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Heat Transfer and Pressure Drop of Laminar Flow in Horizontal Tubes With/Without Longitudinal Inserts

机译:带有/不带有纵向插入件的水平管中层流的传热和压降

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Heat transfer and pressure drop characteristics of water flow in horizontal tubes with/ without longitudinal inserts used as a heat exchanger tubing was experimentally studied. Testing was performed on bare tubes and tubes with square and rectangular as well as Crossed-strip inserts with aspect ratios AR=1 and 4 and varied ratios of inlet mixed Mean temperature to wall temperature of 0.88 to 0.97. The Reynolds number ranged from Approximately 250 to 1750 for flow visualization and from 1700 to 4000 for the pressure Drop and heat transfer measurements. Flow visualization, using a dye injection method, Revealed a highly complex flow pattern including a secondary flow formed in the cross Section for crossed-strip inserts. The thermal entrance length was found and correlated in Terms of Re for this type of inserted tubes. The enhancement of heat transfer as compared To a conventional bare tube a the same Reynolds number based on the hydraulic diameter Was found to be about a factor of 16 at Re≤4000, while the friction factor rise was only About a factor of 4.5 at Re≤4000.
机译:实验研究了水平管中有/无纵向插入物的水平管中水流的传热和压降特性。测试是在裸露的管子,具有正方形和矩形的管子以及纵横比为AR = 1和4且入口混合平均温度与壁温的变化比为0.88至0.97的交叉带插入件上进行的。对于流量可视化,雷诺数的范围从大约250到1750,对于压降和传热测量,雷诺数的范围从1700到4000。使用染料注入方法的流动可视化显示了高度复杂的流动模式,包括在横截面中形成的用于交叉条形刀片的二次流动。对于这种类型的插入管,找到了热入口长度,并根据Re进行了关联。与传统的裸管相比,传热的增强基于水力直径的雷诺数在Re≤4000时约为16倍,而在Re时摩擦系数仅上升4.5倍。 ≤4000。

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