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<title>Abstract</title> <p>As global warming accelerates and hyper-scale Artificial Intelligence Data Centers (AIDC) proliferate, conventional vapor-compression HVAC systems exacerbate urban heat islands and thermodynamic entropy via Landauer heat dissipation. Here, we report the experimental realization of an outdoor-unit-free, zero-emission reversible cooling architecture based on acoustic phonon phase cancellation and micro-watt Adiabatic Charge-Recovery Logic (ACRL). By deploying a 13.56MHz destructive phonon resonance field, ambient thermal vibrational energy is phase-canceled (thermal noise-canceling) and converted into electric potential, achieving a 94.7% charge recovery rate (ηrec) back to the power grid. Controlled by a 0.42MB virtual Quantum Processing Unit (vQPU) kernel running on a fixed 19.62MB static ring-buffer envelope, the system bounds operational computational latency to 0.458 ms (O(1) flat-line). Supported by KIPO Patent Application 10-2026-0143175 and audited by Google DeepMind Antigravity AI, this paradigm eliminates external compressors (0 dB noise, 0.00% external heat exhaust) while reducing HVAC power consumption by over 90%, offering a transformative pathway for planetary climate mitigation and AIDC thermal management.</p>

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heat thermal aidc hvac phonon

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