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Each module mapped below corresponds directly to an independent publication validated on ORCID and Zenodo.\n\n---\n\n## 🌌 1. DLMC v16.4: Torsional Vacuum Dynamics \u0026 Galactic Rotation Curves\n* **Zenodo DOI:** 10.5281/ZENODO.19355993 | **Date:** March 31, 2026\n* *Abstract:* A computational framework applied to galaxy rotation curves (SPARC dataset) using a torsion-based vacuum formulation.\n\n\n# 🌀 PROJECT LYNA: Unified Torsional Fluid Dynamics Ecosystem\n\n**Author:** Mounir Djebassi (ORCID: 0009-0009-6871-7693)\n\nThis repository gathers the complete computational frameworks, notebook simulations, and interactive HTML reports for the unified research program in torsional vacuum-based astrophysical modeling. Each module mapped below corresponds directly to an independent publication validated on ORCID and Zenodo.\n\n---\n\n## 🌌 1. DLMC v16.4: Torsional Vacuum Dynamics \u0026 Galactic Rotation Curves\n* **Zenodo DOI:** 10.5281/ZENODO.19355993 | **Date:** March 31, 2026\n* *Abstract:* A computational framework applied to galaxy rotation curves (SPARC dataset) using a torsion-based vacuum formulation.\n* **Associated Repository Files:** \n  * `dlmc-fram.ipynb` (Core simulation notebook)\n  * `dlmc-fram.py.py` (Python executable script)\n  * `dlmc-fram.pdf` \u0026 `dlmc-fran-html.html` (Full analytical reports)\n\n---\n\n## ☀️ 2. Project Solar Morveu v1.1.0: Unified Torsional Fluid Dynamics Framework\n* **Zenodo DOI:** [![DOI](https://zenodo.org)](https://doi.org) | **Date:** May 28, 2026\n* *Abstract:* A computational model of solar-terrestrial interactions based on DLMC-MAG and Kuramoto-Sivashinsky dynamics.\n* **Associated Repository Files:**\n  * `Solar-Morveu_v1.0.3_Mise_a_jour.zip` (Latest clean HTML update without scripts)\n  * `Solar-Morveu_v1.0.2_COMPLET.ipynb.ipynb` (Main framework notebook)\n  * `script.solar-morveu-v1.0.2.py.py` (Automation script)\n  * `Solar-Morveu_v1.0.2_COMPLET.pdf` \u0026 `html-morveu-solar.html` (Formatted data reports)\n  * `morveu-suite.zip.zip` (Complete compressed package release)\n  * `morveu.ipynb` \u0026 `morveu.py` (Subscale modeling routines)\n  * `pdf-morveu-solar.pdf` (Supplementary magnetospheric documentation)\n\n---\n\n## 🧠 3. VacuumCode: A Discrete Quantum Vacuum Substrate for Galactic Dynamics\n* **Zenodo DOI:** 10.5281/ZENODO.19508456 | **Date:** April 11, 2026\n* *Abstract:* A unified computational framework describing galactic rotation curves as emergent properties of a structured quantum vacuum substrate without dark matter.\n* **Associated Repository Files:** \n  * `vacuumcode.zip` (Pre-packaged codebase release)\n\n---\n\n## 🌀 4. The Lyna Project, FluxCore Frameworks \u0026 Unified Torsion Matrix Solutions\n*This section aggregates the multi-stage historical development of the core Torsional Fluid Dynamics matrix solutions validated on the 175 SPARC galaxies.