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首页> 外文期刊>International Journal of Heat and Mass Transfer >Heat/mass transfer over the cavity squealer tip equipped with a full coverage winglet in a turbine cascade: Part 2 - Data on the cavity floor
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Heat/mass transfer over the cavity squealer tip equipped with a full coverage winglet in a turbine cascade: Part 2 - Data on the cavity floor

机译:透平叶栅中配备有全覆盖小翼的腔式压榨器顶端的热量/质量传递:第2部分-腔底的数据

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Heat/mass transfer characteristics on the floor of the cavity squealer tip equipped with a full coverage (FC) winglet has been investigated experimentally with the variation of h/s (tip gap height-to-span ratio) by employing the naphthalene sublimation technique. For a squealer rim height-to-span ratio of h_(st)/ S'3.75% and a winglet width-to-pitch ratio of w/p = 10.55%, the tip gap is changed to be h/s = 0.34%, 0.68%, 1.02%, 1.36%, and 1.70%. In this study, the cavity floor is divided into four specific regions based on local heat/mass transfer rate, and the effects of h/s on local heat/mass transfer rate are fully discussed. The results show that average heat/mass transfer rate on the floor of the cavity squealer tip with the FC winglet increases steeply with the increment of h/s. This average value is found lower in the case of low h/ s but higher in the case of high h/s, in comparison with that for the cavity squealer tip with no winglet. However, it is always lower than that on the plane tip surface with no winglet. For the cavity squealer tip with the FC winglet, average heat/mass transfer rate on the cavity floor is lower than that on the winglet top surface regardless of h/s, but the discrepancy between them tends to decrease rapidly as h/s increases.
机译:通过使用萘升华技术,以h / s(叶尖间隙高度与跨度比)的变化为实验,对配备有全覆盖式(FC)小翼的腔式消音器叶尖的地板上的传热/传质特性进行了实验研究。对于squealer轮辋高度/跨度比h_(st)/S'3.75%和小翼宽度/螺距比w / p = 10.55%,叶尖间隙更改为h / s = 0.34% ,0.68%,1.02%,1.36%和1.70%。在这项研究中,根据局部传热/传质速率将型腔底板分为四个特定区域,并充分讨论了h / s对局部传热/传质速率的影响。结果表明,带有hc小翼的腔式尖叫器尖端的地板上的平均热量/质量传递速率随着h / s的增加而急剧增加。与没有小翼的腔式压油器吸头相比,在低h / s的情况下发现该平均值较低,而在高h / s的情况下发现较高。但是,它总是比没有小翼的平面尖端表面上的低。对于具有FC小翼的腔式刮油器尖端,无论h / s多少,腔底的平均热量/质量传递速率都比小翼顶表面的平均热/质量传递速率低,但是随着h / s的增加,它们之间的差异趋于迅速减小。

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