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Boiling heat transfer enhancement in subsurface horizontal and vertical tunnels

机译:地下水平和垂直隧道中沸腾传热的增强

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摘要

Complex experimental investigations of boiling heat transfer on structured surfaces covered with perforated foil were taken up. Experimental data were discussed for two kinds of enhanced surfaces formed by joined horizontal and vertical tunnels: tunnel structures (TS) and narrow tunnel structures (NTS). The experiments were carried out with water, ethanol and R-123 at atmospheric pressure. The TS and NTS surfaces were manufactured out of perforated copper foil of 0.05 mm thickness (hole diameters: 0.3, 0.4, 0.5 mm) sintered with the mini-fins, formed on the vertical side of the 5 mm high rectangular fins and horizontal inter-fin surface. The effects of hole (pore) diameters, tunnel pitch for TS and tunnel width for NTS on nucleate pool boiling were examined. Substantial enhancement of heat transfer coefficient was observed. The investigated surfaces showed boiling heat transfer coefficients similar to those of existing structures with subsurface tunnels, but at higher heat fluxes range. (C) 2008 Elsevier Inc. All rights reserved.
机译:进行了在覆盖有穿孔箔的结构化表面上进行沸腾传热的复杂实验研究。讨论了由水平和垂直隧道连接形成的两种增强表面的实验数据:隧道结构(TS)和窄隧道结构(NTS)。实验是在大气压下用水,乙醇和R-123进行的。 TS和NTS表面是由厚度为0.05毫米(孔径:0.3、0.4、0.5毫米)的穿孔铜箔烧结而成,并在5毫米高的矩形翅片的垂直面上形成水平方向的微型翅片。鳍表面。考察了孔(孔)直径,TS的隧道螺距和NTS的隧道宽度对成核池沸腾的影响。观察到传热系数大大提高。所研究的表面显示的沸腾传热系数与具有地下隧道的现有结构的沸腾传热系数相似,但在较高的热通量范围内。 (C)2008 Elsevier Inc.保留所有权利。

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