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- W2891511568 abstract "Abstract The Microfluidic, Extreme heat flux, CMOS compatible, Heat-eXchanger (MECH-X) is an embeddable silicon-based reactor-style heat sink which has been experimentally studied by the authors. The 800 µm thick MEMS heat sink discretizes the working fluid into stacked primary and secondary chambers to enhance phase change heat transfer. Piranha Pin-Fin (PPF) microstructures—reported previously by the authors—have been employed in the primary reaction chamber. The PPF structures vent higher-enthalpy fluid into a secondary, or booster, chamber for additional heat transfer. The MECH-X system has been shown to dissipate heat loads exceeding 10,000,000 W/m2 with dielectric fluid HFE7000 while maintaining surface temperatures below 95 °C. The present work reports on flow boiling experiments performed to characterize system-level performance of the MECH-X heat sink at mass fluxes of 680, 1440, and 3350 kg/s/m2. HFE7000 was used as a coolant at ambient lab temperature (∼23 °C) and a system pressure of 377 kPa. A 3.95 mm2 heating element, which simulated a heat generating component, was maintained below 95 °C with heats loads exceeding 1 kW/cm2. Experiments were terminated at this heat flux due to saturating a 50 VDC laboratory power supply. Results are also presented at a system pressure of 239 kPa, and results are compared to first generation PPF heat sinks." @default.
- W2891511568 created "2018-09-27" @default.
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- W2891511568 date "2019-01-01" @default.
- W2891511568 modified "2023-10-12" @default.
- W2891511568 title "Ultra-high heat flux dissipation with Piranha Pin Fins" @default.
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- W2891511568 doi "https://doi.org/10.1016/j.ijheatmasstransfer.2018.09.030" @default.
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