Yang Zongliang, Cheng Dongxu, Su Bin, Ji Chuang, Huang Jiayu, Li Haiyun, Zhang Kai
College of Metrology and Measurement Engineering, China Jiliang University, Hangzhou, 310018, China.
China Tobacco Henan Industrial Co., Ltd, Zhengzhou, 450000, China.
Sci Rep. 2023 Aug 1;13(1):12486. doi: 10.1038/s41598-023-39317-w.
In order to study the temperature distribution in a multi-functional oven and optimize the structural parameters of the oven, the internal temperature uniformity was improved. The test was conducted and the numerical simulation was conducted in two ways. The distribution of temperature field in each layer of ovens was measured in real time using a 13-point distributed thermocouple, and the oven temperature uniformity index was measured and analyzed. The temperature field inside the oven was numerically simulated using computational fluid dynamics. Investigated the heat conduction, convection and radiation effects respectively, and found out the main heat transfer mode of the oven. Further through the test of temperature measurement, verify the accuracy of the numerical simulation method. According to the results of the experiment and simulation, the reason of the uneven temperature field in the original structure of the oven was revealed and analyzed. By changing the structure of the oven tailgate, adjusting the air volume distribution, changing the distribution of the air outlet and other measures, greatly improving the uniformity of the temperature field inside the oven.
为了研究多功能烤箱内的温度分布并优化烤箱的结构参数,提高了内部温度均匀性。采用两种方式进行了试验和数值模拟。使用13点分布式热电偶实时测量烤箱各层的温度场分布,并测量和分析烤箱温度均匀性指标。利用计算流体动力学对烤箱内部温度场进行了数值模拟。分别研究了热传导、对流和辐射效应,找出了烤箱的主要传热方式。进一步通过温度测量试验,验证了数值模拟方法的准确性。根据试验和模拟结果,揭示并分析了烤箱原结构中温度场不均匀的原因。通过改变烤箱后挡板的结构、调整风量分布、改变出风口分布等措施,大大提高了烤箱内部温度场的均匀性。