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Visualization of He II boiling process under the microgravity condition for 4.7?s by using a drop tower experiment

机译:通过使用滴塔实验可视化微疱疹条件下的沸腾过程4.7秒

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Superfluid helium (He II) has been utilized in space projects such as in the X-ray telescope, where it served as the heat sink of adiabatic demagnetization refrigerators. The study of He II boiling under microgravity might contribute to the construction of an important database facilitating the design of future space missions. Therefore, in this study, a visualization experiment of He II boiling was conducted under microgravity conditions by using the drop tower located at ZARM (Center of Applied Space Technology and Microgravity) in Bremen. The ZARM drop tower can provide up to 4.7?s of microgravity conditions in the utilized operation mode. The behavior of thermally induced bubbles during their growth and shrinkage was visualized using two high-speed cameras. A thin manganin wire was utilized as the heater. During the free fall period, the visualized bubble closely approached a steady state. The behavior can be roughly calculated using a simple equation based on kinetic theory.
机译:Superfluid Helium(HE II)已被用于太空项目,例如在X射线望远镜中,在那里用作绝热性退磁冰箱的散热器。 在微重力下沸腾的研究可能有助于建设一个重要数据库,促进未来空间任务的设计。 因此,在本研究中,通过使用位于不来梅的ZARM(应用空间技术和微匍匐中心)的滴塔在微沉塔下,在微再生条件下进行了HE II沸点的可视化实验。 ZARM Drop Tower可以在利用的操作模式下提供高达4.7秒的微重力条件。 使用两个高速相机可视化热诱导气泡在其生长和收缩期间的行为。 薄锰丝用作加热器。 在自由落体期间,可视化气泡紧密地接近稳定状态。 可以使用基于动态理论的简单方程来大致计算行为。

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