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FINAL DESIGN PARAMETER SETTINGS FOR A PHYSICALLY-REALIZABLE UNIFORM TEMPERATURE BOUNDARY CONDITION SPECIFICATION ON A WALL OF AN ENCLOSURE

机译:封闭墙体上物理统一温度边界条件的最终设计参数设置

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Design parameters based on a three-dimensional internal natural convection heat transfer in a cubical apparatus are presented so that a uniform temperature boundary condition specification on a wall of the apparatus can be physically achieved. Preliminary temperature measurements based on the initial design of the apparatus where the uniform boundary condition was prescribed revealed that a temperature non-uniformity existed in the excess of 4% error. In order to complete the objective of the benchmark internal natural convection study, the apparatus had to be modified so that the temperature non-uniformity can be reduced to less than 1% error. It was decided that the original design be modified by simply adding two auxiliary heaters in the vicinity of the wall where the uniform temperature profile was desired. Before the implementation of the auxiliary heaters onto the apparatus, a detailed mathematical analysis was conducted to determine the position and the contact width of the heaters, and to establish an appropriate heat flux required to reduce the temperature non-uniformity to less than 1% along the wall of the apparatus. This analysis was achieved by using the approximate analytical temperature solution obtained from the boundary value problem of a plate (which is one part of the apparatus) with boundary conditions prescribed to model the auxiliary heaters. Previously, a specific set of design parameters were used that reduced the temperature non-uniformity to less than 1% along a wall of the modified cubical apparatus. As an extension to the previous work, this paper presents a generalized set of design parameters that can equally prescribe a physically-realizable uniform temperature setting along a wall of an enclosure to within 1% error. With the range of design parameters, this would enable any designer with the flexibility in choosing what parameters can be allocated based on their need.
机译:提出了基于立方设备中三维内部自然对流换热的设计参数,以便可以在设备壁上物理地获得均匀的温度边界条件。根据规定了均匀边界条件的设备的初始设计进行的初步温度测量表明,温度不均匀性存在超过4%的误差。为了完成基准内部自然对流研究的目标,必须对设备进行修改,以便可以将温度不均匀性降低到小于1%的误差。决定通过简单地在需要均匀温度分布的壁附近添加两个辅助加热器来修改原始设计。在将辅助加热器安装到设备上之前,进行了详细的数学分析,以确定加热器的位置和接触宽度,并建立适当的热通量,以将温度不均匀度降低至小于1%仪器的壁。通过使用从板(设备的一部分)的边界值问题获得的近似分析温度解决方案来完成此分析,该边界条件规定了为辅助加热器建模的边界条件。以前,使用了一组特定的设计参数,这些参数沿着改进的立方设备的壁将温度不均匀性降低到小于1%。作为先前工作的扩展,本文介绍了一组通用的设计参数,这些参数可以等效地沿外壳壁将物理上可实现的均匀温度设置为误差在1%以内。借助设计参数的范围,这将使任何设计人员都可以灵活选择可以根据需要分配哪些参数。

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