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Real-time Environmental Applications and Display sYstem: READY

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TLDR
Read as discussed by the authors is a web-based suite of tools for producing air parcel trajectory and dispersion model results and displaying meteorological data, and it provides a "quasi-operational" portal to run the HYSPLIT atmospheric transport/dispersion model and interpret its results.
Abstract
Air quality forecasters, emergency responders, aviation interests, government agencies, and the atmospheric research community are among those who require access to tools to analyze and predict the transport and dispersion of pollutants in the atmosphere. Because of this need, the unique web-based Real-time Environmental Applications and Display sYstem (READY) has been under continuous development since 1997 to provide access to a suite of tools for producing air parcel trajectory and dispersion model results and displaying meteorological data. READY provides a “quasi-operational” portal to run the HYSPLIT atmospheric transport and dispersion model and interpret its results. Typical user applications include modeling the release of hazardous pollutants and volcanic ash, forest fire and prescribed burn smoke forecasting, poor air quality events, and various climatological studies. In addition, READY provides the user with quick access to meteorological data interpolated to the location of interest, helping in the interpretation of the HYSPLIT model results.

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Citations
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A spatio-temporal process visualization approach for wind features

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Intercomparison of holographic imaging and single-particle forward light scattering in situ measurements of liquid clouds in changing atmospheric conditions

TL;DR: In this article , the shape, size, and position of each particle inside a well-defined, three-dimensional sample volume can be measured with holographic methods without assumptions of particle properties.
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A Characteristic Analysis of Various Air Pollutants and Their Correlation with O3 in the Jiangsu, Shandong, Henan, and Anhui Provinces of China

TL;DR: Wang et al. as discussed by the authors used a series of characteristic analyses of HCHO, SO2, NO2, O3, and absorptive aerosols (UVAI) in the atmosphere of the study area from 2011 to 2021, which are the key regions for air pollution control in China.
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Towards real-time probabilistic ash deposition forecasting for New Zealand

TL;DR: In this paper , a new approach that incorporates uncertainty from both eruptive and meteorological inputs to deliver uncertainty in the model output is presented, which can be used to add uncertainty quantification to rapid response forecast systems.
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Tracking of sea level impact on Caspian Ramsar sites and potential restoration of the Gorgan Bay on the southeast Caspian coast

TL;DR: In this paper , the authors investigated how the Caspian Sea level changes affect the coastal Ramsar sites and simulated water circulation for the past, current and future conditions of the Gorgan Bay.
References
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Journal ArticleDOI

The NCEP/NCAR 40-Year Reanalysis Project

TL;DR: The NCEP/NCAR 40-yr reanalysis uses a frozen state-of-the-art global data assimilation system and a database as complete as possible, except that the horizontal resolution is T62 (about 210 km) as discussed by the authors.
Journal ArticleDOI

NOAA’s HYSPLIT Atmospheric Transport and Dispersion Modeling System

TL;DR: The Hybrid Single Particle Lagrangian Integrated Trajectory model (HYSPLIT) as mentioned in this paper is one of the most widely used models for atmospheric trajectory and dispersion calculations.

An Overview of the HYSPLIT_4 Modelling System for Trajectories, Dispersion, and Deposition

TL;DR: The HYSPLIT_4 (HYbrid Single-Particle Lagrangian Integrated Trajectory) model is designed for quick response to atmospheric emergencies, diagnostic case studies, or climatological analyses using previously gridded meteorological data.
Journal ArticleDOI

Trajectory optimization for balloon flight planning

TL;DR: In this paper, the authors used a transpacific balloon flight as a test case to evaluate multiple trajectory techniques to select different pathways based upon potential variations in balloon altitudes, which can be used to select optimum flight altitudes based upon forecast meteorological fields.
Journal ArticleDOI

Estimating vertical diffusion from routine meteorological tower measurements

TL;DR: In this article, data from an instrumented meteorological tower is used to calculate vertical dispersion coefficients and vertical diffusivities using surface layer concepts, which is similar to that at many power plant sites and only a temperature gradient and wind speed are required for the calculations.
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