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The influence of spill-line geometry on a spray generated by a pressure-swirl atomizer

机译:溢出线几何形状对压力 - 旋流雾化器产生的喷雾的影响

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摘要

An experimental investigation of characteristics of spray generated by a pressure-swirl atomizer (spill-return type) was performed using shadowgraphy and Phase-Doppler Anemometry (PDA). Several different geometries of the spill-return orifice were tested in terms of a spray stability and quality on a cold test bench. PDA measurement yields a drop-size distribution and velocity data while the shadowgraphy unveils a break-up process in detail. Performed measurements reveal significant differences in spray characteristics as well as differences in spray stability. The results suggest that the air core, formed inside the swirl chamber, passes through the spill orifice, which causes instability of the inner flow. These instabilities lead to a chaotic state of sheet breakup resulting in shortening of breakup distance. Obtained findings are used to propose possible changes in the atomizer design for improvement of its performance.
机译:使用阴影和相多普勒式气旋(PDA)进行由压力 - 涡流雾化器(溢出返回型)产生的喷雾特性的实验研究。在冷测试台上的喷涂稳定性和质量方面测试了几种不同几何形状的溢出孔。 PDA测量产生落尺寸分布和速度数据,而影子介绍详细推出了分解过程。进行的测量揭示了喷射特性的显着差异以及喷射稳定性的差异。结果表明,在旋流室内形成的空气芯通过溢出孔,这导致内流的不稳定性。这些不稳定性导致纸张分解的混沌状态,从而缩短分手距离。获得的发现用于提出雾化器设计的可能变化,以改善其性能。

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