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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Development of a numerically efficient CFD model to predict transient temperature distribution of mother tubes moving translative and rotative through a gas fired furnace
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Development of a numerically efficient CFD model to predict transient temperature distribution of mother tubes moving translative and rotative through a gas fired furnace

机译:通过气燃炉预测母管瞬态温度分布的数值高效的CFD模型

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摘要

In this work the heating of mother tubes in a walking beam type reheating furnace has been investigated. The tubes are heated prior to further processing into seamless tubes in a downstream stretch reducing mill. In contrast to previous works, the heating of hollow geometries moving through the furnace is considered. The main difference to existing works is the movement of the tubes in a combination of translational and rotational movement. The tubes rest on walking beams in loading bays and perform a rotational movement when passing through the furnace. The walking beams are not water cooled so that they reach the gas temperature inside the furnace. Due to these effects, it is to be expected that the influence of the skid system on tube heating is low. The model used in this work is based on two separate simulations: a steady state simulation characterizing the gas-phase combustion, and a transient simulation considering the heating of the tubes. This approach minimizes the computing power required, which is thus significantly lower than that for a full transient model. The steady state combustion simulation has been performed using the steady flamelet model (SFM). The advantage of the SFM compared to other models is the low computational effort and allows a detailed CH4 chemical mechanism, the skeletal25 to be used. The discrete ordinates model was used to solve the radiative transfer equations. To validate the model, the results of the steady state simulation are compared to process data, revealing a good agreement. A test tube, equipped with several thermocouples, provided a statement about the heating characteristic of the tubes. The data of the test tube and pyrometer measurement have been compared to the transient heating simulation, also constituting good agreements. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在这项工作中,研究了在步行型再加热炉中加热母管。在进一步加工到下游拉伸减压磨机中的无缝管之前加热管。与之前的作品相比,考虑了通过炉子移动的空心几何形状的加热。对现有作品的主要区别是管的移动在平移和旋转运动的组合中。管在装载托架中的行走梁上搁置,并在通过炉子时执行旋转运动。步行梁不是水冷却,使得它们在炉内达到气体温度。由于这些效果,预计SkID系统对管加热的影响很低。本作品中使用的模型基于两个单独的模拟:表征气相燃烧的稳态模拟,以及考虑管的加热的瞬态模拟。该方法最小化所需的计算能力,从而显着低于全瞬态模型的计算能力。使用稳定的爆印模型(SFM)进行了稳态燃烧模拟。 SFM与其他模型相比的优势是低计算工作,并允许详细的CH4化学机制,使用骨骼25。离散坐标模型用于解决辐射传输方程。为了验证模型,将稳态模拟的结果与过程数据进行比较,揭示了一个很好的一致性。配备有几个热电偶的试管提供了关于管的加热特性的陈述。与瞬态加热模拟进行了比较了试管和高温计测量的数据,也构成了良好的协议。 (c)2017 Elsevier Ltd.保留所有权利。

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