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The photolysis module JVAL-14, compatible with the MESSy standard, and the JVal PreProcessor (JVPP)
photolysis module JVAL-14 JVal PreProcessor
2014/12/19
We present version 14 of the photolysis module JVAL. Taking atmospheric conditions as input, JVAL calculates photolysis rate coefficients, i.e. the speed of dissociation of atmospheric molecules in th...
Implementation of the Fast-JX Photolysis scheme (v6.4) into the UKCA component of the MetUM chemistry-climate model (v7.3)
the Fast-JX Photolysis scheme UKCA component MetUM chemistry-climate model
2014/12/17
Atmospheric chemistry is driven by photolytic reactions, making their modelling a crucial component of atmospheric models. We describe the implementation and validation of Fast-JX, a state of the art ...
Relationship between the NO2 photolysis frequency and the solar global irradiance
Relationship NO2 photolysis frequency solar global irradiance
2010/2/8
Representative values of the atmospheric NO2 photolysis frequency j(NO2) are required for the adequate calculation and interpretation of NO and NO2 concentrations and exchange fluxes near the surface....
Upgrading photolysis in the p-TOMCAT CTM:model evaluation and assessment of the role of clouds
Upgrading photolysis p-TOMCAT CTM model evaluation assessment role of clouds
2010/2/5
A new version of the p-TOMCAT Chemical Transport Model (CTM) which includes an improved photolysis code, Fast-JX, is validated. Through offline testing we show that Fast-JX captures well the observed ...