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Recent Trends of Impingement Cooling System Enhancement for Gas Turbine

机译:燃气轮机冲击冷却系统增强趋势

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Efforts have been given to improve the turbine blade's ability to withstand high temperature for a long period of time by implementing effective cooling system. There are many aspects that should be considered when implementing impingement cooling. This paper will only cover two trending aspects in impingement cooling implementation; the jet-to-target plate distance and the application of ribs in promoting better impingement cooling performance. For target plate distance to impingement jet diameter value, H/d > 1, the area-averaged Nusselt number also decreases as the H/d value increases. This may have been due to a reduction of the amount of momentum exerted by the impinging jets onto the target plate. For H/d < 1, the results have been proven otherwise. Heat transfer in impingement/effusion cooling system in crossflow with rib turbulators showed higher heat transfer rate than that of a surface without ribs because the ribs prevent the wall jets from being swept away by the crossflow and increase local turbulence of the flow near the surface. It could be concluded that both H/d ratio and ribs installation play an important role in enhancing impingement cooling system's heat transfer effectiveness.
机译:已经努力通过实施有效的冷却系统来改善涡轮机叶片耐高温承受高温的能力。在实现冲击冷却时应该考虑许多方面。本文仅涵盖冲击冷却实施中的两个趋势方面;喷射目标板距离和肋在促进更好的冲击冷却性能方面的应用。对于撞击射流直径值的目标板距离,H / D> 1,面积平均的NUSESET数量也随着H / D值的增加而降低。这可能是由于将撞击射流施加到靶板上的动量量的减少。对于H / D <1,结果已被证明。具有肋湍流器的撞击/积液冷却系统中的热传递,具有罗纹湍流器的发射率高于没有肋骨的表面的传热速率,因为肋条防止壁射流通过横流扫除并增加表面附近流动的局部湍流。可以得出结论,H / D比和肋骨安装都在提高冲击冷却系统的传热效果方面发挥着重要作用。

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