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High Performance Computing Serving Atmospheric Transport & Dispersion Modelling

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operational emergency modeling; atmospheric release; high-resolution metric grid; 3D; PMSS modeling system; Code_Saturne; EMERGENCIES project; lattice Boltzmann method; large eddy simulation; pollutant dispersion; urban physics; urban air pollution; nature-based solutions; green infrastructure; PMSS Lagrangian model; NOx; PM10; large-eddy simulation; plume dispersion; urban area; coupling simulation; mesoscale meteorological simulation model; meteorological observation; graphics processing unit computing; atmospheric dispersion modelling; microscale dispersion; model validation; database; on-site meteorological observation; water mist dispersion; lagrangian dispersion model; web visualization; web mapping; emergencies project; atmospheric boundary layer; OpenFOAM; gas dispersion; CFD; turbulence model; hazard assessment; horizontal homogeneity; wind field; deposition; machine learning; hazardous release; WRF; FLEXPART; prediction; air pollution; air quality modelling; ADMS-Urban; high performance computing; HPC; West Midlands; air quality; urban scale; traffic emissions; micro-scale dispersion models; aerosols; South Asia; WRF-Chem; precipitation; CAPE; CIN; urban dispersion; complex terrain; fast-response dispersion modeling; computational fluid dynamics; RANS; urban dispersion modelling; Reynolds-averaged Navier–Stokes; situational awareness; CityGML; air quality impact study; PMSS model; high resolution grid

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