• 网站首页
  • 期刊简介
  • 编委会
  • 投稿须知
  • 绘图要求
  • 期刊订阅
  • 联系我们
  • English

用户登录

  • 作者登录
  • 审稿登录
  • 编辑登录
  • 读者登录

在线期刊

  • 当期目次

  • 过刊浏览

  • Email Alert

  • RSS

  • 文章点击排行

  • 文章下载排行

下载专区

  • 中国科学引文数据库(CSCD)来源期刊列表(2021—2022年度)

  • 2018年中国科技核心期刊目录(自然科学卷)

  • 标点符号用法

  • 《地球环境学报》绘图要求

  • 《地球环境学报》征稿简则

  • 2017年中国科技核心期刊目录(自然科学卷)

  • 2016年中国科技核心期刊目录 (自然科学卷)

  • 国标文献著录格式

友情链接

  • 中国科学院
  • 国家自然科学基金委员会
  • 中华人民共和国科学技术部
  • 中国科学院地球环境研究所
  • 中国科学院地球环境研究所...
引用本文:张云伟,顾兆林,周 典.2016.城市局部气候分区及其参数化条件下风环境模拟[J].地球环境学报,(5):480-486
ZHANG Yunwei, GU Zhaolin, ZHOU Dian.2016.Simulation on urban wind environment based on local climate zones and its parameterization[J].Journal of Earth Environment,(5):480-486
【打印本页】   【下载PDF全文】   【查看/发表评论】  【下载PDF阅读器】  【关闭】
←前一篇|后一篇→ 过刊浏览    高级检索
本文已被:浏览 7242次   下载 3628次 本文二维码信息
码上扫一扫!
分享到: 微信 更多
字体:加大+|默认|缩小-
城市局部气候分区及其参数化条件下风环境模拟
张云伟,顾兆林,周 典
西安交通大学 人居环境与建筑工程学院,西安 710049
摘要:
在改善城市空气污染和城市热岛研究时,城市风环境研究受到人们关注。利用计算流体力学(CFD)的方法直接对城市尺度风环境进行模拟,将是一种高效的研究方法。本文对局部气候分区及其参数特征进行分析,针对中国城市化建筑高大化、密集化的特点以及多孔介质模型对城市下垫面参数化的要求,提出基于局部气候分区及其参数进行城市风环境数值模拟的方法,并以西安市西咸新区的沣西新城为例进行初步探讨。对沣西新城的模拟结果显示了本文方法的可行性,并对该区域通风廊道建设进行分析。
关键词:  城市风环境  通风廊道  多孔介质模型  城市下垫面
DOI:10.7515/JEE201605004
CSTR:32259.14.JEE201605004
分类号:
基金项目:科技部基础性工作专项(2013FY112500);“十二五”科技支撑计划项目(2012BAJ15B06);国家自然科学基金项目(51508458,11572242);中央高校基本科研业务费项目(xjj2014054)
英文基金项目:Basic Work Project of Ministry of Science and Technology of China?(2013FY112500); 12th Five-year Science and Technology Support Program (2012BAJ15B06); National Natural Science Foundation of China (51508458, 11572242); Basic Research Projects of Central University (xjj2014054)
Simulation on urban wind environment based on local climate zones and its parameterization
ZHANG Yunwei, GU Zhaolin, ZHOU Dian
School of Human Settlements and Civil Engineering, Xi’an Jiaotong University, Xi’an 710049, China
Abstract:
Background, aim, and scope In the face of rapid industrialization and urbanization, China is confronted with growing contradictions among urban population, resources and environment. At present, China has become one of the most polluted regions in the world. The frequency, magnitude, and intensity of haze events have kept growing over China. Reasonable urban wind environment is crucial for mitigating air pollution and urban heat island effects. Materials and methods In study of urban wind environment, the computational fluid dynamic (CFD) method is a high-efficiency method. For urban scale wind environment simulation, physical model of urban canopy layer acts a key role in determining the accuracy of the simulated results. The local climate zones (LCZs) have been validated of advantages in characterization the urban canopy layer, by dividing the urban areas into blocks. Results In the current work, local climate zones and its parameterization are investigated, based on which a new method for urban wind environment simulation is proposed. Eight LCZs with different building types and seven LCZs with different land cover types are defined. Fengxi New Town a new development zone in Xi’an, is divided into about 429 blocks. Each block has the characteristics of one or two LCZs. Characteristics of urbanization in China and the parameterization in porous medium models are considered in this newly proposed method. With this newly proposed method, wind environment in Fengxi New Town is studied. The designing on ventilation corridors in Fengxi New Town is also investigated. Discussion Results show grassland and farmland are the main LCZs in Fengxi New Town, which occupy 52% of the areas. Built areas of middle rise or high rise buildings are less, which only occupies about 10%. The wind environment in Fengxi New Town shows a ventilation corridor along the Weihe River, but no ventilation corridor along the Fenghe River. It seems the development of an ventilation corridor is heavily affected by the wind direction. Conclusions LCZs is a reasonable method to describe the urban canopy layer characteristics. The results show the practicability of the newly proposed method for urban wind simulation. Recommendations and perspectives Although there are two rivers in Fengxi New Town, but ventilation corridor is only developed over the Weihe River. It is recommended that in designing of ventilation corridor, the wind direction should be considered.
Key words:  urban wind environment  ventilation corridor  porous medium  urban underlying surface
您是本站第  访问者
版权所有:《地球环境学报》编辑部 陕ICP备11001760号-3
主办:中国科学院地球环境研究所 地址:西安市雁塔区雁翔路97号 邮政编码:710061
电话:029-62336252 电子邮箱:jee@ieecas.cn
技术支持:北京勤云科技发展有限公司