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Experimental and Numerical Investigation of Effusion Cooling Performance Over Combustor Liner Flat Plate Model

机译:燃烧室衬板平板模型的喷淋冷却性能的实验和数值研究

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This article presents a study of cooling performance of combustor liner of a gas turbine, using a flat plate model. The combustion process in gas turbine engines liberates very high temperature gases, which impacts the properties of the combustor liner. Hence, cooling of liner is important and is carried out by effusion cooling method. Experiments are carried out over a flat plate with staggered effusion holes. The hot mainstream air flows at a Reynolds number of 2.325 x 10(5), which indicates a turbulent flow. The coolant to mainstream density ratios of 1.3 and 1.5 is maintained by varying the blowing ratios ranging from 0.5 to 2.5. Test plate surface temperature measurements are recorded by an infrared camera and the overall cooling effectiveness in the flow direction is calculated. Numerical validation for conjugate heat transfer analysis is performed using ANSYS workbench and the temperature contours obtained are compared with infrared camera images. MATLAB program is used to obtain the effectiveness contours for experimental and computational fluid dynamics results. The effectiveness contours are found to be similar, showing the increase in effectiveness with the increase in blowing ratios. Density ratios comparison shows that with the increase in density ratio, the overall cooling effectiveness marginally decreases.
机译:本文使用平板模型研究了燃气轮机燃烧室衬套的冷却性能。燃气涡轮发动机的燃烧过程释放出非常高温的气体,这会影响燃烧室衬套的性能。因此,衬套的冷却是重要的,并且通过喷射冷却方法进行。实验是在带有交错排液孔的平板上进行的。主流热气流的雷诺数为2.325 x 10(5),表明存在湍流。冷却剂与主流密度的比率为1.3和1.5,吹气比率在0.5到2.5之间保持不变。用红外热像仪记录测试板表面温度的测量值,并计算出流动方向的整体冷却效率。使用ANSYS工作台进行共轭传热分析的数值验证,并将获得的温度轮廓与红外热像仪图像进行比较。 MATLAB程序用于获取实验和计算流体动力学结果的有效性等值线。发现有效轮廓是相似的,显示出随着吹风比的增加,有效性的增加。密度比的比较表明,随着密度比的增加,总体冷却效率略有下降。

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