Main Page: Difference between revisions

From BOINC Projects
Jump to navigation Jump to search
Al Piskun (talk | contribs)
add invoke screensaver count
Al Piskun (talk | contribs)
stylize some project names
Line 231: Line 231:
|-
|-
| * [[ABC@home]] searched for abc-triples related to the abc conjecture in number theory
| * [[ABC@home]] searched for abc-triples related to the abc conjecture in number theory
| * [[Albert@Home]] developement site for Einstein@Home
| * [[Albert@Home]] development site for Einstein@Home


|-
|-
Line 258: Line 258:


|-
|-
| * [[Correlizer]] studiy the organization of genomes using long-range correlation analysis of chromosomes
| * [[Correlizer]] study the organization of genomes using long-range correlation analysis of chromosomes
| * [[Cosmology@Home]] astronomical research
| * [[Cosmology@Home]] astronomical research


Line 274: Line 274:


|-
|-
| * [[EOn]] simulate long timescale evolution of atomic scale systems in chemistry and materials science
| * [[EOn|eOn]] simulate long timescale evolution of atomic scale systems in chemistry and materials science
| * [[FreeHAL@home]] generate and convert semantic networks for the self-learning chatbot FreeHAL
| * [[FreeHAL@home]] generate and convert semantic networks for the self-learning chatbot FreeHAL


Line 298: Line 298:


|-
|-
| * [[NanoHUB@Home]] nanotechnology simulation
| * [[NanoHUB@Home|nanoHUB@Home]] nanotechnology simulation
| * [[Parlea]] RNA 3D structure motif analysis
| * [[Parlea]] RNA 3D structure motif analysis


Line 307: Line 307:
|-
|-
| * [[Predictor@home]] protein folding and the first BOINC project
| * [[Predictor@home]] protein folding and the first BOINC project
| * [[Proteins@home]] tackled the inverse protein folding problem
| * [[Proteins@home|proteins@home]] tackled the inverse protein folding problem


|-
|-
Line 315: Line 315:
|-
|-
| * [[QuChemPedIA@home]] run density functional theory (DFT) quantum chemistry calculations
| * [[QuChemPedIA@home]] run density functional theory (DFT) quantum chemistry calculations
| * [[RALPH@home]] developement site for Rosetta@home
| * [[RALPH@home]] development site for Rosetta@home


|-
|-
Line 346: Line 346:


|-
|-
| * [[TheSkyNet POGS]] measure the resolved stellar mass, star formation rate and dust content of nearby galaxies
| * [[TheSkyNet POGS|theSkyNet POGS]] measure the resolved stellar mass, star formation rate and dust content of nearby galaxies
| * [[UFluids@Home]] support research into satellite propellant management and lab-on-a-chip devices
| * [[UFluids@Home|µFluids@Home]] support research into satellite propellant management and lab-on-a-chip devices


|-
|-

Revision as of 12:45, 1 October 2026



BOINC Projects
The most comprehensive encyclopedia of BOINC volunteer computing projects on the web
The definitive, community-maintained table documenting every known active and retired BOINC project. The most comprehensive BOINC project list anywhere on the internet.
101
Projects documented
10+
Research fields
2026
Continuously updated

What is a BOINC project? A BOINC project is a website and associated server set up by an individual or group to distribute applications to BOINC volunteer computing devices. Those devices deliberately attach to receive, process, and return results for further scientific research at no cost to the researcher, and no cost to the volunteer beyond electricity.

BOINC stands for Berkeley Open Infrastructure for Network Computing, developed at the University of California, Berkeley. Any researcher can create a BOINC project; any person can donate their idle CPU or GPU time to one.

📋 The BOINC Projects Master Table
The List of all BOINC projects table is the heart of this wiki — a structured, sortable reference covering project name, research field, institution, supported platforms, active status, GPU support, and more. It is the primary reason this resource exists and the most complete registry of BOINC projects available anywhere.

View the complete list of BOINC projects →

📺 BOINC Project Screensaver Archive
Before modern power management made them obsolete, every BOINC project shipped a real-time animated screensaver showing the computation in progress, including protein chains folding, star fields sweeping and climate models spinning. All 71 known screensaver recordings, spanning projects from SETI@home to Pirates@Home, are now preserved in one place — with one exception: the NanoHive@Home screensaver, which survives only as a static image, its animation never recorded.

