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Study of nitrogen two-phase flow pressure drop in horizontal and vertical orientation

机译:水平和垂直定向氮两相流压降研究

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The large-scale liquid argon Short Baseline Neutrino Far-detector located at Fermilab is designed to detect neutrinos allowing research in the field of neutrino oscillations. It will be filled with liquid argon and operate at almost ambient pressure. Consequently, its operation temperature is determined at about 87 K. The detector will be surrounded by a thermal shield, which is actively cooled with boiling nitrogen at a pressure of about 2.8 bar absolute, the respective saturation pressure of nitrogen. Due to strict temperature gradient constraints, it is important to study the two-phase flow pressure drop of nitrogen along the cooling circuit of the thermal shield in different orientations of the flow with respect to gravity. An experimental setup has been built in order to determine the two-phase flow pressure drop in nitrogen in horizontal, vertical upward and vertical downward direction. The measurements have been conducted under quasi-adiabatic conditions and at a saturation pressure of 2.8 bar absolute. The mass velocity has been varied in the range of 20 kg·m~(-2)·s~(-2) to 70 kg·m~(-2)·s~(-2) and the pressure drop data has been recorded scanning the two-phase region from vapor qualities close to zero up to 0.7. The experimental data will be compared with several established predictions of pressure drop e.g. Mueller-Steinhagen and Heck by using the void fraction correlation of Rouhani.
机译:大型液态氩位于费米短基线中微子远探测器被设计成检测在中微子中微子振荡领域允许研究。应当充满液体氩,并在几乎环境压力下操作。因此,其操作温度保持在约87 K的检测器将由一个热屏蔽,其被主动地在约2.8巴(绝对),氮的各自的饱和压力的压力下沸腾的液氮冷却包围确定。由于严格的温度梯度的限制,它来研究氮的二相流的压力降沿在流中的不同方位的热屏蔽件的冷却回路相对于重力是重要的。的实验装置已建成,以确定在水平,垂直向上及垂直向下的方向上在氮气中的二相流的压降。测量是准绝热条件下和在2.8巴绝对压力的饱和压力下进行。质量速度已经在范围被更改为20kg·米〜(-2)·S〜(-2)70公斤·米〜(-2)·S〜(-2)和压降数据已经记录扫描两相区域从蒸气质量接近零到0.7。实验数据将与例如压降的几个建立的预测进行比较的Mueller-Steinhagen的和的Heck通过使用Rouhani的空隙分数的相关性。

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