Data for "Springtime stratospheric volcanic aerosol impact on midlatitude cirrus clouds"
https://doi.org/10.5878/xdwz-3g72
Here we present the datasets used in the study "Springtime stratospheric volcanic aerosol impact on midlatitude cirrus clouds" where we investigate how cirrus clouds are impacted by downwelling volcanic sulfate aerosol from the stratosphere. In one of the datasets here the cirrus microphysical properties at different temperatures are included. This dataset span the years 2008 to 2016. In the other dataset there is data about light backscattering that can be used to estimate the aerosol load in the lowermost stratosphere. This dataset span the years 2008 to 2019.
This data includes two datasets. One of them contains information about cirrus cloud microphysical properties at different temperatures. This dataset is based on products from the DARDAR (raDAR/liDAR) datasets DARDAR-CLOUD och DARDAR-NICE. The other datasets contain data of molecular and total backscattering from chosen height intervals in the lowermost stratosphere. This dataset is based on measurements from the satellite instrument CALIOP (Cloud-Aerosol Lidar with Orthogonal Polarization).
Data files are provided in NetCDF format (https://www.unidata.ucar.edu/software/netcdfOpens in a new tab)
Citation and access
Citation and access
Data access level:
Creator/Principal investigator(s):
Research principal:
Data contains personal data:
No
Citation:
Language:
Method and outcome
Method and outcome
Time period(s) investigated:
Data format/data structure:
Data collection
Data collection
Geographic coverage
Geographic coverage
Geographic description:
global
Administrative information
Administrative information
Funding
Funding
Funding agency:
- Swedish National Spaceboard
Award number:
104/17, 130/15
Funding agency:
- FORMAS
Award number:
2018-00973, 2020-00997
Topic and keywords
Topic and keywords
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INSPIRE topic categories:
Publications
Publications
Citation:
Sporre, M. K., J. Friberg, C. Svenhag, O. Sourdeval, and T. Storelvmo. 2022. “Springtime Stratospheric Volcanic Aerosol Impact on Midlatitude Cirrus Clouds.” Geophysical Research Letters 49(2):e2021GL096171. doi: 10.1029/2021GL096171.
Metadata
Metadata
Version 1
