首页> 外文会议>International conference on nanochannels, microchannels and minichannels;ICNMM2009 >EXPERIMENTAL INVESTIGATION OF CRITICAL HEAT FLUX IN MICROCHANNELS FOR FLOW-FIELD PROBES
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EXPERIMENTAL INVESTIGATION OF CRITICAL HEAT FLUX IN MICROCHANNELS FOR FLOW-FIELD PROBES

机译:流场问题微通道中临界热通量的实验研究

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Critical heat flux (CHF) of water in circular stainless steel microchannels with inner diameters ranging from ~127μm to ~254 μm was investigated. Forty-five CHF data points were acquired over mass velocities ranging from 1,200 kg/m~2s to 53,000 kg/m~2s, heated lengths from 2 cm to 8 cm, and exit qualities from -0.2 to 0.15. Most of the exit qualities fell below 0.1.It was found that CHF conditions were more dependent on mass velocity and heated length than on exit thermal condition. The results were also compared to six CHF correlations, with a mean average error ranging from 22% to 261.8%. A new correlation was proposed to better predict the critical heat flux data under the thermal-hydraulic conditions studied in this investigation. In developing the correlation, 319 data points were added from two previous studies.
机译:研究了圆形不锈钢微通道中水的临界热通量(CHF),其内径在〜127μm至〜254μm范围内。在1,200 kg / m〜2s至53,000 kg / m〜2s的质量速度,2 cm至8 cm的加热长度以及-0.2至0.15的出口质量范围内采集了45个CHF数据点。大多数出口质量都低于0.1。 发现CHF条件比出口热条件更依赖于质量速度和加热长度。还将结果与六种CHF相关性进行了比较,平均平均误差范围为22%至261.8%。提出了一种新的相关性,以更好地预测在此研究中研究的热工条件下的临界热通量数据。在建立相关性时,以前的两项研究增加了319个数据点。

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