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Heat and Fluid Flow Analysis and ANN-Based Prediction of A Novel Spring Corrugated Tape

机译:热流和流体流动分析和基于ANN的新型春瓦楞带的预测

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摘要

A circular tube fitted with novel corrugated spring tape inserts has been investigated. Air was used as the working fluid. A thorough literature review has been done and this geometry has not been studied previously, neither experimentally nor theoretically. A novel experimental investigation of this enhanced geometry can, therefore, be treated as a new substantial contribution in the open literature. Three different spring ratio and depth ratio has been used in this study. Increase in thermal energy transport coefficient is noticed with increase in depth ratio. Corrugated spring tape shows promising results towards heat transfer enhancement. This geometry performs significantly better (60% to 75% increase in heat duty at constant pumping power and 20% to 31% reduction in pumping power at constant heat duty) than simple spring tape. This paper also presented a statistical analysis of the heat transfer and fluid flow by developing an artificial neural network (ANN)-based machine learning (ML) model. The model is evaluated to have an accuracy of 98.00% on unknown test data. These models will help the researchers working in heat transfer enhancement-based experiments to understand and predict the output. As a result, the time and cost of the experiments will reduce. The results of this investigation can be used in designing heat exchangers.
机译:已经研究了配有新型波纹弹簧带插入件的圆形管。空气用作工作流体。已经完成了彻底的文献综述,此几何形状尚未研究过,既不是实验也没有实验地研究。因此,这种增强几何形状的新实验研究可以被视为开放文学中的新实质性贡献。本研究已经使用了三种不同的弹簧比和深度比。热能传输系数的增加被注意到深度比率增加。波纹春季胶带显示出于热传递增强的有希望的结果。该几何形状明显更好(在恒定泵送功率下的热量增加60%至75%,泵送功率降低20%至31%)比简单的弹簧胶带。本文还通过开发人工神经网络(ANN)的机器学习(ML)模型来介绍传热和流体流动的统计分析。该模型被评估为在未知的测试数据上的准确性为98.00%。这些模型将帮助研究人员在传热增强的基础实验中,以了解和预测输出。结果,实验的时间和成本将减少。该研究的结果可用于设计热交换器。

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