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Pool boiling heat transfer on horizontal rectangular fin array in saturated FC-72

机译:饱和FC-72中水平矩形翅片阵列上的池沸腾换热

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The flow patterns and pool boiling heat transfer performance of copper rectangular fin array surfaces immersed in saturated FC-72 were experimentally investigated. The effects of the geometry parameters (fin spacing and fin length) on boiling performance were also examined. The test surfaces were manufactured on a copper block with a base area of 10 mm x 10 mm with three fin spacing (0.5 mm, 1.0 mm and 2.0 mm) and four fin lengths (0.5 mm, 1.0 mm, 2.0 mm and 4.0 mm). All experiments were performed in the saturated state at 1 atmospheric condition. A plain surface was used as the reference standard and compared with the finned surfaces. The photographic images showed different boiling flow patterns among the test surfaces at various heat fluxes. The test results indicated that closer and higher fins yielded a greater flow resistance that against the bubble/vapor lift-off in the adjacent fins. Moreover, as the heat flux approached to critical heat flux (CHF), numerous vapor mushrooms periodically appeared and extruded from the perimeter of the fin array, causing dry-out in the center of the fin array. Closer and higher fins provide more heat transfer. The results also showed that overall heat transfer coefficient decayed rapidly as the fin spacing decreased or the fin length increased. The maximum value of CHF on the base area was 9.8 x 10~5 W m~(-2) for the test surface with a 0.5 mm fin spacing and a 4.0 mm fin length, which has a value five times greater than that of the plain surface.
机译:实验研究了浸入饱和FC-72中的矩形铜翅片阵列的流动模式和池沸腾传热性能。还检查了几何参数(翅片间距和翅片长度)对沸腾性能的影响。测试表面在具有10毫米x 10毫米底部面积的铜块上制造,具有三个鳍片间距(0.5毫米,1.0毫米和2.0毫米)和四个鳍片长度(0.5毫米,1.0毫米,2.0毫米和4.0毫米) 。所有实验均在1个大气压的饱和状态下进行。将平坦的表面用作参考标准,并与翅片表面进行比较。照相图像在各种热通量下在测试表面之间显示出不同的沸腾流动模式。测试结果表明,靠近的翅片和较高的翅片产生了更大的流动阻力,从而抵抗了相邻翅片中气泡/蒸汽的剥离。此外,当热通量接近临界热通量(CHF)时,大量的蒸汽蘑菇会周期性地出现并从翅片阵列的周边挤出,从而导致翅片阵列的中央变干。靠近且较高的散热片可提供更多的热传递。结果还表明,随着翅片间距减小或翅片长度增加,总传热系数迅速下降。对于0.5 mm翅片间距和4.0 mm翅片长度的测试表面,基面CHF的最大值为9.8 x 10〜5 W m〜(-2),该值是该值的5倍。平面。

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