View the BOINC Screensaver Archive →

Local BOINC project wiki pages

Each project below has its own dedicated article on this wiki. Projects are grouped by research domain and activity status.

✦ Active BOINC projects

🔭 Astrophysics, Cosmology & Space
* Einstein@Home gravitational wave and pulsar detection * MilkyWay@home mapping the Milky Way's structure
* LHC@home CERN particle physics simulations * Gaia@home ESA Gaia mission data reduction
* SPACIOUS@home space situational awareness
🧬 Biology, Medicine & Biochemistry
* GPUGRID GPU-accelerated biomolecular simulations * TN-Grid neurological research
* Rosetta@home protein structure prediction * SiDock@home drug candidate screening
🔢 Mathematics, Number Theory & Cryptography
* BitBOINC search for the private keys of selected, long-unclaimed Bitcoin puzzle addresses * Eternity II search for improved arrangements of the 256-piece Eternity II edge-matching puzzle
* Gerasim@home multi-project, most recently number field sieve factorisation
* PrimeGrid prime number searches across many sub-projects * NFS@Home number field sieve factorisation
* SRBase Sierpinski-Riesel base search * NumberFields@Home algebraic number field tables
* Moo! Wrapper distributed.net RC5-72 wrapper * ODLK orthogonal diagonal Latin squares
* ODLK1 ODLK variant 1 * ODLK2025 ODLK 2025 campaign
* Rakesearch Latin square searches * YAFU yet another factorisation utility
🌍 Climate, Environment & Earth Sciences
* climateprediction.net global climate ensemble modelling * Asteroids@home asteroid orbit determination
* Radioactive@home background radiation monitoring
🤖 Artificial Intelligence, Computing & Infrastructure
* BOINC Central BOINC infrastructure project
* IThena.Computational computational measurement network * IThena.Measurements network performance metrics
* Yoyo@home scientific and mathematical subprojects * WUProp@Home work unit propagation statistics
🧪 Physics, Chemistry & Materials Science
* USPEX@HOME crystal structure prediction * World Community Grid multi-domain humanitarian research
🕹️ Community, Recreation & Miscellaneous
* Minecraft@Home Minecraft world-seed research * PRIVATE GFN SERVER private Generalized Fermat Number server
🧫 Test & Development Projects
These projects serve as active testing and development platforms for BOINC software and infrastructure rather than primary research goals.
* Cpdnboinc dev cpdn development and testing server * BOINC Alpha Test test new versions of the BOINC client software on a wide range of hardware and operating systems

✦ Paused BOINC projects

⏯ Paused projects (expand)
These projects are temporarily suspended but have not formally closed. Work may resume in future.
* DENIS@home cardiac electrophysiology research, currently paused

