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Effect of enclosure on heat transfer characteristics of dual swirling flame impinging on a flat surface

机译:外壳对撞击平坦表面的双旋风火焰传热特性的影响

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摘要

Experimental investigations have been carried out for impingement heat transfer characteristics of an enclosed dual swirling flame for various enclosure configurations. Effects of the size of the enclosure (D_E = 70 mm, 90 mm, 90 mm, 110 mm and 150 mm) and the level of gap between the top of the enclosure and the target surface (G= 12, 16, 20, 24 and 28 mm) have been examined at fixed other operating conditions (Re(o), H/D_h and S). In addition to this, the effects of variation in outer swirling flame Reynolds numbers (Re(o) = 7000-13,000), dimensionless separation distances (H/D_h = 2-5) and the swirl number (S = 0.86, 1.54 and 2.4) have also been examined. Impingement heat transfer characteristics strongly depend on the size of the enclosure (D_E) and the level of gap (G). Larger sized enclosures (D_E of 110 and 150 mm) with smaller gap levels (G of 12 and 16 mm) perform much better than small sized enclosures (D_E of 70 and 80 mm) with larger gap levels (G of 24 and 28 mm). Heat transfer performance continuously increases with an increase in Re(o) in presence of an enclosure in contrast to unenclosed flames where performance deteriorates at high Re(o). The heat transfer enhancement effect in presence of enclosure is more pronounced at larger separation distances (H/D_h of 4 and 5) because of the formation of the outer recirculation zone (ORZ). The effect of the presence of enclosure on impingement heat transfer enhancement becomes more significant at higher levels of swirl.
机译:已经进行了实验研究,用于各种外壳配置的封闭双旋风火焰的冲击传热特性。外壳尺寸的影响(D_E = 70mm,90 mm,90 mm,110 mm和150mm)和外壳顶部之间的间隙水平和目标表面(G = 12,16,20,24已经在固定的其他操作条件下检查了28毫米(RE(O),H / D_H和S)。除此之外,外旋转火焰雷诺数的变化的影响(Re(O)= 7000-13,000),无量纲分离距离(H / D_H = 2-5)和旋流号(S = 0.86,1.54和2.4 )也被检查了。冲击传热特性强烈取决于外壳(D_E)的大小和间隙水平(G)。具有较小间隙水平的较大尺寸的外壳(D_E为110毫米),比小尺寸的外壳(D_E为70毫米)的较大尺寸水平更大,间隙水平(G为24和28mm) 。热传递性能随着在外壳存在的情况下连续增加,与未经生物的火焰相反,在高Re(O)下性能恶化的情况下。由于外再循环区(ORZ)的形成,在外壳存在下,在外壳存在下的热传递增强效果在较大的分离距离(H / D_H)上更明显。外壳存在对冲击传热增强的影响在较高水平的涡流中变得更显着。

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  • 来源
    《Heat and mass transfer》 |2021年第6期|1011-1023|共13页
  • 作者

    Girish Sapra; Subhash Chander;

  • 作者单位

    Department of Mechanical Engineering Dr. BR Ambedkar National Institute of Technology Jalandhar Punjab 144011 India;

    Department of Mechanical Engineering Dr. BR Ambedkar National Institute of Technology Jalandhar Punjab 144011 India;

  • 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
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