Search NASASearch

NASA NTRS · 20030102191

Interannual Variability in Intercontinental Transport

Abstract

We have investigated the importance of intercontinental transport using source-receptor relationship. A global radon-like and seven regional tracers were used in three-dimensional model simulations to quantify their contributions to column burdens and vertical profiles at world-wide receptors. Sensitivity of these contributions to meteorological input was examined using different years of meteorology in two atmospheric simulations. Results show that Asian emission influences tracer distributions in its eastern downwind regions extending as far as Europe with major contributions in mid- and upper troposphere. On the western and eastern sides of the US, Asian contribution to annual average column burdens are 37% and 5% respectively with strong monthly variations. At an altitude of 10 km, these contributions are 75% and 25% respectively. North American emissions contribute more than 15% to annual average column burden and about 50% at 8 km altitude over the European region. Contributions from tropical African emissions are wide-spread in both the hemispheres. Differences in meteorological input cause non-uniform redistribution of tracer mass throughout the troposphere at all receptors. We also show that in model-model and model-data comparison, correlation analysis of tracer's spatial gradients provides an added measure of model's performance.

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Gupta, Mohan, Douglass, Anne, Kawa, S. Randy, Pawson, Steven. 2003-01-01. Interannual Variability in Intercontinental Transport. https://ntrs.nasa.gov/citations/20030102191

Cite the original work for its findings. Save a collection to share your selection of sources.