Published July 24, 2023 | Version v1

3D simulations of the Archean Earth including photochemical haze profiles [dataset]

Authors/Creators

  • 1. University of Exeter
  • 1. University of Exeter
  • 2. Met Office
  • 3. NASA Goddard Space Flight Center

Description

Dataset of 3D simulations of the Archean Earth including photochemical haze profiles

We present results from 3D simulations of the Archean Earth including a prescribed spherical haze generated through a 1D photochemical model. Our simulations suggest that a thin haze layer, formed when CH4/CO2 = 0.1, leads to global warming of ~10.6K due to the change of water vapour and cloud feedback, compared to the simulation without any haze. However, a thicker haze layer, formed when CH4/CO2 > 0.1, leads to global cooling of up to ~65K as the scattering and absorption of shortwave radiation from the haze reduces the radiation from reaching the planetary surface. A thermal inversion is formed with a lower tropopause as the CH4/CO2 ratio increases. The haze reaches an optical threshold thickness when CH4/CO2 ~ 0.175 beyond which the atmospheric structure and the global surface temperature do not vary much.

 

The IRIS python package developed by the Met Office is needed to analyse the data.

Files

JGR_data_availability copy.zip

Files (38.3 GB)

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