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Two-phase flow dynamics by real-time neutron imaging in oscillating heat pipe.

机译:振荡热管中实时中子成像的两相流动力学。

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摘要

Neutron imaging can produce unique images of objects making it a useful non-destructive technique with various applications in science and industry. Oscillating heat pipes (OHP) are being studied as a higher performance way of cooling high power electronics. They have shown better performance than conventional heat pipes, but little is known about the dynamics of the liquid and vapor inside the OHP. In these studies, the dynamics of liquid and vapor were studied by calculating the liquid and vapor volume fractions in different sections of the OHPs using neutron imaging and the resulting data were compared with external temperature data to investigate the workings of the OHPs. The results show that neutron imaging is a useful technique to quantify the dynamics of the vapor and liquid in OHPs. Imaging shows that at lower heat fluxes water does not circulate around the heat pipe as it does at higher heat fluxes. Instead, the evaporator, where heat is input, is largely vapor with only very short entrances of liquid. In contrast, acetone circulates around the heat pipe at lower heat input as well as at higher heat input. The acetone-OHP shows better performance than a water-OHP due to more active liquid movement. It is inferred that viscosity and density affect the performance of OHP. Temporal volume fraction data corresponds well with temperature data. In contrast, individual temporal volume fraction data does not show as good a correspondence with individual temperature at each thermocouple position.
机译:中子成像可以产生物体的独特图像,使其成为一种有用的无损技术,在科学和工业中具有各种应用。振荡热管(OHP)被研究为冷却大功率电子设备的一种高性能方法。它们显示出比传统热管更好的性能,但是对OHP内部液体和蒸气的动力学知之甚少。在这些研究中,通过使用中子成像计算OHP不同截面中的液体和蒸气体积分数,研究了液体和蒸气的动力学,并将所得数据与外部温度数据进行比较,以研究OHP的工作原理。结果表明,中子成像是一种有用的技术,可以对OHP中的蒸气和液体动力学进行量化。成像显示,在较低的热通量下,水不会像在较高的热通量下那样在热管周围循环。取而代之的是,输入热量的蒸发器主要是蒸汽,只有很少的液体进入。相反,丙酮在较低的热量输入以及较高的热量输入下在热管周围循环。由于更活跃的液体运动,因此丙酮-OHP的性能优于水-OHP。据推测,粘度和密度影响OHP的性能。时间体积分数数据与温度数据很好地对应。相比之下,单个时间体积分数数据在每个热电偶位置与单个温度的对应关系不佳。

著录项

  • 作者

    Yoon, Il.;

  • 作者单位

    University of Missouri - Columbia.;

  • 授予单位 University of Missouri - Columbia.;
  • 学科 Applied Mechanics.;Engineering Nuclear.;Engineering Mechanical.
  • 学位 M.S.
  • 年度 2008
  • 页码 164 p.
  • 总页数 164
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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