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建筑材料性质对节点传热系数的影响——铝合金型材空腔填充聚氨酯泡沫
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作者 季春波 《建材与装饰》 2020年第4期62-63,共2页
本文以聚氨酯泡沫作为研究对象,掌握铝合金型空腔在填充聚氨酯泡沫后节点传热系数的变化,提升对节点传热系数的把控能力,实现材料的更新;结合铝合金型材的材料特性,借助相关研究手段,探讨材料性质对于节点传热系数的影响,旨在不断总结经... 本文以聚氨酯泡沫作为研究对象,掌握铝合金型空腔在填充聚氨酯泡沫后节点传热系数的变化,提升对节点传热系数的把控能力,实现材料的更新;结合铝合金型材的材料特性,借助相关研究手段,探讨材料性质对于节点传热系数的影响,旨在不断总结经验,为后续各项工作的开展提供方向性引导。 展开更多
关键词 建筑材料 节点传热系数 铝合金型材 聚氨酯泡沫
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Numerical Study on Heat Transfer Enhancement for Use of Corrugated, Nodal and Horizontal Grain Tubes 被引量:1
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作者 朱家玲 王钰沛 +1 位作者 张伟 刘雪玲 《Transactions of Tianjin University》 EI CAS 2014年第5期385-392,共8页
With isopentane as working fluid, the heat transfer performances for corrugated, nodal and horizontal grain tubes are simulated. The structural parameters of the three kinds of tubes are compared with those of the pla... With isopentane as working fluid, the heat transfer performances for corrugated, nodal and horizontal grain tubes are simulated. The structural parameters of the three kinds of tubes are compared with those of the plain tube. The numerical results using computational fluid dynamics are validated with theoretical values. For the corrugated, nodal and horizontal grain tubes, the heat transfer enhancements(HTEs) are 2.31—2.53, 1.18—1.86 and 1.02—1.31 times of those of the plain tube, respectively. However, the improved HTEs are at the expense of pressure losses. The drag coefficients are 6.10—7.09, 2.06—11.03 and 0.53—1.83 higher, respectively. From the viewpoint of comprehensive heat transfer factor, the corrugated tube is recommended for engineering applications, followed by the horizontal grain tube. 展开更多
关键词 corrugated tube nodal tube horizontal grain tube heat transfer
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