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Axi symmetric 2D simulation and numerical heat transfer characteristics for the calibration furnace in a rectangular enclosure

机译:矩形外壳中校准炉的轴对称二维模拟和数值传热特性

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This paper presents axi symmetric 2D numerical investigation of the spherical thermocouple calibration furnace in a rectangular enclosure. The focus is on the flow structure inside the Saturn (a hollow spherical cavity), external flow behavior due to annulus block heating and the surface temperature uniformity. Mesh sensitivity analysis is adopted to extract the mesh with minimum number of nodes but with fast convergent finite element solution. The basic strategy here is that temperature perturbation error at a single point instead of a single element contributed to the total perturbation error qualitatively remains the same. Agreement between numerical simulation results and the experiment results is good with a maximum temperature deviation 10 ℃ for the cavity temperature 400 ℃. Finally, standard numerical temperature uncertainty due to variation in thermal conductivity is computed through the sensitivity coefficient using uncertainty analysis.
机译:本文介绍了矩形外壳中球形热电偶校准炉的轴对称二维数值研究。重点是土星内部的流动结构(空心球形腔),由于环空加热引起的外部流动行为以及表面温度均匀性。采用网格敏感度分析来提取节点数最少但具有快速收敛有限元解的网格。这里的基本策略是,在一个点上而不是单个元素上的温度摄动误差定性地保持了总摄动误差的不变。数值模拟结果与实验结果吻合良好,型腔温度为400℃时最大温度偏差为10℃。最后,使用不确定度分析通过灵敏度系数计算出由于导热系数变化而引起的标准温度数值不确定度。

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