✦ Retired & inactive BOINC projects

⏸ Retired projects (expand)
These projects have suspended operations or are no longer accepting new work units. Their pages are preserved here for historical reference and research continuity.
* ABC@home searched for abc-triples related to the abc conjecture in number theory * Albert@Home development site for Einstein@Home
* Amicable Numbers amicable pair enumeration * AQUA@home model the performance of superconducting adiabatic quantum computers
* Axiom Distributed AI distributed AI model training * Big and Ugly Rendering Project distributed video rendering
* BlackHoles@Home black hole binary merger waveforms * BOINC@TACC routes computing jobs from TACC supercomputers to volunteer devices
* BRaTS@Home perform gravitational lensing ray-tracing simulations of galaxy clusters * CAS@home hosted by the Chinese Academy of Sciences, best known for running the TreeThreader protein structure
* Cels@Home modeled cell adhesion and cell migration in the extracellular matrix * Chess@Home build a labeled dataset intended for training a machine-learned classifier of winning position
* Chess960@home built a database of Chess960 (Fischer Random Chess) games to study sound opening play * Collatz Conjecture testing the 3x+1 conjecture
* Correlizer study the organization of genomes using long-range correlation analysis of chromosomes * Cosmology@Home astronomical research
* Data freezer long-term data archival research * DepSpid build a database of dependency relationships between web servers and domain
* Distributed Hardware Evolution Project synthesize self-checking digital hardware circuits * Docking@Home CHARMM-based protein-ligand docking simulations to search for new pharmaceutical drugs
* EDGeS@Home bridged desktop grids and service grids to support scientific applications * Enigma@Home break unsolved German Kriegsmarine Enigma M4 radio messages from the Second World War
* eOn simulate long timescale evolution of atomic scale systems in chemistry and materials science * FreeHAL@home generate and convert semantic networks for the self-learning chatbot FreeHAL
* GoofyxGrid@Home NCI non-covalent interaction analysis * HashClash search for MD5 and SHA-1 hash collisions, culminating in the 2008 rogue certificate authority attack
* Ibercivis Spanish multi-application platform spanning nuclear fusion, protein docking, materials science and number theory * Kryptos@Home attempt to decrypt K4, the unsolved fourth passage of the Kryptos sculpture at CIA headquarters
* Leiden Classical submit personal classical mechanics and molecular dynamics simulations * LODA integer sequence program synthesis
* Malariacontrol.net simulate the transmission dynamics and health effects of malaria * MindModeling@Home computational cognitive modeling to study human performance and learning
* MLC@Home understanding and interpreting complex machine learning models * NanoHive@Home used the NanoHive-1 nanospace simulator to search for failure modes in tooltips
* nanoHUB@Home nanotechnology simulation * Parlea RNA 3D structure motif analysis
* Pirates@Home help to develop Einstein@Home screensaver and test BOINC software * POEM@HOME all-atom free-energy simulations to predict protein structure and folding
* Predictor@home protein folding and the first BOINC project * proteins@home tackled the inverse protein folding problem
* QMC@Home develop and apply Quantum Monte Carlo (QMC) methods for use in quantum chemistry * Quake-Catcher Network used accelerometers in laptops and USB sensors to build an earthquake detection network
* QuChemPedIA@home run density functional theory (DFT) quantum chemistry calculations * RALPH@home development site for Rosetta@home
* Ramanujan Machine conjectured mathematical identities * Rectilinear Crossing Number Project determine the rectilinear crossing number of the complete graph K18
* RNA World (beta) RNA folding and molecular evolution * SAT@home solve hard instances of the Boolean satisfiability problem
* SciLINC indexed digitized botanical literature * SETI@home search for extraterrestrial intelligence
* SIMAP pre-calculated protein sequence similarities for a database used by bioinformaticians * Spinhenge@home simulating spin dynamics in nanoscale molecular magnets
* SPT Symmetric Prime Tuples * SZTAKI Desktop Grid MTA SZTAKI in Budapest, running mathematics, physics, and digital humanities applications
* Taiwan Desktop Grid bridging Taiwanese volunteer computers to European e-Science service grid infrastructure * TANPAKU used a Brownian dynamics method to study protein folding
* T.Brada Experimental Grid experimental BOINC testbed hosting the Symmetric Prime Tuples and PADLS Total mathematical sub-projects * The Lattice Project Condor and PBS clusters, chiefly supporting phylogenetic analysis with the GARLI software
* theSkyNet POGS measure the resolved stellar mass, star formation rate and dust content of nearby galaxies * µFluids@Home support research into satellite propellant management and lab-on-a-chip devices
* Universe@Home stellar evolution modelling * Virtual Prairie simulations of clonal plant growth to inform the ecological design of sustainable prairie ecosystems
* Volpex@Home run communicating parallel programs through process replication and a shared dataspace * WEP-M+2 Project mersenne-related prime search

How to participate in BOINC projects

1. Download BOINC
Get the free BOINC client. Available for Windows, macOS, Linux, and Android.
2. Choose a project
Browse the complete BOINC projects list on this wiki. Filter by research field, platform support, or GPU availability.
3. Attach & contribute
Attach via the BOINC client, and your idle computer begins processing work units automatically.

About this wiki

This BOINC projects MediaWiki is researched, written, and maintained by BOINC Synergy — a volunteer initiative dedicated to documenting the global BOINC ecosystem. The projects table is considered the flagship resource: a single, structured, continuously-updated registry of every known BOINC project, past and present.

Corrections, additions, and edits are welcome. If you know of a BOINC project not yet listed, please use the talk page or contact BOINC Synergy directly.