首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Effects of Inlet Preswirl and Cell Diameter and Depth on Honeycomb Seal Characteristics
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Effects of Inlet Preswirl and Cell Diameter and Depth on Honeycomb Seal Characteristics

机译:进气口预涡流,泡孔直径和深度对蜂窝密封性能的影响

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摘要

Three-dimensional Reynolds-averaged Navier-Stokes solutions are employed to investigate the discharge and total temperature increase characteristics of the stepped labyrinth seal with honeycomb land. First, the relations between the windage heating number and the circumferential Mach number at different Reynolds numbers for different honeycomb seals are calculated and compared with the experimental data. The obtained numerical results show that the present three-dimensional periodic model can properly predict the total temperature increase in honeycomb seals. Then, a range of pressure ratios, three inlet preswirl ratios, four sizes of honeycomb cell diameter, and nine sizes of cell depth are selected to investigate the influence of inlet preswirl ratios and honeycomb geometry sizes on the discharge and total temperature increase characteristics of the stepped labyrinth seal. It shows that the leakage rate increases with the increase in cell diameter, and the cell depth has a strong influence on the discharge behavior. However, the influence of the inlet preswirl on the leakage rate is found to be little in the present study. For the total temperature increase characteristic, the inlet preswirl ratio and pressure ratio have more pronounced influence than those of cell depth and diameter. Furthermore, the relations between the leakage rate and cell depth and diameter, as well as the relations between the windage heating power and cell depth and diameter, are not monotonic functions if the pressure ratio is kept constant.
机译:采用三维雷诺平均Navier-Stokes解来研究蜂窝状阶梯式迷宫式密封的排放和总温升特性。首先,计算了不同蜂窝密封件在不同雷诺数下的风热数与圆周马赫数之间的关系,并将其与实验数据进行了比较。获得的数值结果表明,本发明的三维周期模型可以正确地预测蜂窝密封件的总温度升高。然后,选择一定范围的压力比,三个入口预旋比,四个蜂窝孔直径尺寸和九个孔深度尺寸,以研究入口预旋比和蜂窝几何尺寸对排气量和总温度升高特性的影响。阶梯式迷宫密封。结果表明,泄漏率随孔直径的增加而增加,孔深度对放电行为有很大影响。但是,在本研究中发现进气口预旋流对泄漏率的影响很小。对于总的温度升高特性,入口预旋比和压力比比单元深度和直径具有更明显的影响。此外,如果压力比保持恒定,则泄漏率与孔深度和直径之间的关系以及风阻加热功率与孔深度和直径之间的关系不是单调函数。

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