The Importance of Capturing Local Measurement-Driven Adjustment of Modelled j(NO2)

Accurate photolysis rate constants are essential for simulation of local air quality but their values can vary substantially with changes in local meteorological and surface conditions. This study demonstrates the use of local radiometer measurements for capturing via hourly measurement-driven adjus...

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Veröffentlicht in:Atmosphere 2022-07, Vol.13 (7), p.1065
Hauptverfasser: Walker, Hannah L., Heal, Mathew R., Braban, Christine F., Leeson, Sarah R., Simmons, Ivan, Jones, Matthew R., Kift, Richard, Marsden, Nicholas, Twigg, Marsailidh M.
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Sprache:eng
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Zusammenfassung:Accurate photolysis rate constants are essential for simulation of local air quality but their values can vary substantially with changes in local meteorological and surface conditions. This study demonstrates the use of local radiometer measurements for capturing via hourly measurement-driven adjustment factors (MDAF) the temporal resolution needed to adjust clear-sky or cloud-free model estimates of j(NO2). Measurements simultaneously at two sites in the UK (Auchencorth Moss and Manchester) showed that TUV (v5.3) model estimates of j(NO2)↓ in cloud-free conditions (used as an example of modelled j-values) were, on average, approximately 45% larger than measured j(NO2)↓, which would lead to substantial model bias in the absence of local adjustment. At Auchencorth Moss, MDAF values based on 4π and 2π radiometer inlets generally agreed very well with each other (
ISSN:2073-4433
2073-4433
DOI:10.3390/atmos13071065