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Changes in urban-related precipitation in the summer over three city clusters in China

机译:中国三个城市群夏季与城市相关的降水变化

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The impacts of urban surface expansion on the summer precipitations over three city clusters [Beijing-Tianjin-Hebei (BTH), the Yangtze River Delta (YRD), and the Pearl River Delta (PRD)] in eastern China under different monsoonal circulation backgrounds were explored using the nested fifth-generation Penn State/NCAR Mesoscale Model version 3.7 (MM5 V3.7), including the urban-related thermal and dynamical parameters. Ten-year integrations were performed using satellite image data from 2000 and 2010 to represent the urban surface distributions and expansions in China. Changes in the precipitation revealed obvious subregional characteristics, which could be explained by the influences of the vertical wind velocity and moisture flux. With urban-related warming, vertical wind motion generally intensified over urban surface-expanded areas. Meanwhile, the increase in impervious surface areas induced rapid rainwater runoff into drains, and the Bowen ratio increased over urban areas, which further contributed to changes in the local moisture fluxes in these regions. The intensities of the changes in precipitation were inconsistent over the three city clusters, although the changes in vertical motion and local evaporation were similar, which indicates that the changes in precipitation cannot be solely explained by the changes in the local evaporation-related moisture flux. The changes in precipitation were also influenced by the changes in the East Asian summer monsoon (EASM) circulation and the corresponding moisture flux, which are expressed in marked subregional characteristics. Therefore, the influence of urban-related precipitation over the three city clusters in China, for which changes in moisture flux from both the impacted local evaporation and EASM circulation should be considered, varied based on the precipitation changes of only a single city.
机译:在不同的季风环流背景下,中国东部三个城市群[北京-天津-河北(BTH),长江三角洲(YRD)和珠江三角洲(PRD)]的城市地表扩展对夏季降水的影响是使用嵌套的第五代Penn State / NCAR中尺度模型3.7(MM5 V3.7)进行了探索,包括与城市相关的热力和动力参数。使用2000年和2010年的卫星图像数据进行了十年的整合,以代表中国城市地表的分布和扩展。降水的变化揭示了明显的分区特征,这可以用垂直风速和水分通量的影响来解释。随着与城市相关的变暖,垂直风运动通常在城市表面扩展区域上加剧。同时,不透水表面积的增加导致雨水迅速流入排水沟,博文比率在城市地区有所增加,这进一步导致了这些地区局部水分通量的变化。尽管垂直运动和局部蒸发的变化相似,但三个城市群的降水变化强度并不一致,这表明降水的变化不能仅由与蒸发相关的局部水分通量的变化来解释。降水的变化还受到东亚夏季风(EASM)环流变化和相应的水分通量的影响,这些变化以明显的分区域特征表示。因此,应考虑城市相关降水对中国三个城市群的影响,这三个因素影响了局部蒸发和EASM循环的水分通量变化,而变化仅基于单个城市的降水量变化。

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