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Heat transfer improvement in a tube by inserting perforated conical ring and wire coil as turbulators

机译:通过将穿孔锥形环和线圈作为湍流插入管中的热传递改善

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摘要

In the present study, two various passive methods for heat transfer enhancement, including conical ring and wire coil are placed in a tube as turbulators. Four conical rings with four side holes are utilized with the same distance. The wire coil is employed at the center of the tube. The considered Reynolds numbers are between 4000 and 10,000. The studied geometrical parameters contain the pitch and diameter of a wire coil. Four different pitches of wire coil, including 10, 12, 14, and 16 mm, are evaluated. Furthermore, four values of wire coil diameter such as 2, 4, 6, and 8 mm are certain. The obtained numerical results displayed that by declining the pitch of a wire coil (37.5%), the average Nusselt number increases by about 143%. Also, augmentation in wire coil diameter by 300% leads to a growth in average Nusselt number by about 131%. Moreover, owing to utilizing two various turbulators, the pressure drop is significantly high in comparison with the bare tube. At Re = 10,000, growth in the inner diameter of the wire coil by 300% leads to an increase in thermal performance by about 36.12%. Moreover, as the pitch of the wire coil rises by 60%, the thermal performance declines by about 35.71%.
机译:在本研究中,两个用于传热增强的各种被动方法,包括锥形环和线圈将放置在管中作为湍流器。具有四个侧孔的四个圆锥形环与相同的距离。线圈在管的中心采用。被审议的雷诺数数量在4000到10,000之间。所研究的几何参数包含线圈的间距和直径。评估包括10,12,14和16mm的四个不同间距的线圈。此外,诸如2,4,6和8mm的线圈直径的四个值是确定的。所获得的数值结果显示,通过衰落线圈的间距(37.5%),平均露天数增加约143%。此外,在线线圈直径的增强300%导致平均露珠的增长率约为131%。此外,由于利用两种各种湍流器,与裸管相比,压降显着高。在RE = 10,000时,线圈内径的生长300%导致热性能的增加约36.12%。此外,由于线圈的间距上升60%,热性能下降约35.71%。

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