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Enhanced extended-surfaces for two-phase pump-less cooling loops.

机译:增强的扩展表面,适用于两相无泵冷却回路。

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摘要

Pool boiling experiments are conducted to investigate the heat transfer performance of screen laminate-enhanced extended surfaces in water at reduced pressures. A lamination of fine-filament, wire mesh is an effective surface enhancement for boiling since the surface can be configured to provide a very high density of potential bubble nucleation sites. A coating of copper fine wire screen is bonded to an extended surface (fin). The coating thickness ranged from 0.21mm to 1.3mm. The porosity of the coatings is held constant at 0.43 and the pore hydraulic diameter of the coating varies from 39mum to 172im. Pool temperatures are held at the saturation temperature for water at pressures of 0.2, 0.3, 0.5 and 1.0atm. A reduction in pressure reduces the boiling performance for all surfaces.;The work began by investigating 4-layer laminates on a fin that has a 1cm2 base cross section area, a 5deg taper with heights of 1cm and 2/3cm. Boiling performance of a vertical and horizontal fin orientation is investigated. The 4 layer screen laminate enhanced fin with a 10K superheat sustains base heat fluxes of up to 140 W/cm2 at 1.0atm, and up to 132W/cm2 at 0.2atm. These extended surfaces outperform screen laminates enhanced plane surface by up to 4 fold. Vertically oriented fins outperform horizontal fins.;The second part of the work was to further investigate screen laminates on the trapezoidal fin. Laminations of 8-layers are found to improve boiling performance over the four layers. Experimental results show that the thin, fine coatings on the fin surfaces enhance the boiling performance. At 0.2atm base heat fluxes in excess of 193W/cm2 are seen and with moderate superheats of around 10K. A semi-empirical model of the fin is developed. The model implements a boiling correlation from a plane enhanced surface. Assessments of fin aspect ratio and taper are conducted using the model. Larger aspect ratios improve fin performance. The effects of the taper are negligible. The last part of the work was to investigate the boiling performance from laminations on a wavy fin array. Two surfaces are considered: a 0.75mm thick 4-layer laminate with approximately 4000 pores per cm2 and a 0.42mm thick 8-layer laminate with approximately 26,000 pores per cm 2. The results show that the 8-layer laminate outperforms the 4-layer laminate. A semi-empirical boiling model is developed. The model predicts the boiling performance of our data within an error of 30%. The model shows that shorter fins improve boiling performance.
机译:进行池沸腾实验以研究在减压下水中筛子层压板增强的延伸表面在水中的传热性能。细丝丝网的层压是沸腾的有效表面增强,因为该表面可以配置为提供非常高的潜在气泡成核位点密度。铜细线丝网的涂层粘合到延伸的表面(散热片)上。涂层厚度为0.21mm至1.3mm。涂层的孔隙率保持恒定在0.43,涂层的孔隙水力直径从39mm到172im不等。池温保持在水的饱和温度下,压力为0.2、0.3、0.5和1.0atm。降低压力会降低所有表面的沸腾性能。该工作始于研究翅片上的4层层压板,该翅片的底部横截面积为1cm2,高度为5cm的锥度为1cm和2 / 3cm。研究了垂直和水平翅片取向的沸腾性能。具有10K过热的4层筛网层压增强鳍片在1.0atm时可维持高达140 W / cm2的基本热通量,在0.2atm时可维持高达132W / cm2的基础热通量。这些延伸的表面比丝网层压板的增强平面性能高出4倍。垂直方向的散热片胜过水平散热片。;第二部分工作是进一步研究梯形散热片上的筛网层压板。发现8层的叠层改善了四层上的沸腾性能。实验结果表明,翅片表面的薄而细的涂层增强了沸腾性能。在0.2atm时,可以看到超过193W / cm2的基本热通量,并且具有大约10K的中等过热度。建立了鳍的半经验模型。该模型从平面增强的表面实现沸腾关联。使用该模型进行鳍长宽比和锥度的评估。较大的纵横比可改善散热片性能。锥度的影响可以忽略不计。工作的最后一部分是研究波浪状翅片阵列上的叠片的沸腾性能。考虑了两个表面:0.75毫米厚的4层层压板,每平方厘米约4000个孔和0.42毫米厚的8层层压板,每平方厘米26000个孔。结果表明,8层层压板的性能优于4层层压板。建立了半经验沸腾模型。该模型预测我们的数据的沸腾性能误差在30%以内。该模型表明,较短的翅片可改善沸腾性能。

著录项

  • 作者

    Laca, Paul J.;

  • 作者单位

    University of Nevada, Reno.;

  • 授予单位 University of Nevada, Reno.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 90 p.
  • 总页数 90
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:36:48

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