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Operating under jet splashing conditions can increase the capture efficiency of scoops

机译:在喷射溅条件下运行可以提高勺子的捕获效率

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Scoops are used in aero-engines to capture oil and direct the oil flow for the lubrication of bearings, where a direct oil injection is not effective or possible. The design of scoops focuses on the capture of oil to aim for the highest capture efficiency. The operating conditions are usually chosen such that splashing of the oil jet against the outer side of scoops is avoided. In this paper it is shown that some degree of splashing may be beneficial and results in an increase of the scoop capture efficiency. An analytical approach is presented to describe the range of operating conditions at which the jet is aimed to hit a specific fixed point on the outer or inner scoop contour. These operating conditions are introduced as splashing and capture conditions, respectively, and described in terms of a dimensionless velocity ratio and the jet angle. A "splashing criterion" is introduced to describe the operating conditions at which the jet is aimed to hit the rear side of the scoop. A "capture criterion" is introduced to describe the operating conditions at which the jet is aimed to hit the scoop tip. The basic assumption in this paper is that the best scoop capture efficiency is correlated to the splashing criterion and not to the capture criterion. The correlation is confirmed by a series of experiments on a scoop, performed at different jet angles and a range of velocity ratios. From the match of the correlation curve with the experiments, it is concluded that the best scoop efficiency is obtained when the jet is aimed to splash on the outer scoop contour at a point near the rear side. It could be proven that this splash point does not change with the jet angle. The fact that this point of "best efficiency" remains a fixed splashing point on the scoop contour may be helpful in the design of scoops.
机译:勺子用于航空发动机,以捕获油并引导轴承润滑的油流,直接注油无效或可能。勺子的设计侧重于捕获油来瞄准最高捕获效率。通常选择操作条件,使得避免了对铲子外侧的喷射溅射。在本文中,表明某些程度的溅射可能是有益的,并且导致勺子捕获效率的增加。提出了一种分析方法来描述射流旨在在外部或内铲轮廓上击中特定的固定点的操作条件范围。这些操作条件分别被引入溅射和捕获条件,并根据无量纲速度比和喷射角来描述。引入“溅准准则”以描述射流旨在击中勺子后侧的操作条件。引入“捕获标准”以描述喷射旨在击中勺子尖端的操作条件。本文的基本假设是最好的勺捕获效率与溅起标准相关,而不是捕获标准。通过在勺子上的一系列实验证实了相关性,以不同的喷射角和一系列速度比进行。根据实验的相关曲线的匹配,得出结论,当射流旨在在后侧附近的点处溅到外铲轮廓上时获得最佳的勺效率。可以证明这种飞溅点不会随着喷射角而改变。这种“最佳效率”的事实仍然是勺子轮廓上的固定泼点可能有助于勺的设计。

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