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- W2327740789 abstract "Inserting new high power sensors and avionics upgrades on current reconnaissance air-vehicles will require development of new highly effective cooling systems. Diamond substrates cooled by aerosol or evaporative spray techniques can satisfy requirements for cooling these upgrades. Experiments have demonstrated that evaporative spray cooled diamond surfaces can maintain narrow isothermal temperature ranges of 30°C despite the heat flux load being increased from 300 W/cm to 1150W/cm. Modeling has shown that high thermal conductivity diamond heat spreaders improve the cooling effectiveness of evaporative spray. Further cooling improvements are synergistically facilitated through dense mounting or packaging of high heat flux devices on the heat spreader surfaces. Two developments have created the possibility for producing such cooling systems: (1) a source for commercial-off-the-shelf (COTS) turn-key evaporative spray cooling systems and (2) multiple sources of commercial production capability for diamond substrates. Both are currently being evaluated on-board DoD vehicles. An enabling feature of these developments is their capability to be tailored to existing or new air-vehicle configurations and cooling requirements. The opportunity to design modular and scalable cooling systems was thus created using COTS components tailorable to diverse reconnaissance platforms such as wide-bodies and UAVs. Applied Material Technologies, Inc. (AMT) and Isothermal Systems Research Inc. (ISR) have collaborated to investigate cooling systems utilizing diamond substrates and evaporative spray under Air Force sponsorship." @default.
- W2327740789 created "2016-06-24" @default.
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- W2327740789 date "2002-01-14" @default.
- W2327740789 modified "2023-09-25" @default.
- W2327740789 title "Aerosol and diamond substrate cooling for air-vehicle computers and radomes" @default.
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- W2327740789 doi "https://doi.org/10.2514/6.2002-357" @default.
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