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Heat transfer characteristics for double water-jets on thick plates with various jet velocities and heights

机译:具有各种喷射速度和高度的厚板上双水喷气机的传热特性

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摘要

During cooling, the array jet impact can achieve a rapid and uniform cooling of the high-temperature plate. Previous research results mostly focused on single-jet cooling of thin plates, but the complex flow and heat transfer characteristics between multiple jets could not be obtained. To clarify the heat transfer mechanisms and cooling speed fields characteristics in different flow regions, double water-jet impingement experiments were carried out on an AISI 304 austenitic stainless-steel plate with a thickness of 50 mm. The jet exit velocity was set to 2.95, 5.90, 8.06, and 11.80 m/s, while the jet height was set to 50, 150, 250,350, and 450 mm. Pure water was selected as the working fluid with a constant temperature of 12.8 °C. The results show that a complex trend with sequential increasing, decreasing, and increasing behaviors appears in the wetting front width, upon increasing the wetting region diameter. The confluence fluid was found to reduce the influence caused by different jet velocities and to increase the influence caused by different jet heights. In addition, it was found that an excessive amount of accumulated fluid reduces the heat transfer efficiency during transition boiling. Finally, the correlations between maximum heat flux and average maximum cooling speed were established, which provide useful data for optimizing the cooling technology.
机译:在冷却过程中,阵列喷射冲击可以实现高温板的快速和均匀的冷却。以前的研究结果主要集中在薄板的单喷射冷却上,但不能获得多个喷射之间的复杂流和传热特性。为了阐明不同流量区域的传热机制和冷却速度场特性,在厚度为50mm的AISI 304奥氏体不锈钢板上进行双水喷射冲击实验。喷射出口速度设定为2.95,5.90,8.06和11.80 m / s,而喷射高度设定为50,150,250,350和450 mm。选择纯水作为工作流体,恒定温度为12.8℃。结果表明,在增加润湿区域直径时,在润湿前宽度上出现了顺序增加,减小和增加行为的复杂趋势。发现汇合液降低了不同喷射速度造成的影响,并增加不同喷射高度造成的影响。另外,发现过度累积的流体量会降低过渡沸腾过程中的传热效率。最后,建立了最大热通量与平均最大冷却速度之间的相关性,其提供了优化冷却技术的有用数据。

著录项

  • 来源
    《Heat and mass transfer》 |2021年第10期|1707-1715|共9页
  • 作者单位

    State Key Laboratory of Rolling and Automation Northeastern University 110819 Shenyang China;

    State Key Laboratory of Rolling and Automation Northeastern University 110819 Shenyang China;

    State Key Laboratory of Rolling and Automation Northeastern University 110819 Shenyang China;

    State Key Laboratory of Rolling and Automation Northeastern University 110819 Shenyang China;

  • 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

    Thick plate; Jet velocity; Jet height; Rewetting; Cooling speed peak;

    机译:厚板;喷射速度;喷射高度;重新润湿;冷却速度峰值;

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