Rigid Constraint Self-Pressurized Spherical Fusion Device Research
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| Format: | Recurso digital |
| Langue: | anglais |
| Publié: |
Zenodo
2026
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| _version_ | 1866901231529623552 |
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| author | zhang, qin |
| author_facet | zhang, qin |
| contents | <p>This study proposes an original theoretical model based on spherical rigid boundary constraints. It investigates the steady-state energy operation mechanism of ion aggregation systems under closed boundary conditions, analyzes particle motion and energy circulation rules in closed constrained space, and provides innovative theoretical basis for stable energy release and material structure optimization under extreme boundary limitation.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_19665587 |
| institution | Zenodo |
| language | eng |
| publishDate | 2026 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Rigid Constraint Self-Pressurized Spherical Fusion Device Research zhang, qin Nuclear physics Nuclear physics Theoretical physics rigid Constraint nuclear fusion <p>This study proposes an original theoretical model based on spherical rigid boundary constraints. It investigates the steady-state energy operation mechanism of ion aggregation systems under closed boundary conditions, analyzes particle motion and energy circulation rules in closed constrained space, and provides innovative theoretical basis for stable energy release and material structure optimization under extreme boundary limitation.</p> |
| title | Rigid Constraint Self-Pressurized Spherical Fusion Device Research |
| topic | Nuclear physics Nuclear physics Theoretical physics rigid Constraint nuclear fusion |
| url | https://doi.org/10.5281/zenodo.19665587 |