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Thermal performance of helical coils with reversed loops and wire coil inserts

机译:带有反向回路和线圈插入件的螺旋线圈的热性能

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摘要

Flow and heat transfer characteristics of water in a newly designed helical coil heat transfer device were investigated in this experimental study. The conventional helical coil configuration was structurally modified aiming to improve its heat transfer performance. Specifically, 360 degrees plastic tubing with or without wire coil inserts was added after each 180 degrees of the main helical coil loop to enhance fluid mixing and redistribute the flow, which should have a direct effect on the thermal performance of the helical coil heat transfer device. Experimental results show that the structural modifications of the conventional helical coil configuration led to enhanced heat transfer in the test section while the pressure drop penalty increased slightly. Furthermore, the heat transfer performance of the overall test section improved by using wire coil inserts in the plastic tubing after every 180 degrees of the main helical coil loop. The results reveal that the modified helical coil section offers a good trade-off between heat transfer enhancement and pressure drop penalty. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在本实验研究中,研究了新设计的螺旋盘管传热装置中水的流动和传热特性。为了改善其热传递性能,对传统的螺旋线圈结构进行了结构修改。具体而言,在主螺旋线圈的每个180度之后添加带有或不带有线圈插入物的360度塑料管,以增强流体混合并重新分配流量,这应直接影响螺旋线圈传热设备的热性能。 。实验结果表明,传统螺旋线圈结构的结构修改导致测试部分的传热增强,而压降损失则略有增加。此外,在每180度主螺旋线圈环之后,通过在塑料管中使用金属丝线圈插入物,可以改善整个测试部分的传热性能。结果表明,改进的螺旋线圈截面在传热增强和压降损失之间提供了良好的折衷。 (C)2019 Elsevier Ltd.保留所有权利。

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