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EVAPORATIVE HEAT TRANSFER FROM TEN-MICRON MICRO-CHANNELS

机译:从十微米微通道的蒸发热传递

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Evaporative heat transfer from ten-micron square open-top micro-channels is investigated experimentally. The channels are fabricated by spinning ten microns of SU-8 on a two micron thick silicon membrane and using a photolithography process to create micro channels in radial and annular patterns. The working fluid, FC77, is pumped by capillary forces into the channels from a reservoir at the edge of the silicon membrane. Electrical power is dissipated in a thin-film heater in the center of the membrane. The liquid front of working fluid in the channels is visualized with a long-distance microscope and CCD camera. Sensible heat conducted radially out of the membrane is measured with two concentric annular PRT's. The mass of working fluid evaporated from the micro-channels is determined gravimetrically. A global energy balance including latent and sensible heat transfer out of the system is then tabulated. The study shows that only five to ten percent of the power going into the membrane is carried away by evaporation while the remaining ninety to ninety-five percent of the power is conducted out along the membrane.
机译:通过实验研究了10微米方形俯瞰微通道的蒸发热传递。通过在两个微米厚的硅膜上旋转10微米SU-8并使用光刻工艺来制造通道,以在径向和环形图案中产生微通道。工作流体FC77通过毛细管泵送到硅膜边缘处的储存器中的通道中。电力在膜中心的薄膜加热器中散发。通过长距离显微镜和CCD相机可视化通道中的工作流体的液体前面。用两个同心的环形PRT测量径向从膜中径向传导的明智热量。热分析确定从微通道蒸发的工作流体质量。然后制表包括系统的潜在和明智的热传递的全球能量平衡。该研究表明,只有五到10%的电力进入膜的电力被蒸发带走,而剩余的九十到百分之九十五的功率沿膜进行。

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