首页> 外文期刊>International journal of air-conditioning and refrigeration >PRESSURE DROP AND HEAT TRANSFER INSIDE THE COILED FLOW CHANNEL OF SMOOTH TUBES AND INTERNALLY HELICAL-GROOVED TUBES
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PRESSURE DROP AND HEAT TRANSFER INSIDE THE COILED FLOW CHANNEL OF SMOOTH TUBES AND INTERNALLY HELICAL-GROOVED TUBES

机译:光滑管和内螺旋槽管的流道内的压降和传热

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In this study, we investigated ways of improving the performance of heat exchangers, which are the heat pumps for use in hot-water supply systems on the hot-water supply side. Therefore, we verified experimentally the pressure drop and the heat transfer characteristics within the coiled flow channel. Five smooth copper tubes and five internally helical-grooved copper tubes with an outside diameter of 12.7 mm and coil diameters of 100 mm, 120 mm, 140 mm, 160 mm and 180 mm were used as the heat-transfer coiled tubes in the experiments. Experiments were conducted under conditions of constant isothermal heating and fluid flow inside coiled tubes with an inlet temperature of 20℃, and the flow rates of the fluid flow inside the coiled tubes were adjusted and varied to change the Reynolds number within the range of 900 to 25,000. Based on the experimental values, we proposed prediction equations to systematically calculate the friction factor and the heat transfer coefficient for different curvature radius ratios.
机译:在这项研究中,我们研究了改善热交换器性能的方法,这些热交换器是用于热水供应侧的热水供应系统中的热泵。因此,我们通过实验验证了盘旋流道内的压降和传热特性。在实验中,将五个光滑的铜管和五个外径为12.7 mm且盘管直径分别为100 mm,120 mm,140 mm,160 mm和180 mm的内部螺旋槽铜管用作传热盘管。在恒定恒温加热和入口温度为20℃的盘管内部流体流动的条件下进行实验,调节盘管内部流体的流速并改变其变化,以使雷诺数在900至900的范围内变化。 25,000基于实验值,我们提出了预测方程,以系统地计算不同曲率半径比下的摩擦系数和传热系数。

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