operating-regime-fusion-20k-military-30-50k
CONCEPT dossier
Operating Regime: Fusion (20K), Military (30-50K)
CONCEPT Program/Concept UNCLASSIFIED
01 Executive_Summary
Intelligence asset in the High-Temperature Superconductors (HTS).
03 Deep_Dive_Intelligence
05b Related_Topics (1)
07 Key_Findings
- ▸ Entity Type: Concept — Operating Regime: Fusion (20K), Military (30-50K) is a technical concept or theoretical framework.
10 FAQ
What is Operating Regime: Fusion (20K), Military (30-50K)? ▾
Intelligence asset in the High-Temperature Superconductors (HTS).
What role does Operating Regime: Fusion (20K), Military (30-50K) play in the research network? ▾
Operating Regime: Fusion (20K), Military (30-50K) is classified under the "Program/Concept" category, belonging to the UNCLASSIFIED vertical group. Intelligence asset in the High-Temperature Superconductors (HTS).
What evidence supports the Operating Regime: Fusion (20K), Military (30-50K) assessment? ▾
The intelligence assessment for Operating Regime: Fusion (20K), Military (30-50K) is supported by 3 primary sources. Key sources include "High-Temperature Superconducting Coil Option for the LHD-Type Fusion Energy Reactor FFHR", "Use of high-temperature superconductors in superconducting magnetic energy power sources", and "Engineered pinning landscapes for enhanced 2G coil wire". These documents provide the evidentiary basis for the analysis.
What is the technical definition of Operating Regime: Fusion (20K), Military (30-50K)? ▾
Intelligence asset in the High-Temperature Superconductors (HTS). Entity Type: Concept — Operating Regime: Fusion (20K), Military (30-50K) is a technical concept or theoretical framework.
What is the physics behind Operating Regime: Fusion (20K), Military (30-50K)? ▾
Intelligence asset in the High-Temperature Superconductors (HTS). Entity Type: Concept — Operating Regime: Fusion (20K), Military (30-50K) is a technical concept or theoretical framework.
What external sources document Operating Regime: Fusion (20K), Military (30-50K)? ▾
Operating Regime: Fusion (20K), Military (30-50K) is documented by 3 external sources, including 2 journal-article and 1 conference-paper. Notable references include "High-Temperature Superconducting Coil Option for the LHD-Type Fusion Energy Reactor FFHR", "Use of high-temperature superconductors in superconducting magnetic energy power sources", and "Engineered pinning landscapes for enhanced 2G coil wire".
How was information about Operating Regime: Fusion (20K), Military (30-50K) collected? ▾
Information about Operating Regime: Fusion (20K), Military (30-50K) was collected through open-source intelligence (OSINT) methods, analyzing 3 declassified documents and cross-referencing findings across the research network.
What is the current status of Operating Regime: Fusion (20K), Military (30-50K)? ▾
Intelligence asset in the High-Temperature Superconductors (HTS).
How does Operating Regime: Fusion (20K), Military (30-50K) relate to compact fusion research? ▾
Overview Intelligence asset in the High-Temperature Superconductors (HTS). Entity Type: Concept — Operating Regime: Fusion (20K), Military (30-50K) is a technical concept or theoretical framework.
What documents should I read to learn more about Operating Regime: Fusion (20K), Military (30-50K)? ▾
To learn more about Operating Regime: Fusion (20K), Military (30-50K), review the 3 primary sources, and related research finding linked in the source documents section of this dossier.
Verified_Primary_Sources 3 SOURCES
primary jstage.jst.go.jp journal-article
High-Temperature Superconducting Coil Option for the LHD-Type Fusion Energy Reactor FFHR
Verifies: Fusion reactor FFHR HTS conductors operate at typical conditions of 100 kA, 13 T, and 20 K; HTS magnets at 20 K are more stable than LTS magnets at ~4 K due to increased specific heats of conductor materials; Reduced refrigeration power required at 20 K compared to 4 K LTS operation
External Link ↗
primary osti.gov conference-paper
Use of high-temperature superconductors in superconducting magnetic energy power sources
Verifies: Earliest prototype SMEPS may employ 20-30 K cryorefrigerated HTS materials engineered for coil stress resistance; Military mobile energy storage applications require HTS operating at 77 K or higher with current densities above 10^4 A/cm^2; HTS properties needed in 4-6 T magnetic fields at temperatures of 77 K or higher for military use
External Link ↗
primary osti.gov journal-article
Engineered pinning landscapes for enhanced 2G coil wire
Verifies: Ion irradiation enhances in-field critical current between 4 and 50 K in fields above 1 T for AMSC 2G wire; Performance enhancement relevant for rotating machine and magnet applications in the 30-50 K military operating regime
External Link ↗
ID: operating-regime-fusion-20k-military-30-50k
Type: concept
Region: intel-base
Last updated: Research database snapshot
Type: concept
Region: intel-base
Last updated: Research database snapshot