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首页> 外文期刊>International Journal of Thermal Sciences >Thermal performance augmentation in the cooling zone of brick tunnel kiln with two types of guide vanes
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Thermal performance augmentation in the cooling zone of brick tunnel kiln with two types of guide vanes

机译:砖隧道窑冷却区的热性能增强,两种导叶片

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摘要

The energy consumption in bricks and ceramics industry is of great importance. Therefore, the present work introduces an augmentation technique to improve the thermal performance during the cooling process in bricks tunnel kiln. A test rig by scale 1:4 has been designed and fabricated to simulate the cooling zone of tunnel kiln. Two types of guide vanes (side wall (SV) and U-shape (UV)) have been designed with attack angles (theta = 120 degrees, 135 degrees, and 150 degrees) in flow direction. Seven different settings within Reynolds number range of 13,609 = Re = 27,634 are tested in a suction-type tunnel kiln. Effect of brick setting arrangement, Reynolds number, guide vane type, and attack angle on the thermal performance is studied. The results reveal that the UV guide vanes influence the thermal performance more than SV guide vanes. The maximum enhancement in heat transfer rate to pumping power ratio (Q(avg)/PP) is about 25 for setting 7 in absence of vanes and 23 for (UV) with attack angles 150 degrees and 135 degrees at Re = 14,000. The present study introduces two correlations for average Nusselt number. Settings 4 and 1 provide a moderate production time with highest productivity while setting 2 has lowest productivity with small production time.
机译:砖和陶瓷行业的能源消耗具有重要意义。因此,本工作引入了一种增强技术,以提高砖隧道窑冷却过程中的热性能。设计和制造了一个标尺1:4的试验室,以模拟隧道窑的冷却区。已经设计了两种类型的导叶(侧壁(SV)和U形(UV)),其流动方向具有攻击角(THETA = 120度,135度和150度)。在雷诺数范围内的七种不同的设置为13,609& = Re& = 27,634在抽吸式隧道窑中进行测试。研究了砖设置排列,雷诺数,导叶片类型和攻击角度对热性能的影响。结果表明,UV导向叶片影响了比SV导向叶片的热性能。传热速率与泵送功率比的最大增强(Q(AVG)/ pp)是在没有叶片的情况下设定7的25,对于(UV),攻击角150度和135度在RE = 14,000处。本研究介绍了平均营养数的两个相关性。设置4和1提供具有最高生产率的适度生产时间,而设置2具有最低的生产率,生产时间小。

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