Maritime Threat
Fleet-balance evidence, expanding submarine and surface forces, drone and missile pressure, and the operational requirement for a restored escort layer.
Open Threat EvidenceOverview, elevator pitch, and white-paper entry point.
National Readiness Case
America did not simply lose ships. It lost fleet balance. In 2001, the United States Navy operated 27 cruisers, 53 destroyers, and 35 guided-missile frigates. As of August 12, 2026, seven Ticonderoga-class cruisers remain commissioned. USS Shiloh and USS Lake Erie are scheduled to inactivate on September 30, producing the five-cruiser FY2026 year-end projection. The FY2027 budget proposal would then retire USS Princeton, USS Robert Smalls, USS Gettysburg, and USS Chosin, leaving only USS Cape St. George. The Navy also projects 79 destroyers and no commissioned guided-missile frigates (FFGs) at FY2026 year-end. Destroyer capacity increased, but the dedicated frigate and cruiser layers largely disappeared, concentrating anti-submarine escort, air and missile defense, surface warfare, strike, and fleet-command demands in an increasingly burdened destroyer force.
| Ship type | 2001 | FY2026 year-end projection | Change |
|---|---|---|---|
| Aircraft carriers | 12 | 11 | -1 |
| Cruisers | 27 | 5 (7 commissioned on Aug. 12) | -22 at year-end |
| Destroyers | 53 | 79 | +26 |
| Guided-missile frigates (FFG) | 35 | 0 | -35 |
| Submarines | 73 | 63 | -10 |
The undersea gap is becoming more dangerous, not less. Submarine forces and modern surface fleets are proliferating while the United States has no commissioned FFG. One published 2026 international classification counts 419 frigates worldwide, including 46 in China and 0 in the United States. International labels vary, so this is a strategic indicator rather than a direct capability comparison; the operational fact remains that many navies retain a dedicated escort layer while the USN does not. China is also continuing construction of cruisers, destroyers, frigates, and submarines. Review the dated fleet and threat evidence.
The production system behind the fleet is also in distress. Too few yards and suppliers carry too much work, facilities and equipment are aging, and every major battle-force shipbuilder faces workforce limitations. Suitable former military and industrial properties remain contaminated or underused while surrounding communities carry environmental burdens and have lost access to skilled industrial employment.
Government control of the production path is a readiness requirement. Every new TriSeadon development RFP requires government ownership or equivalent controlling rights in the resulting foreground IP and complete production package. Existing privately funded background IP is not confiscated: use existing government rights where sufficient, license only when it beats replacement value, or keep the legacy system in service while competing a government-controlled successor. The objective is one Navy baseline, multiple qualified producers, and interchangeable accepted output, with classified and safety-critical data protected rather than publicly released. Open the Government Arsenal Standard.
The transition protects current missions. TriSeadon does not stop today's carrier, submarine, amphibious, auxiliary, aviation, unmanned, weapons, sustainment, or decommissioning work. Arleigh Burke construction continues while TriSeadon gears up. Contractors may enter at startup or later, and future surface-combatant demand shifts only through formal Navy, Congressional, and contracting decisions. Open the Industry Transition Compact.
TriSeadon is the integrated response. It restores three complementary combatants as one coordinated engineering family: an FFG for anti-submarine warfare, a DDG for air and missile defense, and a CAG Guided-Missile Heavy Cruiser for surface warfare, fleet command, and naval fire support. The same program expands shipyards and fifty-state module production, rebuilds workforce pipelines, strengthens DLA-centered supply and reserve control, reclaims suitable contaminated industrial properties, and establishes scheduled refits that keep every ship current.
The ships can change; the disciplined pathway remains. The final Navy-approved hulls require full engineering, but the common technology ladder begins every mission with a fielded system, develops the future system without delaying construction, and inserts it only after certification and DLA support are ready. When independent performance gates remain satisfied, Earned Program Continuity carries the minimum viable TriSeadon rate into the Navy budget request while Congress retains the funding decision. Open the Technology Ladder | Open Earned Program Continuity.
Build the fleet. Restore the industry. Reclaim the land. Control the architecture.
Fleet-balance evidence, expanding submarine and surface forces, drone and missile pressure, and the operational requirement for a restored escort layer.
Open Threat EvidenceSee how the ASW FFG, air-defense DDG, and Guided-Missile Heavy Cruiser restore specialization while operating as one fleet family.
Open the Three ClassesFull shipyards, module campuses, new capacity, competition, acquisition, cleanup, and the national production architecture.
Open Shipbuilding StrategyConnect suitable contaminated and underused properties to cleanup, productive reuse, accountable ownership, and long-term community value.
Open Reclamation StrategyNational credentials, unions, colleges, veterans, regional training, labor mobility, and durable industrial employment.
Open Workforce StrategyBuild-to-print technical packages, qualified multi-source production, government-controlled interfaces, DLA procurement, reserve inventory, and sustainment.
Open the Arsenal StandardProtect current shipbuilding and sustainment, keep Arleigh Burke construction as a bridge, and let contractors enter TriSeadon at startup or later.
Open the Transition CompactFFG, DDG, CAG, fleet roles, crews, aviation, embarked forces, renderings, and expanded hull concepts.
Open ShipsNew systems, mature baselines, modular interfaces, readiness gates, fallbacks, and insertion pathways.
Open TechnologyGOGO, GOCO, COCO, module campuses, site acquisition, environmental cleanup, and national construction capacity.
Open ShipyardsImplementation, annual starts, lane usage, build sequence, and the standard five-year refit cycle.
Open ProductionRecruiting, national credentials, training pipelines, labor mobility, and contractor training performance.
Open WorkforceDLA supply, qualified civilian sourcing, module acceptance, delivery, reserve inventory, and sustainment.
Open LogisticsShip cost, yard investment, technology funding, recovery mechanisms, affordability, and program controls.
Open FinancialsOpen Ships | Open Shipyards | Open Production | Open Financials | Open Source Library