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Experimental study and mathematical simulation of the mixed convection in a rectangular area with a local heat source and the heat sink at the external boundaries

机译:具有局部热源和外边界散热器的矩形区域内混合对流的实验研究和数学模拟

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摘要

The results of the experimental determination of temperatures and numerical simulation of temperature fields in a mixed convection in a rectangular area with a heat-conducting walls at a local energy source on the bottom are presented. For the experimental determination of temperature fields in a mixed convection method of thermocouple measurements was used. Studies were conducted at Reynolds numbers 10 ≤Re ≤ 1500 and Rayleigh 103 ≤Ra ≤ 105. For the verification of obtained experimental data mathematical simulation of mixed convection in the region with the use of a software package Comsol Multiphysics is carried out. A good agreement between the results of experimental determination of the local characteristics of mixed convection in a rectangular volume with a local source of energy and heat-conducting walls with theoretical consequences obtained in the simulation of convective flows using a mathematical package is established. It makes it possible to make a conclusion about the possibility of application for the analysis of flow conditions of viscous heat-conducting gas of experimental procedure based on methods of thermocouple measurements. At the same time the developed approach to the experimental study of mixed convection is applicable in a wide enough range of the main flow parameters and the experimental conditions.
机译:给出了在矩形区域内底部具有局部热源的导热壁的混合对流中温度的实验确定结果和温度场的数值模拟结果。为了用热电偶测量的混合对流方法对温度场进行实验确定。在雷诺数10≤Re≤1500和瑞利103≤Ra≤105的条件下进行了研究。为了验证所获得的实验数据,使用了Comsol Multiphysics软件包对该区域的对流进行了数学模拟。建立了用矩形能量和导热壁作为局部容积的矩形空间中的对流局部特性的实验确定结果的良好共识,并在使用数学程序包模拟对流过程中获得了理论结果。因此,可以基于热电偶测量的方法,得出结论,可以用于分析实验过程中的粘性导热气体的流动条件。同时,开发的混合对流实验研究方法适用于足够广泛的主流参数和实验条件。

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