*\n\n* **Project G.A.I.A. Φ: The Unified Torsion Matrix Solution (v14.0.2)**\n  * *Zenodo DOI:* 10.5281/ZENODO.19269184 | *Date:* March 28, 2026\n  * *Files:* `PROJECT G.A.I.A.ipynb.ipynb`, `PROJECT G.A.I.A.script.py`, `project-g.a.i.a.ipynb.ipynb`, `project-g.a.i.a.webpdf.pdf`, `project-g.a.i.a.html.html`\n* **{LumenCode}: Unified Metric Torsion Solution (v14.0.2)**\n  * *Zenodo DOI:* 10.5281/ZENODO.19293393 | *Date:* March 28, 2026\n  * *Files:* `lumencode.zip.zip`, `projet-lyna-v14.0.2.ipynb`, `projet-lyna.v14.0.2.ipynb.ipynb`, `projet-lyna-v14.0.2.pdf`, `projet-lyna-v14.0.2.html`, `projet-lyna-v.14.0.2.script.py`\n* **DLMC FluxCore \u0026 Projet LYNA Framework (v5)**\n  * *Zenodo DOI:* 10.5281/ZENODO.19121325 \u0026 10.5281/ZENODO.19121689 | *Date:* March 20, 2026\n  * *Files:* `lyna_final.zip`, `lyna_final.ipynb`, `lyna_final.py`, `lyna_final.pdf`, `lyna_final.html`, `lyna_modular.ipynb.ipynb`, `lyna_modular.py.py`, `lyna_modular.pdf`, `lyna_modular.ipynb.html`\n* **DLMC-Cascade Framework v13: Unified Metric Torsion Analysis**\n  * *Zenodo DOI:* 10.5281/ZENODO.19170647 | *Date:* March 22, 2026\n  * *Files:* `lynav13-.ipynb.ipynb`, `lynav13-script.py.py`, `lynav13-pdf.pdf`, `lynav13-.html.html`\n\n---\n\n## ⚙️ 5. Specialized Physical Simulation Sub-Modules\n\n* **EDPZ v3: Gross-Pitaevskii + Casimir Dynamique avec vortex quantique**\n  * *Zenodo DOI:* 10.5281/ZENODO.19081019 | *Date:* March 18, 2026\n  * *Files:* `edpz-v3.0.0.ipynb.ipynb`, `script-edpzv3.0.0.py.py`, `edpz-v3.0.0.pdf`, `Rapport_Final_Project_Lyna_EDPZ_v3.html`\n* **THE SOLAR MORVEU — DLMC-KS Project LYNA — Paper III**\n  * *Zenodo DOI:* 10.5281/ZENODO.19041573 | *Date:* March 16, 2026\n* **Hidden Force: Universal Scaling Law in a Nonlinear Dissipative Scalar Field**\n  * *Zenodo DOI:* 10.5281/ZENODO.18999018 | *Date:* March 13, 2026\n  * *Files:* `hydden_force.ipynb`, `hydden-force-script.py`, `pdf-hidden-force.pdf`, `hidden force.html.html`\n* **FluxCore: Grandfather Paradox Resolution — A Dynamical Framework**\n  * *Zenodo DOI:* 10.5281/ZENODO.18999740 | *Date:* March 13, 2026\n  * *Files:* `grandfather-paradone.ipynb.ipynb`, `script-grandfather-paradone.py`, `pdf-grandfather-paradoxe.pdf`, `html-grandfather-paradone.html`\n* **MORPHEUS: A Universal Reaction-Diffusion Framework**\n  * *Zenodo DOI:* 10.5281/ZENODO.18998068 | *Date:* March 13, 2026\n  * *Files:* `morpheus.ipynb.ipynb`, `morpheus-script.py`, `morpheus.pdf`, `morpheus-html.html`\n\n---\n\n## 🛡️ 13. Project Lynacore: Casimir-Regularized Non-Linear Regime\n* **Zenodo DOI:** 10.5281/zenodo.20764538 | **Date:** June 19, 2026\n* *Abstract:* This computational framework formalizes the structural integration of the {Lynacore} system, stabilizing the non-linear regime via a geometric Casimir-type regularization operator within the unified torsional fluid dynamics ecosystem.\n* **Associated Repository Files:**\n  * `lynacore/CASIMIR-REGULARIZED NON-LINEAR REGIME.zip` (Core framework compression package)\n\n---\n\n## 📂 13. Project Lyna Legacy: Research Framework \u0026 Analytical Reports\n* **Zenodo DOI:** *En attente d'attribution* | **Date:** Juin 2026\n* *Abstract:* Complete framework documentation, notebook simulations, and analytical validation figures for the Lyna Legacy torsional research matrix.