological Sciences,Nanning 530022,China;School of Atmospheric Sciences,Sun Yat-sen University,Guangzhou 510275,China;Southern Marine Science and Engineering Guangdong Laboratory(Zhuhai),Zhuhai 519082,China;Zhongshan Meteorological Service,Zhongshan 528400,China)
出处
《中国环境科学》
EI
CAS
CSCD
北大核心
2020年第9期3721-3730,共10页
China Environmental Science
基金
广州市科技计划项目(201704020194)
广东省科技计划项目(2017ZC0403)
广东省气象局科学技术研究项目(GRMC2019M27)。
关键词
数值模拟
人为热
高温天气
城市热岛
numerical simulation
anthropogenic heat
heat wave event
urban heat island