Study on aerosol optical properties and radiative effect in cloudy weather in the Guangzhou region.
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Summary
The results showed that the height of the boundary layer and the surface visibility changed consistently, and the average height on the hazy days was only 61% of that on clear days, while the aerosol extinction coefficient profile distribution decreased linearly along with height on clearDays, but the haze days saw an exponential decrease.
- Type
- article
- Published
- 2016-10-15
- Cited by
- 15
- References
- 37
- Access
- Open access
- OpenAlex
- https://openalex.org/W27295588
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:46776473
Keywords
Retort, Oil shale, Mercury (programming language), Shale oil, Chemistry
References
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- Lidar ratio and depolarization ratio for cirrus clouds.
- Black carbon aerosols and their radiative properties in the Pearl River Delta region
- Consistency Between Satellite-Derived and Modeled Estimates of the Direct Aerosol Effect
- A Summary of the Physical Properties of Cirrus Clouds
- Measurements of aerosol vertical profiles and optical properties during INDOEX 1999 using micropulse lidars
- An Objective Method for Deriving Atmospheric Structure from Airborne Lidar Observations
- Statistics of aerosol extinction coefficient profiles and optical depth using lidar measurement over Lanzhou, China since 2005–2008
- Regional Integrated Experiments on Air Quality over Pearl River Delta 2004 (PRIDE-PRD2004): Overview
- Detection and Analysis of Microfronts and Associated Coherent Events Using Localized Transforms
- A vertical sounding of severe haze process in Guangzhou area
- Cloud-Radiative Forcing and Climate: Results from the Earth Radiation Budget Experiment
- Long-range transport and vertical structure of Asian dust from CALIPSO and surface measurements during PACDEX
- An introduction to atmospheric radiation
- Relative humidity dependence of aerosol optical properties and direct radiative forcing in the surface boundary layer at Xinken in Pearl River Delta of China : An observation based numerical study
Cited by
- Study of PBLH and Its Correlation with Particulate Matter from One-Year Observation over Nanjing, Southeast China
- Numerical simulations for the sources apportionment and control strategies of PM2.5 over Pearl River Delta, China, part I: Inventory and PM2.5 sources apportionment.
- Numerical simulations for the sources apportionment and control strategies of PM2.5 over Pearl River Delta, China, part II: Vertical distribution and emission reduction strategies.
- Effect of Diwali Firecrackers on Air Quality and Aerosol Optical Properties over Mega City (Delhi) in India
- Combined use of satellite and surface observations to study aerosol optical depth in different regions of China
- Measurement of PM10, PM2.5 and Black Carbon and assessment of their health effects in Agra, a semiarid region of India
- Observed Relationships Between the Urban Heat Island, Urban Pollution Island, and Downward Longwave Radiation in the Beijing Area
- Measurement report: Vehicle-based and In Situ Multi-lidar Observational Study on the Effect of Meteorological Elements on the Three-dimensional Distribution of Particles in the Western Guangdong–Hong Kong–Macao Greater Bay Area
- Retrieval of Boundary Layer Height and Its Influence on PM 2.5 Concentration Based on Lidar Observation over Guangzhou
- Aerosol Physical‐Optical Properties and PBLH Under Different Air Pollution Levels From Ground Lidar and Satellite Observations Over Shouxian Area, China
- Chemical Characterization and Health Risk Assessment of Particulate Matter Near National Highway at Urban and Semi-urban Locations of Northern India
- Impact of aerosol actinic radiative effect on ozone during haze pollution in the Pearl River Delta region
- How do atmospheric pollutant changes driven by anthropogenic heat provide feedback on the urban thermal environment in Beijing?
- Urbanization amplifies dimming: Unraveling the drivers of reduced solar radiation in Beijing
- Measurement report: Vehicle-based Multi-lidar 1 Observational Study of the Effect of Meteorological 2 Elements on the Three-dimensional Distribution of 3 Particles in the Western Guangdong–Hong Kong–Macao 4 Greater Bay Area
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