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首页> 外文期刊>International Journal of Heat and Mass Transfer >Airside heat transfer and pressure loss characteristics of bare and finned tube heat exchangers used for aero engine cooling considering variable air properties
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Airside heat transfer and pressure loss characteristics of bare and finned tube heat exchangers used for aero engine cooling considering variable air properties

机译:考虑可变空气特性的用于航空发动机冷却的裸管和翅片管热交换器的空气侧传热和压力损失特性

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摘要

Numerical studies have been conducted to investigate the airside thermal-hydraulic characteristics of bare tube bank and plain finned tube heat exchangers intended for use in aero-engine cooling. The exchangers use small diameter tubes (3.0 mm) with compact tube layout and operate at high temperatures with large temperature changes over the exchanger depth. Calculations are performed for frontal air velocities between 5 and 20 m/s, yielding tube diameter based Reynolds numbers from 4898 to 19,592. Calculations are implemented using the Realizable κ-ε turbulence model with consideration of the air physical property variations caused by the air temperature changes. The results show that ignorance of the air property variability leads to overestimations of both heat transfer and pressure loss, with a smaller air velocity yielding a more serious overestimation. The numerical fin efficiency agrees with the Schmidt fin efficiency within 7.0%. The plain finned tube heat exchanger is superior to the bare tube bank heat exchanger if the exchanger performance is evaluated using the heat transfer rate to pressure drop ratio.
机译:已经进行了数值研究,以研究用于航空发动机冷却的裸露管束和平翅片管热交换器的空气侧热工水力特性。交换器使用小直径的管子(3.0毫米),管子布局紧凑,并在高温下运行,并且在交换器整个深度上温度变化很大。对正面风速在5至20 m / s之间进行计算,得出基于管直径的雷诺数为4898至19,592。使用可实现的κ-ε湍流模型进行计算,并考虑到由气温变化引起的空气物理特性变化。结果表明,对空气特性可变性的无知会导致对传热和压力损失的高估,而较小的空气速度会导致更严重的高估。翅片效率数值与施密特翅片效率在7.0%之内一致。如果使用传热速率与压降之比来评估交换器性能,则翅片翅片管热交换器将优于裸露管束热交换器。

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