Near real-time simulation data of atmospheric components and meteorology in the Arctic region using the WRF-Chem model from August to September 2016 ...

This study aims to develop a near real-time simulation system to assist in the preparation of the observational plan and the first analysis during the observational campaigns such as a cruise of the Research Vessel (R/V) Mirai. This system covers most of the Northern Hemisphere for the precise treat...

Full description

Bibliographic Details
Main Authors: Takigawa, Masayuki, Yamaguchi, Masahiro, Taketani, Fumikazu, Kanaya, Yugo, Kondo, Yutaka
Format: Dataset
Language:English
Published: Arctic Data archive System (ADS), Japan 2018
Subjects:
Online Access:https://dx.doi.org/10.17592/001.2018082101
https://ads.nipr.ac.jp/dataset/A20180821-001
id ftdatacite:10.17592/001.2018082101
record_format openpolar
spelling ftdatacite:10.17592/001.2018082101 2023-05-15T14:57:23+02:00 Near real-time simulation data of atmospheric components and meteorology in the Arctic region using the WRF-Chem model from August to September 2016 ... Takigawa, Masayuki Yamaguchi, Masahiro Taketani, Fumikazu Kanaya, Yugo Kondo, Yutaka 2018 https://dx.doi.org/10.17592/001.2018082101 https://ads.nipr.ac.jp/dataset/A20180821-001 en eng Arctic Data archive System (ADS), Japan CC BY http://creativecommons.org/licenses/by/4.0 ATMOSPHERE>AEROSOLS>ORGANIC PARTICLES HUMAN DIMENSIONS>ENVIRONMENTAL IMPACTS>BIOMASS BURNING dataset Dataset 2018 ftdatacite https://doi.org/10.17592/001.2018082101 2023-04-03T17:38:25Z This study aims to develop a near real-time simulation system to assist in the preparation of the observational plan and the first analysis during the observational campaigns such as a cruise of the Research Vessel (R/V) Mirai. This system covers most of the Northern Hemisphere for the precise treatment of the intrusions of airmasses from the mid-latitudes to the Arctic. Day-to-day variations in the emissions are also taken into account, especially for emissions from biomass burning. The calculation is conducted using forecasted meteorological data for the target period, and the model data is finally overwritten by the output executed using the operational reanalysis data. The system has been applied to cruises of the R/V Mirai for MR1606 in 2016. Operationally, a 48-hour forecast calculation is conducted once a day and the result is shared with the researchers conducting the observations. Here, we present a dataset for the meteorological and atmospheric constituents, such as ozone and black carbon near the ... Dataset Arctic black carbon DataCite Metadata Store (German National Library of Science and Technology) Arctic
institution Open Polar
collection DataCite Metadata Store (German National Library of Science and Technology)
op_collection_id ftdatacite
language English
topic ATMOSPHERE>AEROSOLS>ORGANIC PARTICLES
HUMAN DIMENSIONS>ENVIRONMENTAL IMPACTS>BIOMASS BURNING
spellingShingle ATMOSPHERE>AEROSOLS>ORGANIC PARTICLES
HUMAN DIMENSIONS>ENVIRONMENTAL IMPACTS>BIOMASS BURNING
Takigawa, Masayuki
Yamaguchi, Masahiro
Taketani, Fumikazu
Kanaya, Yugo
Kondo, Yutaka
Near real-time simulation data of atmospheric components and meteorology in the Arctic region using the WRF-Chem model from August to September 2016 ...
topic_facet ATMOSPHERE>AEROSOLS>ORGANIC PARTICLES
HUMAN DIMENSIONS>ENVIRONMENTAL IMPACTS>BIOMASS BURNING
description This study aims to develop a near real-time simulation system to assist in the preparation of the observational plan and the first analysis during the observational campaigns such as a cruise of the Research Vessel (R/V) Mirai. This system covers most of the Northern Hemisphere for the precise treatment of the intrusions of airmasses from the mid-latitudes to the Arctic. Day-to-day variations in the emissions are also taken into account, especially for emissions from biomass burning. The calculation is conducted using forecasted meteorological data for the target period, and the model data is finally overwritten by the output executed using the operational reanalysis data. The system has been applied to cruises of the R/V Mirai for MR1606 in 2016. Operationally, a 48-hour forecast calculation is conducted once a day and the result is shared with the researchers conducting the observations. Here, we present a dataset for the meteorological and atmospheric constituents, such as ozone and black carbon near the ...
format Dataset
author Takigawa, Masayuki
Yamaguchi, Masahiro
Taketani, Fumikazu
Kanaya, Yugo
Kondo, Yutaka
author_facet Takigawa, Masayuki
Yamaguchi, Masahiro
Taketani, Fumikazu
Kanaya, Yugo
Kondo, Yutaka
author_sort Takigawa, Masayuki
title Near real-time simulation data of atmospheric components and meteorology in the Arctic region using the WRF-Chem model from August to September 2016 ...
title_short Near real-time simulation data of atmospheric components and meteorology in the Arctic region using the WRF-Chem model from August to September 2016 ...
title_full Near real-time simulation data of atmospheric components and meteorology in the Arctic region using the WRF-Chem model from August to September 2016 ...
title_fullStr Near real-time simulation data of atmospheric components and meteorology in the Arctic region using the WRF-Chem model from August to September 2016 ...
title_full_unstemmed Near real-time simulation data of atmospheric components and meteorology in the Arctic region using the WRF-Chem model from August to September 2016 ...
title_sort near real-time simulation data of atmospheric components and meteorology in the arctic region using the wrf-chem model from august to september 2016 ...
publisher Arctic Data archive System (ADS), Japan
publishDate 2018
url https://dx.doi.org/10.17592/001.2018082101
https://ads.nipr.ac.jp/dataset/A20180821-001
geographic Arctic
geographic_facet Arctic
genre Arctic
black carbon
genre_facet Arctic
black carbon
op_rights CC BY
http://creativecommons.org/licenses/by/4.0
op_doi https://doi.org/10.17592/001.2018082101
_version_ 1766329464914968576