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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Heat transfer behavior of the immersed tubes and solid circulation rate of a conventional U type loop-seal with an in-line tube bundle in the recycle chamber with and without side aeration at the walls
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Heat transfer behavior of the immersed tubes and solid circulation rate of a conventional U type loop-seal with an in-line tube bundle in the recycle chamber with and without side aeration at the walls

机译:传统U型环密封的浸入管和固体循环速率的传热行为,在壁上的循环室中具有在线管束,在墙壁上没有侧曝气

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摘要

A loop-seal having a horizontal immersed tube bundle in the recycle chamber with aeration at the bottom of the supply and return chambers or a conventional loop seal with heat exchanger (LSHE) was used for this study. Heat transfer behavior of the immersed tubes with aerations at the side walls of the recycle chamber and without side aerations was investigated. An experiment was carried out in a circulating fluidized bed system. The riser has a cross sectional area of 100mm x 100mm while the supply and return chambers of the loop seal have the same cross-sectional areas. The tube has a diameter of 12.7mm. Sand having an average diameter of 310pm was used as bed particles. In all cases, heat transfer tends to be highest and lowest at the tube bottom and the tube crest. respectively. The side aeration can improve particle mobility in the stagnant zone at the tube crest, while bottom aeration cannot, even at a high velocity. Without the side aeration, there is a large difference in the local heat transfer profiles between the lower half and upper half of the tube. With the side aeration, the profiles tend to be comparable. As a result, the average heat transfer coefficient around the tube in this case is higher, and thermal stress due to temperature difference in the tube is lower than for the case without side aeration. In addition, the LSHE with side aeration has higher responsivities to thermal load and solid circulation rate variation than that without side h aeration. (C) 2020 Published by Elsevier B.V.
机译:在供应和返回室的底部的循环室中具有水平浸渍管束的环形密封件,或者用热交换器(LSHE)在供应和返回室的底部(LSHE)。研究了回收室侧壁和没有侧面空气的浸入管的浸入管的传热行为。在循环流化床系统中进行实验。提升管的横截面积为100mm×100mm,而环封的供应和返回室具有相同的横截面积。管的直径为12.7mm。使用平均直径为310pm的沙子用作床颗粒。在所有情况下,热传递趋于最高,在管底部和管顶部最低。分别。侧曝气可以改善管顶部的停滞区域中的颗粒迁移率,而底部通气也不能,即使在高速度也不能。在没有侧曝气的情况下,在管的下半部分和上半部分之间存在很大差异。通过侧曝气,曲线往往是可比的。结果,在这种情况下,管周围的平均传热系数更高,并且由于管中的温度差而导致的热应力低于没有侧通气的情况。另外,具有侧通气的Lshe对热负荷和固体循环速率变化具有更高的响应性,而不是没有侧面H曝气。 (c)2020由elsevier b.v发布。

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