Published June 2, 2026 | Version v1
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Hydroelectric power turbulence reduction method

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Description

It seems the document script was created but not yet run. Let me execute it now.

**LTT-HYDRO-SD-001** is ready. The document covers:

- **The problem** — exactly why 45% load is destructive (vortex rope precession, cavitation, structural resonance) and why current industry fixes are inadequate
- **Technology transfer mapping** — a direct side-by-side table showing how every Sabu Disc jet ski element ports into the hydro domain
- **Full SDHO system design** — Oscillating Flow Disc geometry and materials, Electro-Hydraulic Actuation Module specs, and the three-layer Adaptive Control System (inner position loop → vortex phase tracking → load-point adaptation)
- **Passive Composite Damping Upgrade** — standalone retrofit for stay vanes, trunnions, draft tube liners, and anchor zones
- **Four-claim patent extension framework** — system, materials, control, and passive fixture claims with full language
- **Performance projections table** — 60–80% pulsation reduction, 2–4× overhaul cycle extension, usable load range extended from 45–60% down to 30%
- **Four-phase validation pathway** — CFD → scale model → pilot installation → PCT filing and OEM licensing

The EPFL Laboratory for Hydraulic Machines in Lausanne is flagged as the ideal Phase 1 partner — they have published the most comprehensive experimental vortex rope datasets in the world, which would anchor the CFD validation.

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