纵向翅片三重同心管换热器热工性能数值研究

S. Hussain, U. A. Rajput, Q. B. Jamali, Q. A. Kazi, Sanaullah Mastoi
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引用次数: 1

摘要

本文对三同心管换热器(TCTH)的热工性能进行了数值研究。采用计算流体力学(CFD)软件Ansys FLUENT对原油、发动机油和轻柴油三种不同类型的热流体进行了强化换热模拟研究。首次采用验证的数值模型对无翅片TCTHE的传热性能进行了研究。然后,对两种结构的纵向翅片进行了建模和研究,以比较两种结构的热水力性能。为了预测换热器的性能,对热流密度和温度场分布等关键参数进行了评估。结果表明,对管表面加装纵翅片的换热器进行改造,可以显著提高换热器的换热率。因此,本研究旨在进一步探索纵向翅片的潜力,以获得这些类型的热交换器设备的改进性能。结果表明,原油流体的换热速率高于其他两种流体轻柴油和机油。在管道表面加装翅片后,观察到流体之间有明显的换热效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Investigation of Thermohydraulic Performance of Triple Concentric-Tube Heat Exchanger with Longitudinal Fins
In this work, a triple concentric-tube heat exchanger (TCTH) with or without the application of longitudinal fins is numerically studied concerning its thermohydraulic performance. The computational fluid dynamics (CFD) program, Ansys FLUENT was used to perform the simulations to study the heat transfer enhancement using three different types of hot fluids, i.e. Crude oil, engine oil, and light diesel oil. The validated numerical model was first employed to investigate the heat transfer performance of unfinned TCTHE. Then, longitudinal fins were modeled and investigated for comparative analyses of the thermohydraulic performances of both constructions. To predict the heat exchanger performance, key parameters such as heat flux and temperature field distribution were evaluated. Results revealed that modifying the heat exchanger with longitudinal fins on the tube surface dramatically improves its heat transfer rate. Therefore, this research is designed to keep in view further exploring the potential of longitudinal fins in obtaining an improved performance from these types of heat exchanger devices. The results showed that the crude oil fluid has high heat transfer rate than the other two fluids light diesel oil and engine oil. With the application of fins on the tubes’ surfaces, a significant heat transfer exchange among the fluids streams is observed.
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