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Numerical Study on Transient Heat Transfer of a Quartz Lamp Heating System

机译:石英灯加热系统瞬态传热的数值研究

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摘要

Thermal ground testing is an accepted and frequently used method for simulating the aerodynamic heating of high speed flight vehicles. A numerical method based on a finite volume method for a quartz lamp heating system, used in thermal testing, is proposed. In this study, the unstructured finite-volume method (UFVM) for radiation has been formulated and implemented in a fluid flow solver GTEA on unstructured grids. For comparison and validation of the proposed method, a 2D furnace with cooling pipes was chosen. The results obtained from the proposed FVM agreed well with the exact solutions. Numerical results show that the quartz lamp can be simplified as a slat with the same temperature radiation source, and a simplified 2D thermal testing case was then simulated with the coupling effects of radiation, convection, and conduction heat transfer. Different temperature loading curves and ratios of intervals between the lamps and lamp length (l/s) were studied using the proposed method. The radiation heat flux on the metal surface was a wave-shaped curve. Comparing the different interval ratios, we found that the smaller the interval ratio, the larger the maximum value and the smaller the difference between the maximum and minimum heat flux.
机译:热地测试是一种可接受的和常用方法,用于模拟高速飞行车辆的空气动力学加热。提出了一种基于用于热检测的石英灯加热系统的有限体积法的数值方法。在该研究中,在非结构化网格上的流体流动求解器GTEA中配制并实施了用于辐射的非结构化有限体积法(UFVM)。为了比较和验证所提出的方法,选择具有冷却管的2D炉。从提出的FVM获得的结果与精确的解决方案很好。数值结果表明,石英灯可以被简化为具有相同温度辐射源的板块,然后通过辐射,对流和传热的耦合效果模拟简化的2D热测试盒。使用所提出的方法研究灯和灯长度(L / S之间的不同温度加载曲线和间隔比率。金属表面上的辐射热通量是波形曲线。比较不同的间隔比率,我们发现间隔比越小,最大值越大,最大和最小热通量之间的差异越小。

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