用不同的条纹分析方法计算轴对称几何上的局部换热系数

M. Ashjaee, M. Goharkhah, K. Madanipour, S. Amiri
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引用次数: 0

摘要

计算轴对称几何形状(如圆柱体和锥体)周围的温度分布以及此类几何形状上的局部传热系数是经常遇到的问题。例如,在研究圆柱形通道的流动性能、燃烧器火焰周围的温度分布和圆柱形储罐的传热时,都会出现这个问题。利用Mach-Zehnder干涉仪,获得了三种不同表面温度下等温垂直圆柱体周围的干涉图。为了从干涉图中计算温度分布和局部换热系数,本文提出了四种干涉图分析方法,包括三种经典方法和一种变换方法。为了考察方法的准确性,将结果与解析解的结果进行了比较,得出了每种方法的相对准确性。结果表明,变换方法是一种最准确的方法,且耗时短。
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Calculation of local heat transfer coefficient on axisymmetric geometries using different methods of fringe analysis
Calculation of the temperature distribution around axisymmetric geometries such as cylinders and cones and the local heat transfer coefficient on such geometries is often encountered. This problem occurs for example in studies of flow performance in cylindrical channel, temperature distribution around a burner flame and heat transfer from cylindrical tanks. Using a Mach-Zehnder interferometer, interferograms around an isothermal vertical cylinder at three different surface temperatures have been obtained. In this paper, in order to calculate the temperature distributions and the local heat transfer coefficients from interferograms, four methods of interferogram analysis including three classical methods and one transform method have been presented. In order to investigate the accuracy of the methods, results have been compared with the results of the analytical solution and relative accuracy of each method has been obtained. Results show that the transform method, while being less time consuming, is the most accurate method.
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