HR: 08:45h
AN: A51G-04 [Abstracts]
TI: Basin by Night and Plateau by Day: Air Pollution Accumulation and Ventilation in the Kathmandu Valley, Nepal
AU: * Panday, A K
EM: arnico@mit.edu
AF: MIT, Ctr for Global Change Science
MIT Building 54 Room 1326, Cambridge, MA 02139, United States
AU: Prinn, R G
EM: rprinn@mit.edu
AF: MIT, Ctr for Global Change Science
MIT Building 54 Room 1326, Cambridge, MA 02139, United States
AB:
The Kathmandu Valley, Nepal, is a broad bowl-shaped basin in the Himalayan foothills, with a population of more
than two million people. Its growing air pollution problem is strongly affected by wind systems generated by the
heating and cooling of the surrounding topography. We carried out a field measurement campaign of air
pollutants and meteorology in the Kathmandu Valley during the dry season 2004-2005, followed by MM5
simulations nested down to 1 km resolution. The model results have allowed us to interpret the observed distinct
diurnal cycle and determine the major processes responsible for the observations. We found that, at night, the
Kathmandu Valley behaves like a large basin, with down-slope flows on surrounding mountains contributing to
an accumulating cold air pool that grows to the altitude of surrounding mountain passes. The arriving cold air
pushes underneath the air mass polluted in the evening, lifting up layers of polluted air, while providing relatively
clean conditions to the surface during pre-dawn hours. After sunrise the elevated layers re-circulate to the
surface, leading to a sharp rise in pollution. During the morning a mixed layer begins to grow over the valley, but it
peaks at mid-day. Further growth is stunted by the arrival through mountain passes of cooler air that originated
over lower regions outside of the Kathmandu Valley. This creates a renewed stratification as cooler air spreads
across valley bottom; such behavior has been observed elsewhere on a number of elevated plateaus. During the
afternoon most of the valley's ventilation takes place at low elevations, with strong winds bringing background air
through the western passes, while transporting polluted air out the eastern passes. Our study sheds light onto
some of the complex patterns of air pollution transport that take places in polluted mountain areas, while helping
guide future research, including a proposed study of the ventilation of Ganges Valley air through the Himalaya.
DE: 0345 Pollution: urban and regional (0305, 0478, 4251)
DE: 0368 Troposphere: constituent transport and chemistry
DE: 3307 Boundary layer processes
DE: 3322 Land/atmosphere interactions (1218, 1631, 1843)
DE: 3329 Mesoscale meteorology
SC: Atmospheric Sciences [A]
MN: 2007 Fall Meeting