Scinovex
article Open AccessTop 1% cited

The two-way nested global chemistry-transport zoom model TM5: algorithm and applications

Atmospheric chemistry and physics · 2005 · Vol. 5(2) · pp. 417–432
Maarten KrolSander HouwelingB. BregmanM. van den BroekArjo SegersP. van VelthovenWouter PetersFrank DentenerP. Bergamaschi

Abstract

Abstract. This paper describes the global chemistry Transport Model, version 5 (TM5) which allows two-way nested zooming. The model is used for global studies which require high resolution regionally but can work on a coarser resolution globally. The zoom algorithm introduces refinement in both space and time in some predefined regions. Boundary conditions of the zoom region are provided by a coarser parent grid and the results of the zoom area are communicated back to the parent. A case study using 222Rn measurements that were taken during the MINOS campaign reveals the advantages of local zooming. As a next step, it is investigated to what extent simulated concentrations over Europe are influenced by using an additional zoom domain over North America. An artificial ozone-like tracer is introduced with a lifetime of twenty days and simplified non-linear chemistry. The concentration differences at Mace Head (Ireland) are generally smaller than 10%, much smaller than the effects of the resolution enhancement over Europe. Thus, coarsening of resolution at some distance of a sampling station seems allowed. However, it is also noted that the budgets of the tracers change considerably due to resolution dependencies of, for instance, vertical transport. Due to the two-way nested algorithm, TM5 offers a consistent tool to study the effects of grid refinement on global atmospheric chemistry issues like intercontinental transport of air pollution.

Atmospheric chemistry and aerosolsAtmospheric and Environmental Gas DynamicsAtmospheric Ozone and ClimateZoomGridAlgorithmComputer scienceResolution (logic)Boundary (topology)Environmental scienceMeteorologyGeologyMathematics
Citations
677
FWCI
12.68
field-weighted impact
References
62
Percentile
99%
vs. same field & year
Citations per year
Cited by
Global dust model intercomparison in AeroCom phase I
Atmospheric chemistry and physics · 2011 · 1,178 citations
Analysis and quantification of the diversities of aerosol life cycles within AeroCom
Atmospheric chemistry and physics · 2006 · 1,470 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.