Valley heat deficit as a bulk measure of wintertime particulate air pollution in the Arve River Valley

Urbanized valleys are particularly vulnerable to particulate air pollution during the winter, when ground-based stable layers or cold-air pools persist over the valley floor. We examine whether the temporal variability of PM10 concentration in the section of the Arve River Valley between Cluses and...

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Veröffentlicht in:Atmospheric environment (1994) 2016-03, Vol.128, p.208-215
Hauptverfasser: Chemel, Charles, Arduini, Gabriele, Staquet, Chantal, Largeron, Yann, Legain, Dominique, Tzanos, Diane, Paci, Alexandre
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Sprache:eng
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Zusammenfassung:Urbanized valleys are particularly vulnerable to particulate air pollution during the winter, when ground-based stable layers or cold-air pools persist over the valley floor. We examine whether the temporal variability of PM10 concentration in the section of the Arve River Valley between Cluses and Servoz in the French Alps can be explained by the temporal variability of the valley heat deficit, a bulk measure of atmospheric stability within the valley. We do this on the basis of temperature profile and ground-based PM10 concentration data collected during wintertime with a temporal resolution of 1 h or finer, as part of the Passy-2015 field campaign conducted around Passy in this section of valley. The valley heat deficit was highly correlated with PM10 concentration on a daily time scale. The hourly variability of PM10 concentrations was more complex and cannot be explained solely by the hourly variability of the valley heat deficit. The interplay of the diurnal cycles of emissions and local dynamics is demonstrated and a drainage mechanism for observed nocturnal dilution of near-surface PM10 concentrations is proposed. •Cold-air pools lead to severe air pollution episodes in the Arve River Valley.•We examine the temporal variability of PM10 concentration.•It is largely explained by that of the valley heat deficit on a daily time scale.•Emissions and local dynamics play a major role on an hourly time scale.
ISSN:1352-2310
1873-2844
DOI:10.1016/j.atmosenv.2015.12.058