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Convective heat transfer and friction factor characteristics of helical strip inserted annuli at turbulent flow

机译:湍流中螺旋条插入紫色的对流传热和摩擦因子特征

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摘要

Helical baffles, wire coils, and rectangular ribs are used to improve the annular fluid flow turbulence and heat transfer performance. Among the different insert types, loose-fitted helical baffles or strips are of major interest because of their better performance. Tight-fitted helical strips can show better performance in the annular flow because they can act as a fin besides acting as a swirl generator compared to loose-fitted ones. For that reason, a three-dimensional (3D) computational fluid dynamics (CFD) study is performed to investigate the heat transfer and pressure drop characteristics of turbulent flow (4000 ≤Re ≤ 10000) at annuli with and without tight-fitted helical strip inserts. Annuli with 0.6, 0.7, and 0.8 annuli diameter ratio (ADR) are studied for plain and helical strip inserts with pitch ratios (PRs) of 1, 2, and 3. Result showed that higher heat transfer coefficient (HTC) and friction factor were found for insert-fitted annuli compared to those of plain annuli. HTC increased with increase in Re and ADR and decrease in insert PR. The best performance was for 0.8-ADR insert-fitted annuli: 171%-207% (1 PR), 82%-105% (2 PR), and 56%-75% (3 PR) compared to 0.8-ADR plain annuli. Although HTC increased with increase in ADR, the Nusselt number (Nu) decreased because of the smaller hydraulic diameter. Nu increased with increase in Re but decreased with higher ADR and insert PR. The friction factor increased with decrease in insert PR and ADR and decreased with increase in Re. A figure of merit (FoM) was used to combine the benefit of heat transfer enhancement and the drawback of higher pressure drop. The FoM ranged from 0.9 to 1.3, 0.94 to 1.22, and 0.92 to 1.24 for ADR values of 0.6, 0.7, and 0.8, respectively, for a specific Re range. The heat transfer performance obtained was in the order of 3 PR < 2 PR < 1 PR for insert-fitted annuli, but the FoM followed 1 PR < 2 PR < 3 PR because of a much higher pressure drop for lower PR. This study confirms that inserts improve heat transfer, which is better at lower Re.
机译:螺旋挡板,线圈和矩形肋用于改善环形流体流动湍流和传热性能。在不同的插入类型中,由于其性能更好,宽松的螺旋挡板或条带是主要的兴趣。紧密螺旋条可以在环形流动中表现出更好的性能,因为除了用作旋流发生器之外,它们可以用作旋转的鳍片,而与装有宽松的螺旋发生器。因此,进行三维(3D)计算流体动力学(CFD)研究,以研究湍流(4000≤RE≤10000)的传热和压力下降特性,在随附的螺旋条插入件。研究了0.6,0.7和0.8 anvli直径比(ADR)的普通和螺旋条带的螺节和螺旋条带(PRS)为1,2和3.结果表明,较高的传热系数(HTC)和摩擦因子是发现与普通annuli相比的插入镶嵌。 HTC随着RE和ADR的增加而增加,插入PR减少。最佳性能为0.8-ADR插入含量:171%-207%(1 PR),82%-105%(2 PR)和56%-75%(3 PR),与0.8-ADR普通annuli相比。虽然HTC随着ADR的增加而增加,但由于液压直径较小,营养数(NU)减少。 nu随着RE的增加而增加,但用更高的ADR和插入PR减少。摩擦因子随着插入Pr和ADR的降低而增加,随着RE的增加而降低。使用优点(FOM)来结合热传递增强的益处和更高压降的缺点。对于特定的RE系列,FOM分别为0.9至1.3,0.94至1.22和0.92至1.24的0.92至1.24。所获得的传热性能为嵌入式含量的3 Pr <2 Pr <1 pr的顺序,但由于较低的PR的压降更高的压降,FOM之后,遵循的FOM。本研究证实,插入可提高热传递,在较低的RE上更好。

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