首页> 外文会议>Joint AIAA/ASME thermophysics and heat transfer conference;AIAA aviation forum >Electro-Wetting of a Heated Surface in the Presence and Absence of Gravity to Enhance Liquid Film Boiling Heat Transfer
【24h】

Electro-Wetting of a Heated Surface in the Presence and Absence of Gravity to Enhance Liquid Film Boiling Heat Transfer

机译:存在和不存在重力的情况下对受热表面进行电润湿以增强液膜沸腾传热

获取原文

摘要

Liquid film boiling is used in many terrestrial thermal management applications as an effective heat transport mechanism. However, it suffers in micro-gravity applications such as spacecraft thermal management as the gravitational body force is not present. The heater surface dries out as a result and heater temperature increase is unbounded. One way of facilitating liquid film boiling in micro-gravity is to use an electrical field. In this experimental study, we utilize electrohydrodynamic (EHD) conduction pumping to re-wet the heater surface during liquid film boiling in micro-gravity. EHD conduction involves electrodes embedded onto a surface that generate a pumping force in the dielectric liquid film which causes it to flow in a particular direction - in this case liquid is directed toward the heater. The experiments are performed both terrestrially and on board a parabolic flight. Results indicate that activation of the EHD pump enables liquid film boiling to continue in microgravity by maintaining a liquid flow rate to the heater and lowering the surface temperature. It thereby allows us to study the complex liquid-vapor phase change phenomena in the presence of an electrical field in the absence of gravity and furthers our understanding for future application.
机译:在许多地面热管理应用中,液膜沸腾是一种有效的传热机制。但是,由于不存在重力,它在诸如航天器热管理之类的微重力应用中会受到影响。结果,加热器表面变干,加热器温度升高不受限制。促进液膜在微重力下沸腾的一种方法是使用电场。在这项实验研究中,我们利用电液动力(EHD)传导泵将液膜在微重力下沸腾期间重新润湿了加热器表面。 EHD传导涉及嵌入到表面上的电极,这些电极在介电液膜中产生泵浦力,从而使介电液膜沿特定方向流动-在这种情况下,液体被引导向加热器。实验是在地面和抛物线飞行中进行的。结果表明,通过保持流向加热器的液体流速和降低表面温度,EHD泵的启动可使液膜沸腾在微重力下继续进行。因此,它使我们能够在没有重力的情况下研究在电场存在下的复杂的液体-蒸汽相变现象,并加深了我们对未来应用的理解。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号