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首页> 外文期刊>Journal of turbomachinery >The Effect of Side Wall Mass Extraction on Pressure Loss and Heat Transfer of a Ribbed Rectangular Two-Pass Internal Cooling Channel
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The Effect of Side Wall Mass Extraction on Pressure Loss and Heat Transfer of a Ribbed Rectangular Two-Pass Internal Cooling Channel

机译:侧壁质量提取对带肋矩形两通道内部冷却通道的压力损失和传热的影响

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摘要

Gas turbine blades are often cooled by using combined internal and external cooling methods where for internal cooling purposes, usually, serpentine passages are applied. In order to optimize the design of these serpentine passages it is inevitable to know the influence of mass extraction due to film cooling holes, dust holes, or due to side walls for feeding successive cooling channels as for the trailing edge on the internal cooling performance. Therefore, the objective of the present study was to analyze the influence of side wall mass extraction on pressure loss and heat transfer distribution in a two-pass internal cooling channel representing a cooling scheme with flow towards the trailing edge. The investigated rectangular two-pass channel consisted of an inlet and outlet duct with a height-to-width ratio of HI W: 2 connected by a 180 deg sharp bend. The tip-to-web distance was kept constant at W_el/W: I. The mass extraction was realized using several circular holes in the outlet pass side wall. Two geometric configurations were investigated: A configuration with mass extraction solely in the outlet pass and a configuration with mass extraction in the bend region and outlet pass. The extracted mass flow rate was 0%, 10%, and 20% of the inlet channel mass flow. Spatially resolved heat transfer distributions were obtained using the transient thermochromic liquid crystal technique. Pressure losses were determined in separate experiments by local static pressure measurements. Furthermore, a computational study was performed solving the Reynolds-averaged Navier-Stokes equations using the commercial finite-volume solver FLUENT. The numerical grids were generated using the hybrid grid generator CENTAUR. Three different turbulence models were considered: the realizable k-e model with two-layer wall treatment, the k-ω-SST model, and the v~2-f model. The experimental data of the investigation of side wall ejection showed that the heat transfer in the bend region slightly increased when the ejection were in operation, while the heat transfer in the section of the outlet channel with side wall ejection was nearly not affected. After this section, a decrease in heat transfer was observed, which can be attributed to the decreased mainstream mass flow rate.
机译:燃气涡轮机叶片通常通过使用内部和外部组合冷却方法来冷却,其中出于内部冷却的目的,通常采用蛇形通道。为了优化这些蛇形通道的设计,不可避免的是要知道由于薄膜冷却孔,灰尘孔或由于侧壁的供给(如后缘)对内部冷却性能的影响,质量提取的影响。因此,本研究的目的是分析侧壁质量提取对代表流向后缘的冷却方案的两遍内部冷却通道中压力损失和传热分布的影响。所研究的矩形两通通道由进风管和出风管组成,高宽比为HI W:2,并通过180度的急剧弯曲连接。尖端到卷筒纸的距离保持恒定为W_el / W:I。使用出口通道侧壁上的几个圆形孔实现质量提取。研究了两种几何构型:仅在出口通道中具有质量提取的结构,以及在弯曲区域和出口通道中具有质量提取的结构。提取的质量流量为入口通道质量流量的0%,10%和20%。使用瞬态热致变色液晶技术获得了空间分辨的传热分布。通过局部静压测量在单独的实验中确定压力损失。此外,进行了计算研究,使用商用有限体积求解器FLUENT求解了雷诺平均Navier-Stokes方程。使用混合网格生成器CENTAUR生成数字网格。考虑了三种不同的湍流模型:具有两层壁处理的可实现k-e模型,k-ω-SST模型和v〜2-f模型。侧壁喷射研究的实验数据表明,当喷射操作时,弯曲区域的传热略有增加,而出口通道截面中具有侧壁喷射的传热几乎没有受到影响。在此部分之后,观察到传热减少,这可以归因于主流质量流速的降低。

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