{
  "answer": "They combine high-availability compute with safety-critical power, cooling, grid, physical-protection, and regulatory systems. A failure can cross from data loss into physical consequence, so the architecture must protect critical functions through deterministic separation, consequence engineering, bounded autonomy, and tested recovery rather than relying on ordinary enterprise controls.",
  "canonicalUrl": "https://xn--mwe.com/questions/why-do-nuclear-powered-datacenters-need-a-different-security-architecture/",
  "claimStatus": "PROJECT DOCTRINE",
  "correctionStatus": "CURRENT K05 RELEASE",
  "id": "K01-ANSWER-085",
  "lastReviewed": "2026-08-16",
  "question": "Why do nuclear-powered datacenters need a different security architecture?",
  "releaseId": "K12-2026-08-16",
  "researchCutoff": "2026-08-16",
  "shortAnswer": "They combine high-availability compute with safety-critical power, cooling, grid, physical-protection, and regulatory systems. A failure can cross from data loss into physical consequence, so the architecture must protect critical functions through deterministic separation, consequence engineering, bounded autonomy, and tested recovery rather than relying on ordinary enterprise controls.",
  "slug": "why-do-nuclear-powered-datacenters-need-a-different-security-architecture",
  "sourceRevalidatedAt": "2026-08-15T23:00:00Z",
  "status": "PROJECT DOCTRINE",
  "topic": "critical-datacenter-protection",
  "type": "Question"
}
