Volume 21 Issue 12
Dec.  2009
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wang yaqing, liu minghou, liu dong, et al. Experimental study on spray cooling for high-power laser[J]. High Power Laser and Particle Beams, 2009, 21.
Citation: wang yaqing, liu minghou, liu dong, et al. Experimental study on spray cooling for high-power laser[J]. High Power Laser and Particle Beams, 2009, 21.

Experimental study on spray cooling for high-power laser

  • Publish Date: 2009-12-15
  • Using water as coolant, TG0.3 full-cone nozzles supplied by Spraying Systems Co. are applied to study heat transfer performance of micro-channel surface in non-boiling regime of spray cooling when volumetric flux ranges from 0.044 m3/(m2·s to 0.053 m3/(m2·s. The results indicate that heat transfer is obviously enhanced for micro-channel surfaces relative to the flat surface. It is found that when the wall temperature is 52 ℃ and the volumetric flux is 0.044 m3/(m2·s, the heat flux dissipated on micro-channel surface, whose fin height is 0.2 mm, could reach 260 W/cm2; when the volumetric flux increases to 0.053 m3/(m2·s, the heat flux could reach 376 W/cm2 at the same surface temperature. For the sm
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