首页> 外文会议>Embedded topical meeting on advances in thermal hydraulics >ENHANCED POOL BOILING CRITICAL HEAT FLUX OF WATER USING CARBON NANOTUBES ADHESION ON STAINLESS STEEL HEATERS
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ENHANCED POOL BOILING CRITICAL HEAT FLUX OF WATER USING CARBON NANOTUBES ADHESION ON STAINLESS STEEL HEATERS

机译:使用碳纳米管在不锈钢加热器上的粘附性增强池沸腾的临界热通量

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This study investigates a novel and practical technique to improve the thermal safety margin of the thermal devices by introducing the Single-Walled Carbon Nanotubes (SWCNTs) adhesion on metal surfaces. As a quantitative measure of the thermal safety margin, critical heat flux is introduced and relevant experimental work has been conducted with bare stainless steel grade 316 heaters and CNT-coated heaters. CNTs were adhered to the metal substrate of SS316, whose dimension is 16×4×2 mm~3 in length, width, and thickness, respectively. Various CNTs layer thicknesses of 280, 569, 960, and 1400 nm were fabricated. Bare and CNT-coated SS316 heaters were electrically heated via Joule heating using 12 kW DC power supply of 1200A-10V in the pool of deionized water at atmospheric pressure. After fabricating the CNT adhesion, surface characterization of SEM, AFM, roughness, contact angle measurement was conducted. This clearly shows that CNT adhesion to the metal surface exhibits smooth porous media but with smaller roughness compared to bare SS316 substrate. Wall superheat and applied heat flux were measured for bare and CNT-coated heaters. High speed images of boiling process were captured during respective tests at a rate of 1500 frames/sec. It is observed that CHF with CNT-coated heater increases by up to 55% as compared to the bare SS316 heater, which suggests that safety margin is improved significantly using the CNT adhesion on the metal surfaces. However, nucleate boiling heat transfer coefficient is reduced due to the lower surface roughness.
机译:本研究探讨一种新颖和实用技术通过引入在金属表面上的单壁碳纳米管(单壁碳纳米管)的粘附性提高热装置的热安全余量。作为热安全裕度的定量测量,临界热通量被引入和相关的实验工作已经与裸不锈钢级316的加热器和CNT被覆加热器进行。碳纳米管附着于SS316的金属基底,其尺寸为16×4×2mm的〜3中的长度,宽度,和厚度,分别。的280,569,960,和1400纳米的碳纳米管的各种层厚度进行制作。裸和CNT被覆SS316加热器分别经由使用中的去离子水在大气压力下池12 1200A-10V的千瓦直流电源焦耳加热电加热。制造所述CNT的附着力,SEM的表面表征后,AFM,粗糙度,接触角测量进行的。这清楚地表明CNT附着于金属表面的展品平滑多孔介质,但是具有更小的粗糙度相比裸SS316衬底。壁过热和施加的热通量分别为裸和CNT被覆加热器测量。沸腾过程的高速图像期间,在1500帧/秒的速率各试验被抓获。据观察,CHF与高达55%CNT被覆加热器增加相比于裸SS316加热器,这表明安全余量显著使用金属表面上的CNT的粘附得到改善。然而,泡核沸腾热传递系数是由于较低的表面粗糙度降低。

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