MUMBAI, India, July 13 -- Intellectual Property India has published a patent application (202621059151 A) filed by Mohite Vikram Narayan on May 09, 2026, for Tsam — Transient Surge Attenuation Module: Selective Catastrophic-Node Mechanical Consequence Mitigation System For Pressurized Industrial Containment Interfaces.

Inventor includes Mohite Vikram Narayan.

The application for the patent was published on July 10, 2026, under issue no. 28/2026.

Abstract: TSAM (Transient Surge Attenuation Module) is a selectively deployable catastrophic-node protective system for mitigating first-event mechanical consequences at pressure-boundary discontinuities — including flanges, nozzles, and seals — in pressurized industrial systems during the initial milliseconds to seconds following sudden containment breach. Representative embodiments comprise localized protective architecture incorporating first-strike interception, fragment arrest, staged diffusion, expansion buffering, controlled relief, and optional inerting and transfer. A principal inventive doctrine is the Phase Load Decoupling Doctrine, wherein Phase 1 first-strike local stagnation pressure approaches upstream line pressure at the sacrificial interception element, while Phase 3 quasi-equilibrium bulk cavity pressure approaches near-atmospheric conditions by virtue of capture void expansion, enabling distinct engineering design bases for the sacrificial liner and outer structural shell respectively. The invention further provides an expansion ratio sizing doctrine and a tiered platform architecture for consequence-severity-based selective deployment.

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