Abdelmagied Mahmoud
Department of Refrigeration and Air Conditioning Technology, Faculty of Technology and Education, Helwan University, 11282, Cairo, Egypt.
Sci Rep. 2024 Nov 13;14(1):27873. doi: 10.1038/s41598-024-78164-1.
In the present investigation, the exergy of an innovative technique involving the integration of curved helical tubes with twisted passages was experimentally presented. This technique aims to improve the thermofluid characteristics by involving the swirl intensity of fluid flow in a twisted tube helical coil (TTHC). Six identical geometries with different pitch ratios Υ of 36 mm, 54 mm, and ∞ (smooth/no twisted) were experimentally explored at two different inner tube profiles of triangular and square cross-sections in counter flow arrangements. The experimental runs were carried out at 10,300 ≤ Re ≤ 37,800 and 2400 ≤ Re ≤17,600 for both the inner and annulus fluids, respectively. The results showed that the Nusselt number, Nu, increased by 39.6% and 41.5% for triangular and square inner twisted cross-section profiles, respectively, at a [Formula: see text] of 36 mm at the expense of increasing f by 37.6% and 60.7%, respectively. The results also showed that the thermal performance factor reached 1.3 and 1.25 for a [Formula: see text] of 36 mm for the triangular and square inner twisted tube profiles, respectively. A comprehensive study is performed to analyze the TTHC from thermal, frictional, and exergetic viewpoints. New correlations for expecting the annulus Nu and f are presented.
在本研究中,通过实验展示了一种创新技术的(有效)能值,该技术涉及将带有扭曲通道的弯曲螺旋管集成在一起。此技术旨在通过在扭曲管螺旋盘管(TTHC)中引入流体流动的漩涡强度来改善热流体特性。在逆流布置中,针对三角形和正方形横截面这两种不同的内管轮廓,对六种不同节距比Υ分别为36毫米、54毫米和∞(光滑/无扭曲)的相同几何结构进行了实验探索。对于内流体和环空流体,实验分别在10300≤Re≤37800和2400≤Re≤17600的条件下进行。结果表明,在节距比Υ为36毫米时,三角形和正方形内扭曲横截面轮廓的努塞尔数Nu分别增加了39.6%和41.5%,代价是摩擦系数f分别增加了37.6%和60.7%。结果还表明,对于节距比Υ为36毫米的三角形和正方形内扭曲管轮廓,热性能因子分别达到1.3和1.25。从热、摩擦和(有效)能的角度对扭曲管螺旋盘管进行了全面研究。给出了预测环空努塞尔数和摩擦系数的新关联式。