Model Code and Experimental Data Supporting ''Homogeneous ice nucleation in adsorbed water films: A theoretical approach" by Laaksonen et al.
- 1. Finnish Meteorological Institute
Contributors
Researchers:
Description
GINCUP-main.zip Compressed archive (.zip) with Python scripts, README, and example input files.
Silica_adsorption.zip: Nitrogen adsorption and desorption isotherms data on non-porous silica. Measured with a BELSORP MaxII at the Finnish Meteorological Institute
SiO2_sizedistribution.txt It includes measurements of particle size distribution for silica (SiO₂) powder.
1percentAF_SiO2.xlsx This file contains experimental results for silica particles with 1 % activated fraction (AF) at specific SiO₂ concentrations, as discussed in Section 3 (Experimental section) and in the analysis related to Figure 9 of the manuscript. The data were used to evaluate the critical supersaturations and to compare experimental ice nucleation onset conditions with theoretical predictions for silica particles
Files
GINCUP-main.zip
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Additional details
Identifiers
- URL
- https://github.com/Golnaz-roudsari/GINCUP
- B2SHARE Legacy Record ID
- de4f05ce04a344b284ae919a7665606a
- URL
- https://etsin.fairdata.fi/dataset/d23bf30b-dff5-49e3-a4ac-d92512a48b99
Related works
- Cites
- Other: 10.5194/egusphere-2024-4095, 2025 (DOI)
Funding
- Academy of Finland, Center of Excellence in Atmospheric Sciences, project number 307331
Instruments
- SPIN (Spectrometer for Ice Nuclei, DMT) undefined (Other)
- Belsorp MAX II (Microtrac MRB) undefined (Other)
- SMPS (TSI 3938) undefined (Other)
FMI metadata
- Link to external data location (URL)
- https://github.com/Golnaz-roudsari/GINCUP
- Process step
- Silica powder prepared by grinding fused silica beads., Particle size distribution measured with SMPS., Nitrogen adsorption isotherms measured at 77.3 K., Ice nucleation activity measured with SPIN instrument under controlled T and RH., Data averaged and post-processed for analysis.
- Lineage
- Experimental data were generated using silica (SiO₂) particles in laboratory measurements. Particle size distributions were obtained using a Scanning Mobility Particle Sizer (SMPS). Adsorption isotherms were measured with a Belsorp MAX II gas adsorption instrument. Ice nucleation experiments were performed with the SPIN continuous-flow diffusion chamber. Data were processed and averaged into temperature and humidity bins, following the methodology described in Section 3 of the related publication
- Platforms
- Laboratory instruments
- Model
- GINCUP (General Ice Nucleation Computation Platform), a theoretical model based on Frenkel–Halsey–Hill (FHH) adsorption theory and classical nucleation theory. The source code is available at https://github.com/Golnaz-roudsari/GINCUP
- Parameter
-
- Parameter name: Particle size distribution
- Parameter unit: 1/cm³
- Parameter description: Number concentration of SiO₂ aerosol particles as a function of mobility diameter.
- Parameter name: Relative humidity with respect to ice (RHice)
- Parameter unit: %
- Parameter description: Supersaturation conditions at which ice nucleation events occurred.
- Parameter name: Temperature
- Parameter unit: K
- Parameter description: Temperature in the SPIN chamber during experiments.
- Parameter name: Activated fraction (AF)
- Parameter unit: %
- Parameter description: Fraction of aerosol particles that nucleated ice.
- Data levels (meter, hectoPascal, degree, sigma pressure levels, other) in vertical direction(+/-) for example 1500 m or 850 hPa
-
- Level: Laboratory / controlled chamber
- Resolution
- 1
- Resolution unit
- K (temperature binning)
- Supplemental information
- These datasets accompany the manuscript Homogeneous ice nucleation in adsorbed water films: a theoretical approach (Laaksonen et al., 2025). The data files include experimental silica adsorption and ice nucleation measurements used in Section 3 (Experimental section) and in the analysis corresponding to Figure 9. The code used for theoretical calculations is openly available at https://github.com/Golnaz-roudsari/GINCUP
- Topic category
- environment
Temporal Coverage
Ranges:
End date: 2024-12-01