Engineering PapersSearch

NASA NTRS · 19920006215

Theoretical predictions

Abstract

In order to understand the impact of man made chemicals on the atmospheric ozone layer, it is essential to develop models that can perform long term predictions of future ozone changes. An advantage of using two dimensional models is that they can be used to predict latitudinal and seasonal changes in ozone. The formulation and recent improvements are described in 2-D models, which are used herein, along with the three dimensional models that are currently being developed to better simulate transport of chemically active trace gases, especially in polar regions. The range in 2-D model calculations is described. Selected fields calculated by these models are compared with observations. A number of scenarios have been defined, which encompass possible emission rates of different halocarbons. Because of the large uncertainties in the rates for heterogeneous processes, the calculated responses of the models include only the effects of homogeneous chemistry. One important distinction among the models is their ability to account for temperature feedbacks on the calculated ozone changes.

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Brasseur, G., Boville, B. A., Bruhl, C., Caldwell, M., Connell, Peter S., Derudder, A., Douglas, A., Dyominov, I., Fisher, D., Frederick, J. F.. 1990-01-01. Theoretical predictions. https://ntrs.nasa.gov/citations/19920006215

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