一种高效换热器的参数分析

Kai-Cheng Hsu, Chiu-Feng Lin, C. Tsai, T. Chen, Zi-Cheng Liu, Y. Hong
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摘要

近年来,由于环境污染的影响日益严重,人们的环保意识也日益增强。由于石化燃料的短缺和价格的上涨,人们正在寻找替代能源,同时也试图使用可再生能源来降低能源消耗率和温室气体排放。根据国际能源机构(IEA)对可再生能源和节能技术的研究,如果人们利用能源再生技术并继续提高其再生效率,预计到2050年将减少15亿吨二氧化碳排放量。如今,许多行业经常使用热交换器来回收热能,如石油化工行业、钢铁行业、金属加工业等。在设计换热器时,我们需要考虑其材料和尺寸,并评估其传热效率,压力损失和生产成本。本研究设计了三种不同几何形状和翅片的换热器,分别是平鳍、尾鳍和眼形翅片。利用ANSYS/ FLUENT软件建立模型并进行仿真,主要针对以上三种类型。讨论了不同几何翅片换热器的换热效率和压力损失。经过模拟对比,三种翅片中,平板翅片的换热效率最好,但压力损失最大,而眼形翅片的换热效率略低于平板翅片,压力损失最小。本研究将冷侧空气的焓值除以热侧废气的压力损失,作为比较换热器性能的指标。指数越高,换热器的设计越好。在三种鳍型中,眼形鳍的指数值最高,尾型鳍次之,平型鳍的指数值最低。
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Parametric Analysis of a High-efficient Heat Exchanger
Due to the increasingly serious impact of environmental pollution in recent years, people’s awareness of environmental protection has also increased. Owing to the shortage of petrochemical fuels and the increase in prices, people are looking for alternative energy sources, while also trying to use renewable energy to reduce energy consumption rate and greenhouse gas emissions. According to the International Energy Agency (IEA) research on renewable energy and energy conservation technologies, it is expected to reduce 1.5 billion tons of CO2 Emissions by 2050 if people utilize energy regeneration technology and continue to improve its regeneration efficiency. Nowadays, many industries often use heat exchangers to recover heat energy, such as the petrochemical industry, steel industry, metal processing industry, and so on. When it comes to designing the heat exchanger, we need to consider its material and size and evaluate its heat transfer efficiency, pressure loss, and production cost. In this study, three types of heat exchangers with different geometrical shapes and fins are designed, which are flat fins, tail fins, and eye-shaped fins. The ANSYS/ FLUENT software is used to build models and simulate, mainly for the above three types. The heat transfer efficiency and pressure loss of heat exchangers with different geometrical fins are discussed. After simulation and comparison, the heat transfer efficiency of the flat fin is the best among the three types of fins, but the pressure loss is the largest, while the heat transfer efficiency of the eye-shaped fin is slightly lower than that of the flat fin, and the pressure loss is the smallest among the three fins. This study divides the enthalpy value of the air on the cold side by the pressure loss of the exhaust gas on the hot side and uses it as an index for comparing heat exchangers’ performance. The design of the heat exchangers is better if the index is higher. Among the three types of fins, the eye-shaped fins’ index value is the highest, followed by the tail-type fin, and the flat-type fin has the lowest value.
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