Zobrazeno 1 - 10
of 4 963
pro vyhledávání: '"atmospheric dispersion modeling"'
Autor:
Siena Brody-Heine, Marwan Katurji, Carol Stewart, Thomas Wilson, Elaine R. Smid, Rosa Trancoso
Publikováno v:
Journal of Applied Volcanology, Vol 13, Iss 1, Pp 1-18 (2024)
Abstract Auckland city (pop. 1.7 M) is Aotearoa New Zealand’s largest city and an important economic hub. The city is built upon the active intraplate basaltic Auckland Volcanic Field (AVF). An AVF eruption would cause considerable impacts. An impo
Externí odkaz:
https://doaj.org/article/ead68a0a94854c578e4c7b71d81e9189
Autor:
Gibeom Kim, Gyunyoung Heo
Publikováno v:
Nuclear Engineering and Technology, Vol 55, Iss 6, Pp 2305-2314 (2023)
The governing equations of atmospheric dispersion most often taking the form of a second-order partial differential equation (PDE). Currently, typical computational codes for predicting atmospheric dispersion use the Gaussian plume model that is an a
Externí odkaz:
https://doaj.org/article/327de67df5aa43fc8974cdd97dfbd05c
Akademický článek
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Akademický článek
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Autor:
D. Viúdez-Moreiras
Publikováno v:
Progress in Earth and Planetary Science, Vol 8, Iss 1, Pp 1-16 (2021)
Abstract Atmospheric local-to-regional dispersion models are widely used on Earth to predict and study the effects of chemical species emitted into the atmosphere and to contextualize sparse data acquired at particular locations and/or times. However
Externí odkaz:
https://doaj.org/article/e9a2d2d922e444318aeaf6656e65c614
Publikováno v:
Journal of Health and Pollution, Vol 11, Iss 30, Pp 1-13 (2021)
Background. Storage tanks in oil and gas processing facilities contain large volumes of flammable compounds. Once the fuel-air mixture is ignited, it may break out into a large fire or explosion. The growing interest in monitoring air quality and ass
Externí odkaz:
https://doaj.org/article/44ee4df9c21a4603a8250bb0fa89f042
Autor:
Qining Chen, Mrinali Modi, Gary McGaughey, Yosuke Kimura, Elena McDonald-Buller, David T. Allen
Publikováno v:
Atmosphere, Vol 13, Iss 4, p 510 (2022)
Simulations of the atmospheric dispersion of methane emissions were created for a region containing 26 oil and gas production sites in the Permian Basin in Texas. Virtual methane sensors were placed at 24 of the 26 sites, with at most 1 sensor per si
Externí odkaz:
https://doaj.org/article/f25fd0f26e2b4560870d0bd953b6bd41
Publikováno v:
Atmospheric chemistry and physics, Vol. 22, No 5 (2022) pp. 3409-3431
We have developed an aggregation scheme for use with the Lagrangian atmospheric transport and dispersion model NAME (Numerical Atmospheric Dispersion modelling Environment), which is used by the London Volcanic Ash Advisory Centre (VAAC) to provide a
Autor:
Marek Bogacki, Robert Oleniacz, Mateusz Rzeszutek, Paulina Bździuch, Adriana Szulecka, Tomasz Gorzelnik
Publikováno v:
Atmosphere, Vol 11, Iss 7, p 695 (2020)
One of the elements of strategy aimed at minimizing the impact of road transport on air quality is the introduction of its reorganization resulting in decreased pollutant emissions to the air. The aim of the study was to determine the optimal strateg
Externí odkaz:
https://doaj.org/article/8c22a1fb8e004747862bf146286ca984
Autor:
Davi de Ferreyro Monticelli, Jeferson Da Silva Corrêa, Elisa Valentim Goulart, Jane Meri Santos, Neyval Costa Reis, Vanessa Dias dos Santos, José Geraldo Mill
Publikováno v:
Air Quality, Atmosphere & Health. 15:645-655
Epidemiological studies use direct and indirect methods to estimate exposure to air pollutants. In this paper, we compared the exposure to NO2 given by dispersion modeling and a fixed monitoring station and personal monitors during the daily routine