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Investigation of flow boiling heat transfer and boiling crisis on a rough surface using infrared thermometry

机译:红外温度测定粗糙表面流动沸腾热传递和沸腾危机的研究

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摘要

We design and build a special heater to enable infrared investigations of boiling heat transfer on surfaces featuring the typical roughness and scratch pattern of commercial-grade heat transfer surfaces (in this case a zirconium alloy typically used as fuel cladding material in nuclear reactors). We use high-speed infrared thermometry to investigate surface effects on the boiling process for both the rough infrared heater and a reference more conventional, nano-smooth infrared heater. Compared to the nano-smooth surface, the rough surface has larger nucleation sites, which require a lower nucleation temperature. The rough surface has a much smaller bubble departure volume. However, it has a much higher nucleation site density, and, overall, a higher heat transfer coefficient. We capture this behavior with a stochastic heat flux partitioning model. Notably, while the two surfaces have very different boiling dynamics, the boiling crisis has a common "signature". For both surfaces, the probability density functions of bubble footprint areas follow a power law with a negative exponent smaller than 3, also known as a scale-free distribution. We predict these observations and the onset of the boiling crisis using a continuum percolation model. These results corroborate the hypothesis of the boiling crisis as a percolative critical phase transition of the bubble interaction process.
机译:我们设计并构建一个特殊的加热器,以使具有典型粗糙度和商业级传热表面的典型粗糙度和划痕模式的表面上的红外调查(在这种情况下,通常用作核反应堆中的燃料包层材料的锆合金)。我们使用高速红外线温度测量对粗红外加热器的沸腾工艺的表面影响以及更多常规的纳米光滑红外线加热器。与纳米光滑的表面相比,粗糙表面具有较大的成核位点,需要较低的成核来温度。粗糙表面具有更小的泡沫脱离体积。然而,它具有更高的成核位点密度,并且总的来说,较高的传热系数。我们用随机热通量分区模型捕获这种行为。值得注意的是,虽然两个表面具有非常不同的沸腾动力学,但沸腾的危机具有常见的“签名”。对于两个表面,气泡足迹区域的概率密度函数遵循具有小于3的负指数的动力法,也称为无垢分布。我们使用连续渗透模型预测这些观察和沸腾危机的发作。这些结果证实了沸腾危机的假设,作为气泡相互作用过程的渗透临界相转变。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2020年第10期|120134.1-120134.14|共14页
  • 作者单位

    Department of Nuclear Science and Engineering Massachusetts Institute of Technology Cambridge MA 02139 United States;

    Department of Nuclear Science and Engineering Massachusetts Institute of Technology Cambridge MA 02139 United States;

    Department of Nuclear Science and Engineering Massachusetts Institute of Technology Cambridge MA 02139 United States;

    Department of Nuclear Science and Engineering Massachusetts Institute of Technology Cambridge MA 02139 United States;

    Department of Mechanical Engineering Massachusetts Institute of Technology Cambridge MA 02139 United States;

    Department of Nuclear Science and Engineering Massachusetts Institute of Technology Cambridge MA 02139 United States;

    Department of Nuclear Science and Engineering Massachusetts Institute of Technology Cambridge MA 02139 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Subcooled flow boiling; Boiling crisis; Heat partitioning; Surface roughness; Infrared thermometry;

    机译:过冷流量沸腾;沸腾危机;热分区;表面粗糙度;红外线温度;

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