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Effects of heat loads on flow and heat transfer in the entrance region of a cooling duct with a staggered array of pin fins

机译:热负荷对带有交错销阵列的冷却管道入口区流量和传热的影响

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Computational analysis based on SAS, a hybrid RANS-LES method, were performed to study the effects of heat load on the unsteady flow and heat transfer in the entrance region of a cooling duct with a staggered array of short pin fins under conditions relevant to gas turbines. Results obtained with heat loads ranging from 3.2 to 582 kW/m~2 show density and velocity variations in the boundary layers created by heat transfer to affect where separation about each pin fin takes place, the row where unsteady vortex shedding starts, the frequency of shedding, and the production of turbulent kinetic energy. It also affected the vortical structures next to the endwall in how horseshoe vortices at the base of each pin interact with the shed vortices. These heat-transfer induced changes in the flow field were found to significantly reduce the rate at which row-averaged Nusselt number, Nu, increases along the duct in the entrance region and to enable Nu to be nearly constant in the post-entrance region even though the Reynolds number is decreasing along the duct. Results obtained also show steady RANS to under predict Nu throughout the duct because it could not account for the effects of vortex shedding, and unsteady RANS to under and then over predict Nu along the duct because it could not predict which row vortex shedding first starts and then over predicts its effects on heat transfer. Correlations for Nu were developed that account for heat load in the entrance and in the post-entrance regions.
机译:基于SAS的计算分析是一种混合RANS-LES方法,以研究热负荷在与气体相关的条件下具有交错的短销翅片的冷却管道入口区域的不稳定流量和传热的影响涡轮机。热负荷从3.2〜582 kW / m〜2获得的结果显示了通过传热产生的边界层中的密度和速度变化,以影响每个销翅片的分离,其中不稳定的涡旋脱落开始,频率脱落,以及湍流动能的生产。它还影响了端壁旁边的涡流结构,以如何与棚涡流相互作用的马蹄涡流。发现这些传热诱导的流场中的变化显着降低了行平方体的纽带数Nu,沿着入口区域中的管道增加的速率,并且在后入口区域中能够使nu几乎是恒定的虽然雷诺数沿着管道下降。获得的结果也显示出稳定的rans在整个管道中预测nu下的rans,因为它无法解释涡旋脱落的影响,并且不稳定的rans沿着管道预测,因为它无法预测哪个行涡旋脱落首先开始然后过度预测其对热传递的影响。向NU的相关性被开发,该载于入口处和后距离区域中的热负荷。

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