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A Numerical Investigation of the Flow through a New Fast Acting Valve for Diaphragmless Shock Tubes

机译:通过新型快速作用阀对膈肌冲击管的流量进行数值研究

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By means of time resolved and transient computations, the complex opening process of a fast acting valve has been analysed. The computations provide new insight into the complex interaction of the sliding piston with the transient flow. The qualitative agreement of the computed and measured pressure plot is very good. Due to the interaction of piston and flow, additional pressure and expansion waves are induced. However, for the present conditions in the low pressure section, a well established shock was found 1800 mm downstream of the valve. During the experiments repetition rates up to ten shots per hour were accomplished and the shock strength was very well reproduced. By demonstrating a good performance of the valve, this concept is an alternative that combines the advantages of both the arrangement of a conventional shock tube and the reproducibility of other diaphragmless shock tubes. Nevertheless, the results of this work will be used to revise the valve again in order to further improve its performance.
机译:通过时间分辨和瞬态计算,已经分析了快速作用阀的复杂开口过程。计算提供了新的洞察滑动活塞与瞬态流动的复杂相互作用。计算和测量压力图的定性协议非常好。由于活塞和流动的相互作用,诱导额外的压力和膨胀波。然而,对于低压部分中的目前条件,在阀的下游下发现了1800毫米的良好的冲击。在实验期间,完成了每小时最多10次拍摄的重复率,并且震荡强度非常好。通过展示阀门的良好性能,该概念是一种替代方案,其结合了传统的冲击管的布置和其他膜片震动管的再现性的替代方案。尽管如此,这项工作的结果将用于再次修改阀门,以进一步提高其性能。

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