Supporting data for the manuscript: "Aitken-mode aerosols buffer decoupled mid-latitude boundary layer clouds against precipitation depletion"

This repository contains data supporting the manuscript "Aitken-mode aerosols buffer decoupled mid-latitude boundary layer clouds against precipitation depletion", which has been submitted for publication in the Journal of Geophysical Research. The repository has five subdirectories: Sourc...

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Bibliographic Details
Main Authors: Isabel L McCoy, Peter N Blossey, Matthew C Wyant, Christopher S Bretherton, Robert Wood
Format: Other/Unknown Material
Language:unknown
Published: Zenodo 2024
Subjects:
Online Access:https://doi.org/10.5281/zenodo.8088444
Description
Summary:This repository contains data supporting the manuscript "Aitken-mode aerosols buffer decoupled mid-latitude boundary layer clouds against precipitation depletion", which has been submitted for publication in the Journal of Geophysical Research. The repository has five subdirectories: SourceCode/ Forcings/ OUT_STAT/ OUT_2D/ OUT_3D/ The source code, a modified version of the System for Atmospheric Modeling (SAM, Khairoutinov and Randall, 2003), is in the SourceCode/ directory. This includes the Aitken-aerosol enabled microphysics of Wyant et al (2022) in the SRC/MICRO_M2005_MA/ subdirectory, which itself built upon the earlier work of Berner et al (2013). The choices for microphysics, radiation and subgrid parameterizations can be found in the Build file within SAM's main directory. This version differs in several ways from the public release of SAM, which is available at http://rossby.msrc.sunysb.edu/~marat/SAM.html . The forcings and namelist settings for the different simulations in the paper are included in the Forcings/ directory. The namelist settings are in files with names like prm.v7f_Hopv0_ra1. The last three characters can be used to distinguish the simulations and associate them with those presented in the manuscript: ra1: spinup simulation for Ctrl and other simulations in 25.6 km square domain. ra2: Ctrl simulation (restarted from ra1 at 9 UTC) ra3: HfAc simulation (restarted from ra1 but with accumulation mode aerosol scaled by 0.5) ra4: HfAcNoAit simulation (restarted from ra1 but with accumulation mode aerosol scaled by 0.5 and Aitken aerosol scaled by 1e-4) ra5: NoAit simulation (restarted from ra1 but with Aitken aerosol scaled by 1e-4) ra6: HopV1 simulation (restarted from ra1 but using modified Hoppel Transfer scheme, V1 in appendix) ra7: HopV2 simulation (restarted from ra1 but using modified Hoppel Transfer scheme, V2 in appendix) rc1: spinup simulation for large-domain (LD) simulation rc2: LD simulation (restarted from rc1 at 9 UTC) In runs with modified aerosols (e.g., HfAc), the initial ...