MUMBAI, India, Aug. 12 -- Intellectual Property India has published a patent application (202611065119 A) filed by Jaiyesh Kukreti on May 18, 2026, for An Integrated Subterranean Hydro-Thermal Compute Nexus Utilizing High-Head Pressure And Asymmetric Bi-Directional Fluidic Cooling.

Inventor includes Jaiyesh Kukreti.

The application for the patent was published on August 07, 2026, under issue no. 32/2026.

Abstract: A subterranean hydro-thermal compute nexus integrates a high-density computational cluster into a high-head hydroelectric framework to eliminate traditional cooling energy costs. Situated within an isothermal deep-rock vault, a liquid-to-liquid heat exchanger transfers server waste heat into a primary high-pressure water stream. The resulting thermal gain reduces fluid dynamic viscosity by at least 30%, decreasing pipe friction factors to optimize a downstream hydraulic turbine generator. The turbine extracts kinetic shaft power while preserving a residual hydrostatic pressure head of 50-80 PSI. This residual head passively drives the warmed fluid through a primary distribution manifold into an interlocking subterranean hexagonal pipe matrix of short-path channels, limiting individual path friction and conductively dissipating the thermal load into the bedrock. An asymmetric solar-pumped bypass loop maintains identical day-and-night fluid mass flow rates via an automated bleed valve circuit, and seasonal low-temperature flushes prevent core thermal saturation bottlenecks.

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