AUGMENTATION HEAT TRANSFER IN A CIRCULAR TUBE USING TWISTED - TAPE INSERTS: A REVIEW

Sahira Hasan, Zianab H. Naji
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引用次数: 1

Abstract

Heat transfer enhancement is the process of increasing the heat-transfer coefficient, which enhances the system's performance. Enhancing heat transfer is a major problem for saving energy and is also beneficial economically. Many passive devices are used inside tubes to improve heat transfer such as twisted tape inserts, rough parts, extended surfaces, additives for liquids wire plugs, etc.  This research reviewed one of the most effective passive devices which are twisted tape inserts. Since it has many advantages such as simple fabrication, simple operation, and ease of maintenance. The twisted tape inserts generated swirl flow and vortex inside the tube. Therefore, the internal convective heat transfer process is significantly improved. The current research article provides an overview of different twisting tape inserts that can improve heat transfer rates. By reducing boundary layer thickness near tube walls. Which lead to reduce the size and cost of many industrial applications, including heat exchangers, refrigeration systems, air conditioners, reactors, thermal power plants, spacecraft, and automobiles. A summary of previous experimental and numerical studies is presented as well. The primary results indicated that the twisted tape inserts are demonstrated to be efficient in enhancing heat transfer inside the tube for laminar and turbulent flow. But during a turbulent flow, twisted tapes increased pressure loss more than laminar flow because of flow obstruction.
利用扭带插入件在圆管内增强传热:综述
强化传热是通过提高传热系数来提高系统性能的过程。加强传热是节约能源的重要问题,同时也具有经济效益。许多无源器件用于管内以改善传热,如扭曲带插入件,粗糙部件,延伸表面,液体线塞添加剂等。本研究综述了一种最有效的无源装置-扭曲带插入。由于它具有制作简单、操作简单、维修方便等优点。扭带插入在管内产生旋流和旋涡。因此,内部对流换热过程得到显著改善。目前的研究文章提供了不同的扭带插入,可以提高传热率的概述。通过减小管壁附近的边界层厚度。这将减少许多工业应用的尺寸和成本,包括热交换器、制冷系统、空调、反应堆、火力发电厂、航天器和汽车。对以往的实验和数值研究进行了总结。初步结果表明,在层流和紊流条件下,扭曲带插入对管内换热有较好的促进作用。但在湍流中,由于气流的阻碍,扭曲带比层流更能增加压力损失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.70
自引率
0.00%
发文量
74
审稿时长
50 weeks
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