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Numerical investigation of thermal and hydraulic performances of a condenser coil with oblique-shaped tubes

机译:具有倾斜形管的冷凝器线圈热和液压性能的数值研究

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摘要

High efficiency condenser coil providing higher heat removal capacity with lower air-side pressure drop is desirable. However, coil designs with different fin patterns for higher heat transfer incur large air-side pressure drop and thus consume more energy. In this study, the thermal and hydraulic performances of the condenser coil design with plain fin, corrugated fin, and novel oblique-shaped tube are evaluated numerically with a 3-fin and 3-tube model in comparison with a conventional circular tube coil. This novel oblique-shaped tube design features smaller air recirculation zone behind the tube so as to increase effective heat transfer area and to lower air-side pressure drop. The numerical results show that, for the plain fin configuration, the shape of the oblique tube is important in reducing the recirculation zone on the fin, thus increasing effective heat transfer area and heat transfer amount up to 14% and reducing the air-side pressure drop up to 14% at the same inlet air velocity as compared with the circular tube coil. With corrugated fin guiding and promoting air speed, causing more flow separation zones, it is detrimental to the thermal-hydraulic performance of the oblique tube coil. The discussion of choice of materials for tube and fin, such as copper, brass, and aluminium, is provided with possible manufacturing processes required for realizing potential high performance coil design. Parametric optimisation on the best performing plain fin oblique tube design shows that, for the design of condenser coil with oblique tube, there is no optimal FPI, but it is recommended to keep the ratio of tube pitch to tube frontal length/diameter to about 3 to 3.5. (C) 2018 Elsevier Ltd and IIR. All rights reserved.
机译:高效冷凝器线圈提供具有较低空气侧压降的较高的散热能力。然而,具有不同翅片图案的线圈设计,用于更高的传热产生大的空气侧压降,从而消耗更多的能量。在本研究中,用普通翅片,波纹翅片和新颖的倾斜形管的冷凝器线圈设计的热和液压性能与相同的3翅片和3管模型进行数量评价,与传统的圆管线圈相比,与3鳍和3管模型进行了数量的。这种新型倾斜管设计具有较小的空气再循环区域,以增加有效的传热面积和降低空气侧压降。数值结果表明,对于普通翅片配置,倾斜管的形状在减少翅片上的再循环区域的形状是重要的,因此将有效的传热面积和热传递量增加到14%并降低空气侧压力与圆形管线线圈相比,在相同的入口空气速度下降至14%。具有波纹翅片引导和促进空气速度,导致更多的流动分离区域,这对倾斜管圈的热液压性能是有害的。对管和翅片的材料选择的讨论,例如铜,黄铜和铝,具有实现潜在的高性能线圈设计所需的可能制造工艺。 Parametric优化最佳性能普通纤维斜管设计表明,对于具有斜管的冷凝器线圈的设计,没有最佳的FPI,但建议将管间距与管正长/直径的比率保持在约3到3.5。 (c)2018年Elsevier Ltd和IIR。版权所有。

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