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HFRC Facility

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Summary

The HFRC (HuaZhong FRC) facility at HUST uses collisional merging formation — the same method as TAE C-2W (US) and Nihon FAT-CM (Japan). This is China's primary experimental FRC platform, designed to study plasma stability, confinement, and sustained operation. References TAE C-2W parameters: 0.2 T field, 3×10^19 m^-3 density, 3 keV temperature, 30 ms sustain.

Deep Dive Analysis

Intelligence Summary: HFRC Facility

Node Identity: The HFRC (HuaZhong FRC) Facility is a "Hardware" group node at HUSTChina's primary experimental FRC platform. The facility uses collisional merging formation, the same method as TAE Technologies' C-2W (Norman) device in the US and Nihon University's FAT-CM in Japan. Two compact toroids are formed and then merged collisionally to create a larger, hotter FRC. The facility is designed to study plasma stability, confinement, and sustained operation, explicitly referencing TAE C-2W parameters: 0.2 T magnetic field, 3×10^19 m^-3 density, 3 keV temperature, 30 ms sustainment.

Strategic Relevance: The HFRC Facility is China's flagship FRC experimental platform and the physics foundation for the entire weapons pipeline. While CAE's FRC Pulsed Neutron Source represents applied hardware, HFRC is where the fundamental physics is validated: FRC formation, stability, heating, and sustainment. The choice of collisional merging formation — the same method used by the most advanced US commercial FRC program (TAE C-2W) — indicates China is following the most proven international pathway. The facility's research into tilt mode instability, NBI heating, and aneutronic fuels (p-B11, D-3He) directly informs the weapons development at CAE via the MCF policy framework. HFRC's co-location with YMTC in Wuhan creates a natural talent and technology pipeline between semiconductor manufacturing and FRC control systems.

Technical Focus / Capabilities:

  • Collisional Merging Formation: Two compact toroids formed by theta-pinch, then translated and merged collisionally — producing a larger, hotter, more stable FRC than single-formation methods
  • FRC Stability Studies: Tilt mode instability mitigation, MHD stability boundaries, transport scaling — the primary physics challenges
  • NBI Heating: Neutral Beam Injection for FRC plasma heating and sustainment, extending plasma lifetime beyond initial formation
  • Aneutronic Fuel Research: Both p-B11 (proton-boron, no neutrons — ideal for weapons) and D-3He (reduced neutrons) explored at this facility
  • Plasma Diagnostics: Thomson scattering, interferometry, neutron diagnostics, and magnetic probe arrays for comprehensive FRC characterization

Network Linkage: The HFRC Facility maintains 4 documented connections: uses Collisional Merging Formation; studies FRC Stability Research; uses NBI Heating Research; uses Plasma Diagnostics Development. Operated by HUST. D-3He and p-B11 fuel research explored at this facility. Enabled by Superconducting Magnet Technology and Radiation-Hardened Electronics. Monitored by PLA Strategic Support Force. Tracked by FRC Weaponization Timeline.

Key Findings

  • Technical Focus / Capabilities:
  • Collisional Merging Formation: Two compact toroids formed by theta-pinch, then translated and merged collisionally — producing a larger, hotter, more stable FRC than single-formation methods
  • FRC Stability Studies: Tilt mode instability mitigation, MHD stability boundaries, transport scaling — the primary physics challenges
  • NBI Heating: Neutral Beam Injection for FRC plasma heating and sustainment, extending plasma lifetime beyond initial formation
  • Aneutronic Fuel Research: Both p-B11 (proton-boron, no neutrons — ideal for weapons) and D-3He (reduced neutrons) explored at this facility

Citations (2)

  1. [1]
  2. [2]

External Primary Sources (3)

Related Entities (11)

Network Graph

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Glossary Definition

The HFRC (HuaZhong FRC) facility at HUST uses collisional merging formation — the same method as TAE C-2W (US) and Nihon FAT-CM (Japan). This is China's primary experimental FRC platform, designed to

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Research References

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Frequently Asked Questions

What is HFRC Facility?
The HFRC (HuaZhong FRC) facility at HUST uses collisional merging formation — the same method as TAE C-2W (US) and Nihon FAT-CM (Japan). This is China's primary experimental FRC platform, designed to study plasma stability, confinement, and sustained operation. References TAE C-2W parameters: 0.2 T field, 3×10^19 m^-3 density, 3 keV temperature, 30 ms sustain.
What is HFRC Facility connected to?
HFRC Facility is directly connected to 11 entities in the network graph, including Huazhong University of Science and Technology (HUST), PLA Strategic Support Force, Collisional Merging Formation. These connections represent documented relationships such as operates, monitors, uses. Explore the full network using the interactive graph for complete relationship mapping.
Where can I find more details about HFRC Facility?
A full intelligence dossier is available for HFRC Facility, including 0 source documents, deep-dive analysis, and network linkage assessment. Visit the dossier page for the complete profile.

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