首页> 外文期刊>Acta Meteorologica Sinica >Numerical Study of Winter Urban Boundary Layer Structure over Beijing Area
【24h】

Numerical Study of Winter Urban Boundary Layer Structure over Beijing Area

机译:北京地区冬季城市边界层结构的数值研究

获取原文
获取原文并翻译 | 示例
           

摘要

Based on the successful simulation of a typical winter urban boundary layer (UBL) process over Beijing area during the Beijing City Air Pollution Experiment (BECAPEX) in 2001 by the use of MM5 coupled with urban canopy parameterization, a series of simulation experiments are performed to investigate the effects of urban influence, surrounding terrain, and different extent of urbanization on urban boundary layer structures over Beijing area. The results of factor separation experiments of urban influence indicate that the total effect of urban influence, which is the synthetic effect of urban infrastructure on thermal and dynamic structures of atmosphere, is responsible for the formation of main UBL features over Beijing area. Meanwhile, the relative importance of thermal and mechanical factors of urban infrastructure and interaction between thermal and mechanical factors for the formation and evolution of UBL over the Beijing area are also explored. The results show that, during nighttime, mechanical factors are responsible for main characteristics of nocturnal urban boundary layer such as elevated inversion layer over downtown area, smaller wind speed and stronger turbulent kinetic energy (TKE) and its behavior with peak at the top of canopy layer, whereas in the daytime, thermal factors play dominant role in the structure of UBL, such as the intensity of mixed layer and temperature in the lower atmosphere in urban area. The interaction between mechanical and thermal factors plays an important role in the formation and evolution of UBL, but its specific characteristics of mechanisms are complex. The results of surrounding terrain experiment show that terrain surrounding Beijing area not only determines the characteristic of prevailing airflow over Beijing area, but also has obvious effect on thermal structure of UBL, such as the distribution of elevated inversion and urban heat island, and makes them with special localization feature. The results of different extent urbanization experiment show that with the increase in the density and height of buildings in Beijing area, wind speed would decrease and TKE increase. Meanwhile, the bottom of nocturnal elevated inversion would increase in downtown area, and the intensity of urban heat island would strengthen, and even probably is obvious in the daytime.
机译:基于2001年使用MM5结合城市雨棚参数化对北京地区典型的冬季城市边界层(UBL)过程进行成功的模拟,并进行了一系列的模拟实验,研究城市影响,周围地形和不同程度的城市化对北京地区城市边界层结构的影响。城市影响因素分离实验的结果表明,城市影响的总影响是城市基础设施对大气热力和动力结构的综合影响,是北京地区UBL主要特征的形成。同时,还探讨了城市基础设施热力和机械因素的相对重要性以及热力和机械因素之间的相互作用对北京地区UBL形成和演化的影响。结果表明,在夜间,机械因素是夜间城市边界层的主要特征,例如市区上空的反演层升高,较小的风速和更强的湍动能(TKE)及其在顶篷顶峰处的行为。在白天,热因素在UBL的结构中起着主导作用,例如城市低层大气的混合层强度和温度。机械因素和热因素之间的相互作用在UBL的形成和演化中起着重要作用,但其具体机​​理却很复杂。周边地形试验结果表明,北京周边地区的地形不仅决定了北京地区盛行的气流特征,而且对UBL的热力结构,如高架反演分布和城市热岛分布有明显的影响,使之成为可能。具有特殊的本地化功能。不同程度的城市化实验结果表明,随着北京地区建筑物密度和高度的增加,风速会降低,TKE会增加。同时,夜间夜间反演的底部在市区会增加,城市热岛的强度会增强,甚至在白天很明显。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号