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brew / rang 6720

Installer openfast avec Homebrew

Consultez les chemins d'installation, exécutables, métadonnées et notes de sécurité de openfast pour les workflows d'agents IA.

installation

Commandes d'installation supplémentaires

macOS

Homebrewvérifié · 100%
brew install openfast

local Homebrew formula metadata

aperçu

Résumé du paquet

NREL-supported OpenFAST whole-turbine simulation code

Commandes et alias

  • openfast

historique

Historique du projet et usages

OpenFAST is an open-source, multi-physics wind-turbine simulation code descended from the FAST engineering tool. It couples modules for aerodynamics, hydrodynamics, controls and electrical systems, and structural dynamics to simulate nonlinear aero-hydro-servo-elastic turbine response in the time domain.

Historique du projet

OpenFAST was established in 2017 from FAST v8 by researchers at the U.S. National Renewable Energy Laboratory with support from the U.S. Department of Energy Wind Energy Technologies Office. The project turned FAST's coupled turbine simulation capability into a more open community model and development platform.

The documentation describes FAST v8 as a computer-aided engineering tool for coupled dynamic response of wind turbines. OpenFAST kept that role while organizing the codebase as a framework, or glue code, around physics modules for land-based, fixed-bottom offshore, and floating offshore turbine analysis.

Historique d'adoption

The U.S. Department of Energy's OSTI software record describes OpenFAST and FAST.Farm as community models developed and used by research laboratories, academia, and industry. That framing is important: OpenFAST is not just a desktop simulator, but a reference code used to compare models, publish research, and support wind-energy engineering studies.

FAST.Farm extends OpenFAST to multi-turbine wind farms, using OpenFAST models for individual turbines while capturing wind-farm power performance, structural loads, wake advection, meandering, and merging. That companion tool broadened the OpenFAST ecosystem from single-turbine loads analysis to wind-farm-scale engineering simulation.

Modes d'utilisation

Engineers and researchers run the `openfast` executable with turbine model input files to predict loads, motion, controls behavior, and power response under defined wind and sea states. Typical uses include design-load analysis, offshore floating platform studies, controller development, model validation, and coupling with higher-level workflows.

Because OpenFAST combines multiple physics domains, packaging matters in a practical way: users need a reproducible command-line binary and libraries that match published examples, regression tests, and research workflows. Homebrew packaging makes that scientific code easier to install on macOS workstations without rebuilding the Fortran/C++ stack by hand.

Pourquoi les passionnés de paquets s'y intéressent

OpenFAST is package-nerd significant because it puts a serious government-lab engineering code into ordinary package-manager channels. Its value is not a slick CLI surface; it is reproducible access to a reference simulation engine whose input formats, modules, and companion tools form part of the wind-energy research commons.

The project also shows the packaging tension of scientific software: the executable looks simple, but the credibility lives in versioned models, documentation, tests, numerical behavior, and compatibility with surrounding tools such as FAST.Farm.

Chronologie

  • FAST v8: served as the starting codebase for OpenFAST and provided coupled aero-hydro-servo-elastic wind-turbine simulation.
  • 2017: OpenFAST was established from FAST v8 by NREL researchers with DOE-WETO support.
  • OpenFAST ecosystem: FAST.Farm extended OpenFAST-based simulation to multi-turbine wind-farm studies.

Related projects

  • FAST.Farm is the most direct companion project, extending OpenFAST simulations from individual turbines to wind farms. ROSCO, the reference open-source controller, is a related wind-energy tool that integrates with OpenFAST-style control-system workflows.

posture de sécurité

Niveau de risque : vert

narrow executable package without higher-risk signals.

Classificateur de risque

risque vert · confiance faible · appliance

Pourquoi

  • narrow executable package without higher-risk signals

Signaux

  • metadata:no-higher-risk-signals

Comportement d'installation

  • Aucune métadonnée de bottle Homebrew n’a été enregistrée.

Revue recommandée

Avant une utilisation sans surveillance par un agent, vérifiez si l'outil lit des identifiants en clair, écrit un état distant, publie des artefacts ou lance des plugins.

exécutables

Exécutables installés

CommandeTypeExpositionNote
openfastexécutableexécutable indexéDécouvert depuis l'index local des exécutables.

fraîcheur

Version et fraîcheur

Ces signaux séparent l'âge de génération de la page, l'activité du gestionnaire de paquets et la comparaison avec les versions amont. Un retard de version n'est signalé que lorsqu'une URL de preuve et des versions comparables sont présentes.

page générée2026-08-03
version du gestionnaire5.0.0
gestionnaire mis à jour
données localesinconnu
amontnon disponible
dernière version détectéenon détecté
  • OKAucun avertissement de fraîcheur n'a été généré.

métadonnées d'installation

Métadonnées du paquet

Clé du paquetbrew:openfast
Version5.0.0
Gestionnaire de paquetsHomebrew
Page d'accueilhttps://openfast.readthedocs.io
Dépôthttps://github.com/openfast/openfast
Bouteillenon enregistré
Serviceaucun déclaré

piste source

Généré depuis les données du dépôt

Cette page est servie par av-web depuis l'artéfact SQLite privé des paquets généré par scripts/generate-pkg-sqlite.py.

Sources utilisées

  • Geiger risk classifier
  • cross-ecosystem install command graph
  • curated package history
  • pkg.so package database
  • pkgdb category and tag curation