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Technical Note: AQMEII4 Activity 1: Evaluation of Wet and Dry Deposition Schemes as an Integral Part of Regional-scale Air Quality ModelsWe present in this technical note the research protocol for phase 4 of the Air Quality Model Evaluation International Initiative (AQMEII4). This research initiative is divided into two activities, collectively having three goals: (i) to define the current state of the science with respect to representations of wet and especially dry deposition in regional models, (ii) to quantify the extent to which different dry deposition parameterizations influence retrospective air pollutant concentration and flux predictions, and (iii) to identify, through the use of a common set of detailed diagnostics, sensitivity simulations, model evaluation, and reduction of input uncertainty, the specific causes for the current range of these predictions. Activity 1 is dedicated to the diagnostic evaluation of wet and dry deposition processes in regional air quality models (described in this paper), and Activity 2 to the evaluation of dry deposition point models against ozone flux measurements at multiple towers with multiyear observations (to be described in future submissions as part of the special issue on AQMEII4). The scope of this paper is to present the scientific protocols for Activity 1, as well as to summarize the technical information associated with the different dry deposition approaches used by the participating research groups of AQMEII4. In addition to describing all common aspects and data used for this multi-model evaluation activity, most importantly, we present the strategy devised to allow a common process-level comparison of dry deposition obtained from models using sometimes very different dry deposition schemes. The strategy is based on adding detailed diagnostics to the algorithms used in the dry deposition modules of existing regional air quality models, in particular archiving diagnostics specific to land use–land cover (LULC) and creating standardized LULC categories to facilitate cross-comparison of LULC-specific dry deposition parameters and processes, as well as archiving effective conductance and effective flux as means for comparing the relative influence of different pathways towards the net or total dry deposition. This new approach, along with an analysis of precipitation and wet deposition fields, will provide an unprecedented process-oriented comparison of deposition in regional air quality models. Examples of how specific dry deposition schemes used in participating models have been reduced to the common set of comparable diagnostics defined for AQMEII4 are also presented.
Document ID
20210025923
Acquisition Source
Goddard Space Flight Center
Document Type
Reprint (Version printed in journal)
Authors
Stefano Galmarini
(European Commission Brussels, Belgium)
Paul Makar
(Environment Canada Gatineau, Quebec, Canada)
Olivia E Clifton
(Universities Space Research Association Columbia, Maryland, United States)
Christian Hogrefe
(Environmental Protection Agency Washington D.C., District of Columbia, United States)
Jesse O Bash
(Environmental Protection Agency Washington D.C., District of Columbia, United States)
Roberto Bellasio
(Enviroware srl)
Roberto Bianconi
(Enviroware srl)
Johannes Bieser
(Helmholtz-Zentrum Geesthacht Centre for Materials and Coastal Research Geesthacht, Schleswig-Holstein, Germany)
Tim Butler
(Institute for Advanced Sustainability Studies Potsdam, Germany)
Jason Ducker
(Florida State University Tallahassee, Florida, United States)
Johannes Flemming
(European Centre for Medium-Range Weather Forecasts Reading, United Kingdom)
Alma Hodzic
(National Center for Atmospheric Research Boulder, Colorado, United States)
Christopher D Holmes
(Florida State University Tallahassee, Florida, United States)
Ioannis Kioutsioukis
(University of Patras Pátrai, Greece)
Richard Kranenburg
(Netherlands Organisation for Applied Scientific Research Delft, Netherlands)
Aurelia Lupascu
(Institute for Advanced Sustainability Studies Potsdam, Germany)
Juan Luis Perez-Camanyo
(Technical University of Madrid Madrid, Spain)
Jonathan Pleim
(Environmental Protection Agency Washington D.C., District of Columbia, United States)
Young-Hee Ryu
(Pohang University of Science and Technology Pohang, South Korea)
Roberto San Jose
(Technical University of Madrid Madrid, Spain)
Donna Schwede
(Environmental Protection Agency Washington D.C., District of Columbia, United States)
Sam Silva
(Pacific Northwest National Laboratory Richland, Washington, United States)
Ralf Wolke
(Leibniz Institute for Tropospheric Research Leipzig, Germany)
Date Acquired
December 15, 2021
Publication Date
October 20, 2021
Publication Information
Publication: Atmospheric Chemistry and Physics
Publisher: Copernicus Publications
Volume: 21
Issue: 20
Issue Publication Date: October 20, 2021
ISSN: 1680-7316
e-ISSN: 1680-7324
Subject Category
Meteorology And Climatology
Funding Number(s)
CONTRACT_GRANT: NNH15CO48B
CONTRACT_GRANT: 80HQTR21CA005
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
External Peer Committee
Keywords
Air Quality Model Evaluation International Initiative (AQMEII4)
research protocols
wet deposition
dry deposition
regional models
air concentration
flux predictions
LULC-specific dry deposition
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