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Structure and mixing of a transient flow of helium injected into an established flow of nitrogen: two dimensional measurement and simulation

机译:注入既定氮流中的氦气瞬态流的结构和混合:二维测量和模拟

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The transient injection and mixing between nitrogen and helium in a confined chamber at atmospheric pressure is studied experimentally. The 2D injector and mixing chamber contained a middle injection slot for nitrogen flanked by a pair of outer slots for helium. Experiments were conducted by introducing the helium streams into a previously established quasi-steady flow of nitrogen. The nitrogen stream was seeded with nitric oxide (NO) that served as a source for quantitative, planar laser-induced fluorescence (PLIF) imaging of the transient mixing process. PLIF images were acquired by triggering an Nd:YAG laser system at selected times following helium valve actuation. The observed flow structures and extent of mixing between the two streams proved to be highly unsteady and irregular with the heliumitrogen jets frequently deviating from the centerline toward the confining walls. Representative unsteady CFD solutions also show this same absence of symmetry and the same general flow structures as the measurements, however, they predict somewhat higher helium concentration in recirculation regions than were observed in the measurements.
机译:实验研究了大气压下密闭室内氮气和氦气的瞬态注入和混合。 2D进样器和混合室包含一个中间的氮气注入槽,两侧是一对氦气外部槽。通过将氦流引入先前建立的准稳态氮流中进行实验。用一氧化氮(NO)播种氮气流,该一氧化氮用作瞬时混合过程的定量平面激光诱导荧光(PLIF)成像的来源。通过在氦气阀致动后的选定时间触发Nd:YAG激光系统来获取PLIF图像。事实证明,观察到的流动结构和两股物流之间的混合程度非常不稳定,而且氦/氮射流经常从中心线向封闭壁偏离,因此非常不稳定。代表性的不稳定CFD解决方案还显示出与测量相同的不对称性和相同的一般流动结构,但是,他们预测再循环区域中的氦浓度比测量中观察到的高。

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