Cargando…

Evaluating the Impact of Chemical Complexity and Horizontal Resolution on Tropospheric Ozone Over the Conterminous US With a Global Variable Resolution Chemistry Model

A new configuration of the Community Earth System Model (CESM)/Community Atmosphere Model with full chemistry (CAM‐chem) supporting the capability of horizontal mesh refinement through the use of the spectral element (SE) dynamical core is developed and called CESM/CAM‐chem‐SE. Horizontal mesh refin...

Descripción completa

Detalles Bibliográficos
Autores principales: Schwantes, Rebecca H., Lacey, Forrest G., Tilmes, Simone, Emmons, Louisa K., Lauritzen, Peter H., Walters, Stacy, Callaghan, Patrick, Zarzycki, Colin M., Barth, Mary C., Jo, Duseong S., Bacmeister, Julio T., Neale, Richard B., Vitt, Francis, Kluzek, Erik, Roozitalab, Behrooz, Hall, Samuel R., Ullmann, Kirk, Warneke, Carsten, Peischl, Jeff, Pollack, Ilana B., Flocke, Frank, Wolfe, Glenn M., Hanisco, Thomas F., Keutsch, Frank N., Kaiser, Jennifer, Bui, Thao Paul V., Jimenez, Jose L., Campuzano‐Jost, Pedro, Apel, Eric C., Hornbrook, Rebecca S., Hills, Alan J., Yuan, Bin, Wisthaler, Armin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9286600/
https://www.ncbi.nlm.nih.gov/pubmed/35864945
http://dx.doi.org/10.1029/2021MS002889
_version_ 1784748050429771776
author Schwantes, Rebecca H.
Lacey, Forrest G.
Tilmes, Simone
Emmons, Louisa K.
Lauritzen, Peter H.
Walters, Stacy
Callaghan, Patrick
Zarzycki, Colin M.
Barth, Mary C.
Jo, Duseong S.
Bacmeister, Julio T.
Neale, Richard B.
Vitt, Francis
Kluzek, Erik
Roozitalab, Behrooz
Hall, Samuel R.
Ullmann, Kirk
Warneke, Carsten
Peischl, Jeff
Pollack, Ilana B.
Flocke, Frank
Wolfe, Glenn M.
Hanisco, Thomas F.
Keutsch, Frank N.
Kaiser, Jennifer
Bui, Thao Paul V.
Jimenez, Jose L.
Campuzano‐Jost, Pedro
Apel, Eric C.
Hornbrook, Rebecca S.
Hills, Alan J.
Yuan, Bin
Wisthaler, Armin
author_facet Schwantes, Rebecca H.
Lacey, Forrest G.
Tilmes, Simone
Emmons, Louisa K.
Lauritzen, Peter H.
Walters, Stacy
Callaghan, Patrick
Zarzycki, Colin M.
Barth, Mary C.
Jo, Duseong S.
Bacmeister, Julio T.
Neale, Richard B.
Vitt, Francis
Kluzek, Erik
Roozitalab, Behrooz
Hall, Samuel R.
Ullmann, Kirk
Warneke, Carsten
Peischl, Jeff
Pollack, Ilana B.
Flocke, Frank
Wolfe, Glenn M.
Hanisco, Thomas F.
Keutsch, Frank N.
Kaiser, Jennifer
Bui, Thao Paul V.
Jimenez, Jose L.
Campuzano‐Jost, Pedro
Apel, Eric C.
Hornbrook, Rebecca S.
Hills, Alan J.
Yuan, Bin
Wisthaler, Armin
author_sort Schwantes, Rebecca H.
collection PubMed
description A new configuration of the Community Earth System Model (CESM)/Community Atmosphere Model with full chemistry (CAM‐chem) supporting the capability of horizontal mesh refinement through the use of the spectral element (SE) dynamical core is developed and called CESM/CAM‐chem‐SE. Horizontal mesh refinement in CESM/CAM‐chem‐SE is unique and novel in that pollutants such as ozone are accurately represented at human exposure relevant scales while also directly including global feedbacks. CESM/CAM‐chem‐SE with mesh refinement down to ∼14 km over the conterminous US (CONUS) is the beginning of the Multi‐Scale Infrastructure for Chemistry and Aerosols (MUSICAv0). Here, MUSICAv0 is evaluated and used to better understand how horizontal resolution and chemical complexity impact ozone and ozone precursors over CONUS as compared to measurements from five aircraft campaigns, which occurred in 2013. This field campaign analysis demonstrates the importance of using finer horizontal resolution to accurately simulate ozone precursors such as nitrogen oxides and carbon monoxide. In general, the impact of using more complex chemistry on ozone and other oxidation products is more pronounced when using finer horizontal resolution where a larger number of chemical regimes are resolved. Large model biases for ozone near the surface remain in the Southeast US as compared to the aircraft observations even with updated chemistry and finer horizontal resolution. This suggests a need for adding the capability of replacing sections of global emission inventories with regional inventories, increasing the vertical resolution in the planetary boundary layer, and reducing model biases in meteorological variables such as temperature and clouds.
format Online
Article
Text
id pubmed-9286600
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-92866002022-07-19 Evaluating the Impact of Chemical Complexity and Horizontal Resolution on Tropospheric Ozone Over the Conterminous US With a Global Variable Resolution Chemistry Model Schwantes, Rebecca H. Lacey, Forrest G. Tilmes, Simone Emmons, Louisa K. Lauritzen, Peter H. Walters, Stacy Callaghan, Patrick Zarzycki, Colin M. Barth, Mary C. Jo, Duseong S. Bacmeister, Julio T. Neale, Richard B. Vitt, Francis Kluzek, Erik Roozitalab, Behrooz Hall, Samuel R. Ullmann, Kirk Warneke, Carsten Peischl, Jeff Pollack, Ilana B. Flocke, Frank Wolfe, Glenn M. Hanisco, Thomas F. Keutsch, Frank N. Kaiser, Jennifer Bui, Thao Paul V. Jimenez, Jose L. Campuzano‐Jost, Pedro Apel, Eric C. Hornbrook, Rebecca S. Hills, Alan J. Yuan, Bin Wisthaler, Armin J Adv Model Earth Syst Research Article A new configuration of the Community Earth System Model (CESM)/Community Atmosphere Model with full chemistry (CAM‐chem) supporting the capability of horizontal mesh refinement through the use of the spectral element (SE) dynamical core is developed and called CESM/CAM‐chem‐SE. Horizontal mesh refinement in CESM/CAM‐chem‐SE is unique and novel in that pollutants such as ozone are accurately represented at human exposure relevant scales while also directly including global feedbacks. CESM/CAM‐chem‐SE with mesh refinement down to ∼14 km over the conterminous US (CONUS) is the beginning of the Multi‐Scale Infrastructure for Chemistry and Aerosols (MUSICAv0). Here, MUSICAv0 is evaluated and used to better understand how horizontal resolution and chemical complexity impact ozone and ozone precursors over CONUS as compared to measurements from five aircraft campaigns, which occurred in 2013. This field campaign analysis demonstrates the importance of using finer horizontal resolution to accurately simulate ozone precursors such as nitrogen oxides and carbon monoxide. In general, the impact of using more complex chemistry on ozone and other oxidation products is more pronounced when using finer horizontal resolution where a larger number of chemical regimes are resolved. Large model biases for ozone near the surface remain in the Southeast US as compared to the aircraft observations even with updated chemistry and finer horizontal resolution. This suggests a need for adding the capability of replacing sections of global emission inventories with regional inventories, increasing the vertical resolution in the planetary boundary layer, and reducing model biases in meteorological variables such as temperature and clouds. John Wiley and Sons Inc. 2022-06-22 2022-06 /pmc/articles/PMC9286600/ /pubmed/35864945 http://dx.doi.org/10.1029/2021MS002889 Text en © 2022. The Authors. Journal of Advances in Modeling Earth Systems published by Wiley Periodicals LLC on behalf of American Geophysical Union. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Schwantes, Rebecca H.
Lacey, Forrest G.
Tilmes, Simone
Emmons, Louisa K.
Lauritzen, Peter H.
Walters, Stacy
Callaghan, Patrick
Zarzycki, Colin M.
Barth, Mary C.
Jo, Duseong S.
Bacmeister, Julio T.
Neale, Richard B.
Vitt, Francis
Kluzek, Erik
Roozitalab, Behrooz
Hall, Samuel R.
Ullmann, Kirk
Warneke, Carsten
Peischl, Jeff
Pollack, Ilana B.
Flocke, Frank
Wolfe, Glenn M.
Hanisco, Thomas F.
Keutsch, Frank N.
Kaiser, Jennifer
Bui, Thao Paul V.
Jimenez, Jose L.
Campuzano‐Jost, Pedro
Apel, Eric C.
Hornbrook, Rebecca S.
Hills, Alan J.
Yuan, Bin
Wisthaler, Armin
Evaluating the Impact of Chemical Complexity and Horizontal Resolution on Tropospheric Ozone Over the Conterminous US With a Global Variable Resolution Chemistry Model
title Evaluating the Impact of Chemical Complexity and Horizontal Resolution on Tropospheric Ozone Over the Conterminous US With a Global Variable Resolution Chemistry Model
title_full Evaluating the Impact of Chemical Complexity and Horizontal Resolution on Tropospheric Ozone Over the Conterminous US With a Global Variable Resolution Chemistry Model
title_fullStr Evaluating the Impact of Chemical Complexity and Horizontal Resolution on Tropospheric Ozone Over the Conterminous US With a Global Variable Resolution Chemistry Model
title_full_unstemmed Evaluating the Impact of Chemical Complexity and Horizontal Resolution on Tropospheric Ozone Over the Conterminous US With a Global Variable Resolution Chemistry Model
title_short Evaluating the Impact of Chemical Complexity and Horizontal Resolution on Tropospheric Ozone Over the Conterminous US With a Global Variable Resolution Chemistry Model
title_sort evaluating the impact of chemical complexity and horizontal resolution on tropospheric ozone over the conterminous us with a global variable resolution chemistry model
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9286600/
https://www.ncbi.nlm.nih.gov/pubmed/35864945
http://dx.doi.org/10.1029/2021MS002889
work_keys_str_mv AT schwantesrebeccah evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT laceyforrestg evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT tilmessimone evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT emmonslouisak evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT lauritzenpeterh evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT waltersstacy evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT callaghanpatrick evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT zarzyckicolinm evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT barthmaryc evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT joduseongs evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT bacmeisterjuliot evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT nealerichardb evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT vittfrancis evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT kluzekerik evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT roozitalabbehrooz evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT hallsamuelr evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT ullmannkirk evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT warnekecarsten evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT peischljeff evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT pollackilanab evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT flockefrank evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT wolfeglennm evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT haniscothomasf evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT keutschfrankn evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT kaiserjennifer evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT buithaopaulv evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT jimenezjosel evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT campuzanojostpedro evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT apelericc evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT hornbrookrebeccas evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT hillsalanj evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT yuanbin evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel
AT wisthalerarmin evaluatingtheimpactofchemicalcomplexityandhorizontalresolutionontroposphericozoneovertheconterminoususwithaglobalvariableresolutionchemistrymodel