<?xml version="1.0" encoding="utf-8" ?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom" xmlns:r="https://r-universe.dev"><channel><title>hammerling-research-group.r-universe.dev</title><link>https://hammerling-research-group.r-universe.dev</link><description>Recent package updates in hammerling-research-group</description><generator>R-universe</generator><image><url>https://github.com/hammerling-research-group.png</url><title>R packages by hammerling-research-group</title><link>https://hammerling-research-group.r-universe.dev</link></image><lastBuildDate>Mon, 20 Jul 2026 18:25:19 GMT</lastBuildDate><item><title>[hammerling-research-group] puff 0.1.1</title><author>cal_okenberg@mines.edu (Callan Okenberg)</author><description>Simulate and run the Gaussian puff forward atmospheric
model in sensor (specific sensor coordinates) or grid (across
the grid of a full oil and gas operations site) modes,
following Jia, M., Fish, R., Daniels, W., Sprinkle, B. and
Hammerling, D. (2024) &lt;doi:10.26434/chemrxiv-2023-hc95q-v3&gt;.
Numerous visualization options, including static and animated,
2D and 3D, and a site map generator based on sensor and source
coordinates.</description><link>https://github.com/r-universe/hammerling-research-group/actions/runs/29774503917</link><pubDate>Mon, 20 Jul 2026 18:25:19 GMT</pubDate><r:package>puff</r:package><r:version>0.1.1</r:version><r:status>success</r:status><r:repository>https://hammerling-research-group.r-universe.dev</r:repository><r:upstream>https://github.com/hammerling-research-group/puff</r:upstream><r:article><r:source>getting-started.Rmd</r:source><r:filename>getting-started.html</r:filename><r:title>Getting Started with puff</r:title><r:created>2025-02-03 17:44:38</r:created><r:modified>2025-04-04 17:18:03</r:modified></r:article></item></channel></rss>