首页> 外文会议>ASME international heat transfer conference;IHTC14 >MEASUREMENT OF HEAT TRANSFER AND PRESSURE DROP DURING CONDENSATION OF CARBON DIOXIDE IN MICROSCALE GEOMETRIES
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MEASUREMENT OF HEAT TRANSFER AND PRESSURE DROP DURING CONDENSATION OF CARBON DIOXIDE IN MICROSCALE GEOMETRIES

机译:微小几何形状中二氧化碳冷凝过程中传热和压降的测量

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Heat transfer coefficients and pressure drops during condensation of carbon dioxide (CO_2) are measured in small quality increments in microchannels of 100 < D_h < 200 |im. Channels are fabricated on a copper substrate by electroforming copper onto a mask patterned by X-ray lithography, and sealed by diffusion bonding. The test section is cooled by chilled water circulating at a high flow rate to ensure that the thermal resistance on the condensation heat transfer side dominates. A conjugate heat transfer analysis in conjunction with local pressure drop profiles allows driving temperature differences, heat transfer rates, and condensation heat transfer coefficients to be determined accurately. Heat transfer coefficients are measured for G = 600 kg m~(-2) s~(-1) for 0 < x < 1 and multiple saturation temperatures. Preliminary results for a 300 x 100 urn (15 channels) test section are presented. These data are used to evaluate the applicability of correlations developed for larger hydraulic diameters and different fluids for predicting condensation heat transfer and pressure drop of CO_2.
机译:在100

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