\n* **Associated Repository Files:**\n  * `13_Project_Lyna_Legacy/lyna_legacy.ipynb` (Main framework notebook)\n  * `13_Project_Lyna_Legacy/lyna_legacy.pdf` \u0026 `lyna_legacy.zip` (Analytical reports and package release)\n  * `13_Project_Lyna_Legacy/lyna_legacy-supplementary_table.pdf` (Data overview sheets)\n  * `13_Project_Lyna_Legacy/figure1_rotation_curves.pdf` (Galactic curves visualization)\n  * `13_Project_Lyna_Legacy/figure2_rar_scatter.pdf` (RAR scatter analytics)\n  * `13_Project_Lyna_Legacy/figure3_model_comparison.pdf` (Model performance comparison)\n  * `13_Project_Lyna_Legacy/figure4_validation.pdf` (Structural dataset validation)\n\n---\n\n## 🌊 12. Nonlinear Hydrodynamic Regularization Framework\n* **Zenodo DOI:** 10.5281/zenodo.20530151 | **Date:** June 3, 2026\n* *Abstract:* An exploratory framework introducing a geometric stabilization operator to moderate nonlinear amplification in incompressible hydrodynamic equations.\n* **Associated Repository Files:**\n  * `12_Project_Hydrodynamics/nonlinear_hydrodynamic_systems.zip` (Contains `.ipynb` notebook, clean `.html` report, and research note `.pdf`)\n\n---\n\n## 🛠 Technical Overview\n- **Language:** Python\n- **Status:** Published research ecosystem\n- **Archiving:** GitHub + Zenodo integration\n- **License:** CC-BY-4.0\n- **Ecosystem Core Scripts:** `.gitignore`, `LICENSE`, `README.md`, `readme.md`, `readme.txt`, `Rapport_Final_Sans_Code.html`\n\n---\n\n## 📊 Master Ecosystem DOIs \u0026 Verification Badges\n\n| Computational Module | Registered Digital Object Identifier (DOI) | Official Verification Link |\n| :--- | :--- | :--- |\n| **Lynacore (v1.5.0)** | `10.5281/zenodo.20764538` | [🔗 View on Zenodo](https://doi.org) |\n| **Lyna Legacy Framework** | *En attente* | [🔗 View on Zenodo](https://doi.org) |\n| **Nonlinear Hydrodynamics** | `10.5281/zenodo.20530151` | [🔗 View on Zenodo](https://doi.org) |\n| **VacuumCode Substrate** | `10.5281/zenodo.19508456` | [🔗 View on Zenodo](https://doi.org) |\n| **DLMC Vacuum v16.4** | `10.5281/zenodo.19355993` | [🔗 View on Zenodo](https://doi.org) |\n| **LumenCode Solution** | `10.5281/zenodo.19293393` | [🔗 View on Zenodo](https://doi.org) |\n| **Project G.A.I.A. Φ** | `10.5281/zenodo.19269184` | [🔗 View on Zenodo](https://doi.org) |\n| **DLMC-Cascade v13** | `10.5281/zenodo.19170647` | [🔗 View on Zenodo](https://doi.org) |\n| **DLMC FluxCore (v5)** | `10.5281/zenodo.19121325` | [🔗 View on Zenodo](https://doi.org) |\n| **EDPZ v3 (Superfluid)** | `10.5281/zenodo.19081019` | [🔗 View on Zenodo](https://doi.org) |\n| **Solar Morveu Framework** | `10.5281/zenodo.19080481` | [🔗 View on Zenodo](https://doi.org) |\n| **MORPHEUS v1.0** | `10.5281/zenodo.18998068` | [🔗 View on Zenodo](https://doi.org) |\n| **Hidden Force Field** | `10.5281/zenodo.18999018` | [🔗 View on Zenodo](https://doi.org) |\n\n---\n\n## 🎓 Master Ecosystem Citation\nDjebassi, M. (2026). Unified torsional fluid dynamics ecosystem. Zenodo. 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