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SUBCOOLED POOL BOILING STUDIES ON NANO-TEXTURED SURFACES

机译:纳米纹理表面的亚过冷却池沸腾研究

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Heat transfer in subcooled pool boiling on nano-textured surfaces is reported in this study. Silicon wafers coated with Multiwalled Carbon Nanotubes (MWCNT) forests 9 microns (Type-A), and 25 microns (Type-B) in height and 8-15 nm in diameter with a randomized pitch of 16-30 nm, form the test surfaces. The test fluid is a fluoroinert (PF-5060, Manufacturer: 3M Co.) with a boiling point of 56°C. The test rig is of the constant heat flux type. Heat transfer enhancement of approximately 1.3 to 32% is observed in the nucleate boiling regime for Type-A at subcooling levels of 20°C. Type -^sB CNT shows an enhancement of about 13-30% in the nucleate boiling regime for 20°C subcooling. Digital images acquired during the tests show increased nucleation occurring on surfaces coated with MWCNT. Potential factors that could explain the observed heat transfer enhancement are: the enhanced surface area (nano-fin effect), disruption of the "microlayer" region in nucleate boiling, an increase in the size of cold-spots and the high thermal conductivity of MWCNT.
机译:在本研究中报道了纳米纹理表面上的过冷池中的热传递。硅晶片涂有多壁碳纳米管(MWCNT)森林9微米(A型)和25微米(A型),直径为8-15nm,随机间距为16-30nm,形成测试表面。测试流体是氟代尼(PF-5060,制造商:3M Co.),沸点为56°C。试验台为恒定的热通量型。在核心沸腾制度中观察到大约1.3〜32%的热传递增强,用于在10℃的过冷水平下的型-A型溶液中。型 - ^ Sb CNT显示核心沸腾制度的增强约13-30%,用于20°C过冷。在测试期间获得的数字图像显示在涂有MWCNT的表面上发生了增加的成核。可以解释观察到的传热增强的潜在因素是:增强的表面积(纳米翅片效应),核心沸腾中的“微层”区域破坏,冷斑的尺寸增加以及MWCNT的高导热率。

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