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聚碳酸酯多腔绝热中空玻璃热工性能研究 被引量:3
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作者 李宁 孟庆林 +1 位作者 赵立华 张楠 《新型建筑材料》 北大核心 2020年第1期101-103,共3页
以高透明低密度的聚碳酸酯透明材料为多腔中空玻璃的间隔材料,系统研究了多腔绝热中空玻璃系统的构造,利用美国劳伦斯伯克利实验室的Optics6软件对多种结构的多腔中空玻璃热工性能进行研究。结果表明:在基本不增加中空玻璃质量的情况下... 以高透明低密度的聚碳酸酯透明材料为多腔中空玻璃的间隔材料,系统研究了多腔绝热中空玻璃系统的构造,利用美国劳伦斯伯克利实验室的Optics6软件对多种结构的多腔中空玻璃热工性能进行研究。结果表明:在基本不增加中空玻璃质量的情况下,随着腔体数量和厚度的增大,中空玻璃可实现低传热系数和高可见光透过率。 展开更多
关键词 聚碳酸酯膜(PC) 多腔绝热中空玻璃系统 低传热系数 高可见光透过率
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Analysis of Turbulent Heat Transfer and Fluid Flow in Channels with Various Ribbed Internal Surfaces 被引量:1
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作者 Smith Eiamsa-ard Wayo Changcharoen 《Journal of Thermal Science》 SCIE EI CAS CSCD 2011年第3期260-267,共8页
This paper presents results of a numerical investigation of heat transfer and flow pattern characteristics of a channel with repeated ribs on one broad wall. Numerical computations are performed for seven ribs placed ... This paper presents results of a numerical investigation of heat transfer and flow pattern characteristics of a channel with repeated ribs on one broad wall. Numerical computations are performed for seven ribs placed on the bottom wall of a channel for Reynolds numbers ranging from 10,000 to 30,000. The newly modified ribs (the ones with convex pointing upstream/downstream rib, wedge pointing upstream/downstream rib, concave pointing upstream/downstream rib and also concave-concave rib as well as convex-concave rib), are proposed for simulation with prospect to reduce flow separation and extend reattachment area compared to the unmodified square rib. The numerical results are reported in forms of flow structure, temperature field, turbulent kinetic energy, Nusselt number, friction factor and thermal enhancement factor. The results indicate the rib with concave-concave surfaces efficiently suppresses flow separation bubble in the corner of the rib and induces large recirculation zone over those of the others, hence giving the highest Nusselt number and friction factor. On the other hand, the one with convex-concave surface provides the lowest friction factor with moderate Nusselt number. Due to the prominent effect of its low friction factor, the rib with convex-concave surface offers the highest thermal enhancement factor of 1.19. 展开更多
关键词 RIB Turbulent flow Heat transfer Reattachment zone Flow separation
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