论文标题

通过超音速喷嘴对自由喷气机的实验研究

Experimental investigation of free jets through supersonic nozzles

论文作者

Patel, Milaan, Thomas, Jinto, Joshi, Hem Chandra

论文摘要

在本文中,我们报告了实验研究,以改善稀有流量的超音速喷嘴的形状,以在距喷嘴延伸的距离处产生高轴向密度。报告的工作对于需要高中心密度和狭窄的射流剖面的分子喷射/束应用很重要。我们研究了一种抛物线喷嘴,其轮廓是使用自由扩展的虚拟源模型生成的,并将其性能与具有模拟和实验的一组具有不同锥形角度的锥形喷嘴进行比较。所有喷嘴都是通过使用ABS制造的,发现性能令人满意。使用皮托管组件测量喷气机的轴向密度和横向扩散。通过使用已建立的数学和经验模型对声音喷嘴,可以量化皮托管的准确性和操作极限。该研究表明,与锥形对应物相比,抛物线喷嘴的性能是可比或稍好的。此外,抛物线轮廓可用于优化各种长度的圆锥形喷嘴的开头。

In this paper, we report experimental investigation to improve the shape of a supersonic nozzle for rarefied flows to generate high axial density at extended distances from the nozzle. The reported work is significant for molecular jet/beam applications that require high center-line density and narrow jet profile. We investigate a parabolic nozzle whose profile is generated using the virtual source model of free expansion and compare its performance with a set of conical nozzles having different cone angles using simulations as well as experiments. All nozzles are made by additive manufacturing using ABS and performance is found to be satisfactory. Axial density and lateral spread of the jets are measured using a pitot tube assembly. The accuracy and operational limit of the pitot tube for rarefied flow is quantified by using established mathematical and empirical models for a sonic nozzle. The study demonstrates that the performance of the parabolic nozzle is comparable or slightly better as compared to conical counterparts. Moreover, the parabolic profile can be used for optimizing the opening angle for conical nozzles of various lengths.

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