首页> 外文会议>ASME international heat transfer conference;IHTC14 >MICROSCALE HEAT TRANSFER MEASUREMENTS DURING SUBCOOLED POOL BOILING OF PENTANE: EFFECT OF BUBBLE DYNAMICS
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MICROSCALE HEAT TRANSFER MEASUREMENTS DURING SUBCOOLED POOL BOILING OF PENTANE: EFFECT OF BUBBLE DYNAMICS

机译:戊烷过冷池沸腾过程中的微尺度传热测量:起泡动力学的影响

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Measurements of space and time resolved heat transfer during subcooled pool boiling of pentane in earth gravity were obtained using a microscale heater array. Data from individual heater elements in the array were synchronized with bottom and side view images from two high-speed cameras. The heat transfer mechanisms during bubble growth were found to be dependent on bubble dynamics and bubble growth time. Single phase heat transfer mechanisms (transient conduction and/or microconvection) were found to be dominant for single bubbles with short growth times. Two phase heat transfer mechanisms (microlayer evaporation and/or contact line evaporation) were found to be dominant for bubbles with longer growth times.
机译:使用微型加热器阵列获得了戊烷在地球重力作用下过冷池沸腾期间的时空分辨传热的空间和时间测量结果。来自阵列中各个加热器元件的数据与来自两个高速摄像机的仰视图和侧视图图像同步。发现气泡生长期间的传热机制取决于气泡动力学和气泡生长时间。发现单相传热机制(瞬态传导和/或微对流)对于具有短生长时间的单个气泡是主要的。已发现两相传热机制(微层蒸发和/或接触线蒸发)对于具有较长生长时间的气泡是主要的。

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