Asset Details
MbrlCatalogueTitleDetail
Do you wish to reserve the book?
The significant impact of aerosol vertical structure on lower atmosphere stability and its critical role in aerosol–planetary boundary layer (PBL) interactions
by
Han, Wenchao
, Tan, Wangshu
, Li, Chengcai
, Shen, Chuanyang
, Wei, Jing
, Su, Tianning
, Li, Jing
, Li, Zhanqing
, Guo, Jianping
in
Aerosol effects
/ Aerosol vertical distribution
/ Aerosols
/ Air pollution
/ Atmosphere
/ Atmospheric stability
/ Boundary layer stability
/ Boundary layers
/ Distribution
/ Diurnal
/ ENVIRONMENTAL SCIENCES
/ Feedback loops
/ Heating
/ Heating rate
/ Height
/ Lidar
/ Lower atmosphere
/ Meteorological conditions
/ Negative feedback
/ Optical radar
/ Particulate matter
/ Photometers
/ Planetary boundary layer
/ Pollutants
/ Pollution
/ Radiative forcing
/ Radiosondes
/ Remote sensing
/ Stabilizing
/ Structure (Literature)
/ Structures
/ Thermodynamics
/ Topography
/ Vertical distribution
/ Vertical profiles
/ Weather
2020
Hey, we have placed the reservation for you!
By the way, why not check out events that you can attend while you pick your title.
You are currently in the queue to collect this book. You will be notified once it is your turn to collect the book.
Oops! Something went wrong.
Looks like we were not able to place the reservation. Kindly try again later.
Are you sure you want to remove the book from the shelf?
The significant impact of aerosol vertical structure on lower atmosphere stability and its critical role in aerosol–planetary boundary layer (PBL) interactions
by
Han, Wenchao
, Tan, Wangshu
, Li, Chengcai
, Shen, Chuanyang
, Wei, Jing
, Su, Tianning
, Li, Jing
, Li, Zhanqing
, Guo, Jianping
in
Aerosol effects
/ Aerosol vertical distribution
/ Aerosols
/ Air pollution
/ Atmosphere
/ Atmospheric stability
/ Boundary layer stability
/ Boundary layers
/ Distribution
/ Diurnal
/ ENVIRONMENTAL SCIENCES
/ Feedback loops
/ Heating
/ Heating rate
/ Height
/ Lidar
/ Lower atmosphere
/ Meteorological conditions
/ Negative feedback
/ Optical radar
/ Particulate matter
/ Photometers
/ Planetary boundary layer
/ Pollutants
/ Pollution
/ Radiative forcing
/ Radiosondes
/ Remote sensing
/ Stabilizing
/ Structure (Literature)
/ Structures
/ Thermodynamics
/ Topography
/ Vertical distribution
/ Vertical profiles
/ Weather
2020
Oops! Something went wrong.
While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
The significant impact of aerosol vertical structure on lower atmosphere stability and its critical role in aerosol–planetary boundary layer (PBL) interactions
by
Han, Wenchao
, Tan, Wangshu
, Li, Chengcai
, Shen, Chuanyang
, Wei, Jing
, Su, Tianning
, Li, Jing
, Li, Zhanqing
, Guo, Jianping
in
Aerosol effects
/ Aerosol vertical distribution
/ Aerosols
/ Air pollution
/ Atmosphere
/ Atmospheric stability
/ Boundary layer stability
/ Boundary layers
/ Distribution
/ Diurnal
/ ENVIRONMENTAL SCIENCES
/ Feedback loops
/ Heating
/ Heating rate
/ Height
/ Lidar
/ Lower atmosphere
/ Meteorological conditions
/ Negative feedback
/ Optical radar
/ Particulate matter
/ Photometers
/ Planetary boundary layer
/ Pollutants
/ Pollution
/ Radiative forcing
/ Radiosondes
/ Remote sensing
/ Stabilizing
/ Structure (Literature)
/ Structures
/ Thermodynamics
/ Topography
/ Vertical distribution
/ Vertical profiles
/ Weather
2020
Please be aware that the book you have requested cannot be checked out. If you would like to checkout this book, you can reserve another copy
We have requested the book for you!
Your request is successful and it will be processed during the Library working hours. Please check the status of your request in My Requests.
Oops! Something went wrong.
Looks like we were not able to place your request. Kindly try again later.
The significant impact of aerosol vertical structure on lower atmosphere stability and its critical role in aerosol–planetary boundary layer (PBL) interactions
Journal Article
The significant impact of aerosol vertical structure on lower atmosphere stability and its critical role in aerosol–planetary boundary layer (PBL) interactions
2020
Request Book From Autostore
and Choose the Collection Method
Overview
The aerosol–planetary boundary layer (PBL) interaction was proposed as an important mechanism to stabilize the atmosphere and exacerbate surface air pollution. Despite the tremendous progress made in understanding this process, its magnitude and significance still have large uncertainties and vary largely with aerosol distribution and meteorological conditions. In this study, we focus on the role of aerosol vertical distribution in thermodynamic stability and PBL development by jointly using micropulse lidar, sun photometer, and radiosonde measurements taken in Beijing. Despite the complexity of aerosol vertical distributions, cloud-free aerosol structures can be largely classified into three types: well-mixed, decreasing with height, and inverse structures. The aerosol–PBL relationship and diurnal cycles of the PBL height and PM2.5 associated with these different aerosol vertical structures show distinct characteristics. The vertical distribution of aerosol radiative forcing differs drastically among the three types, with strong heating in the lower, middle, and upper PBL, respectively. Such a discrepancy in the heating rate affects the atmospheric buoyancy and stability differently in the three distinct aerosol structures. Absorbing aerosols have a weaker effect of stabilizing the lower atmosphere under the decreasing structure than under the inverse structure. As a result, the aerosol–PBL interaction can be strengthened by the inverse aerosol structure and can be potentially neutralized by the decreasing structure. Moreover, aerosols can both enhance and suppress PBL stability, leading to both positive and negative feedback loops. This study attempts to improve our understanding of the aerosol–PBL interaction, showing the importance of the observational constraint of aerosol vertical distribution for simulating this interaction and consequent feedbacks.
This website uses cookies to ensure you get the best experience on our website.