首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Heat transfer degradation of buoyancy involved convective RP-3 hydrocarbon fuel in vertical tubes with various diameters under supercritical pressure
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Heat transfer degradation of buoyancy involved convective RP-3 hydrocarbon fuel in vertical tubes with various diameters under supercritical pressure

机译:浮力的传热劣化涉及在超临界压力下具有各种直径的垂直管中的对流RP-3烃燃料

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摘要

The flow and heat transfer characteristics of hydrocarbon fuel flowing upward in vertical circular tubes with various diameters under supercritical pressure were numerically investigated. The buoyance effects in the vertical tubes were analyzed and discussed. A simulation tool for predicting the supercritical turbulent internal flow and heat transfer was developed and validated with experimental data. A four-species surrogate model of the fuel RP-3 was used to calculate the temperature-dependent fluid properties. The turbulence was modelled with the Launder-Sharma (LS) low-Reynolds number turbulence model. The tube diameter ranged from 2 mm to 15 mm in order to analyze the size effect. The simulation results showed that the tube diameter significantly affected the heat transfer deterioration, especially for low mass flux cases. Based on the predicted velocity profiles, the mechanism of the size effect on the heat transfer deterioration was discussed and analyzed. In the tube with a small diameter, the accelerated thin layer took up a significant share of the cross section of the tube. However, the buoyancy effect dominated in the tube with a large diameter due to the large gradient from the thin layer to the core of the main flow. It was found that the threshold for the size effect was around 10 mm, below which the size effect was significant.
机译:在数值上研究了在超临界压力下在具有各种直径的垂直圆形管中向上流动的烃燃料的流动和传热特性。分析并讨论了垂直管中的浮力效应。用于预测超临界湍流内部流量和传热的仿真工具,并用实验数据验证。使用四种燃料RP-3的替代模型来计算温度依赖性的流体性质。湍流用洗涤 - 沙姆达(LS)低雷诺数湍流模型建模。管直径范围为2毫米至15毫米,以分析尺寸效应。仿真结果表明,管直径显着影响了传热劣化,尤其是低质量通量情况。基于预测的速度剖面,讨论并分析了对传热劣化的尺寸效应的机制。在小直径小的管中,加速薄层占据了管的横截面的大量份额。然而,由于从薄层到主流的核心的大直径而导致的管道中的浮力效果具有大的直径。发现尺寸效应的阈值约为10毫米,尺寸效应是显着的。

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