首页> 外文期刊>International Journal of Heat and Mass Transfer >Thermal characterization of a multi-turn pulsating heat pipe in microgravity conditions: Statistical approach to the local wall-to-fluid heat flux
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Thermal characterization of a multi-turn pulsating heat pipe in microgravity conditions: Statistical approach to the local wall-to-fluid heat flux

机译:微重力条件下多转脉动热管的热表征:局部壁到流体热通量的统计方法

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摘要

A Pulsating Heat Pipe (PHP), specifically designed to be hosted on board the Heat Transfer Host of the International Space Station, is tested in microgravity conditions during the 67th Parabolic Flight Campaign promoted by the European Space Agency. The device consists in an aluminium tube (inner/outer diameter = 3/5 mm) closed in a 14 turns loop, half filled with FC-72. The PHP external wall temperature distribution are measured within the adiabatic section by means of a high-speed infrared camera. The resulting thermographic images are used as input data for the solution of the Inverse Heat Conduction Problem (IHCP) in the channels wall to estimate local time-space heat fluxes exchanged at the wall-fluid interface. The adopted post-processing method represents one of the first attempts to estimate the local wall-to-fluid heat flux in PHPs under microgravity conditions. A comprehensive investigation of the wall-to-fluid heat fluxes is performed on the overall device by means of an original statistical approach in order to study the PHP working regimes. The results highlight that such approach is capable of providing similar information regarding the fluid motion inside the PHP to those obtained by the traditional intrusive experimental methods (e.g. direct fluid temperature-pressure measurements) or transparent inserts (e.g. sapphire tube), which perturb the original layout of the PHP and require a complex experimental set-up.
机译:在欧洲航天局推广的第67次抛物线飞行活动期间,在欧洲航天局推广的第67次抛物线飞行活动中,在国际空间站的传热主机上进行了脉动热管(PHP),专门设计用于载于国际空间站的传热主机。该装置在14圈循环中封闭的铝管(内/外径= 3/5mm)组成,填充FC-72的一半。通过高速红外相机在绝热部分内测量PHP外壁温度分布。所得到的热成像用作在通道壁中的反热导热问题(IHCP)解决方案的输入数据,以估计在壁流界面处交换的局部空间热助熔剂。所采用的后处理方法代表了在微匍匐条件下估计PHP中局部壁到流体热通量的首次尝试之一。通过原始统计方法对整个装置进行壁到流体热通量的综合研究,以研究PHP工作制度。结果突出显示这种方法能够提供与通过传统侵入式实验方法(例如直接流体温度压力测量)或透明插入(例如蓝宝石管)获得的流体运动的类似信息(例如,蓝宝石管),这扰乱了原始的PHP的布局并要求复杂的实验设置。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2021年第4期|120930.1-120930.16|共16页
  • 作者单位

    Department of Engineering and Architecture University of Parma Parco Area delle Scienze 181/A Parma Italy;

    CIDEA Interdepartmental Centre University of Parma Parco Area delle Scienze 181/A Parma Italy;

    Department of Engineering and Architecture University of Parma Parco Area delle Scienze 181/A Parma Italy SITEIA.PARMA Interdepartmental Centre University of Parma Parco Area delle Scienze 181/A Parma Italy;

    Department of Energy Systems Land and Construction Engineering University of Pisa Largo L Lazzarino Pisa Italy;

    Department of Energy Systems Land and Construction Engineering University of Pisa Largo L Lazzarino Pisa Italy;

    Department of Engineering and Architecture University of Parma Parco Area delle Scienze 181/A Parma Italy SITEIA.PARMA Interdepartmental Centre University of Parma Parco Area delle Scienze 181/A Parma Italy;

    School of Computing Engineering and Mathematics University of Brighton Lewes Road BN2 4GJ Brighton UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pulsating heat pipe; Microgravity; Inverse heat conduction problem; Infrared thermography;

    机译:脉动热管;微匍匐;反导热问题;红外热成像;

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