Heat exchange in cooled combustion chambers of low-power heat generators

A. Chulenyov
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Abstract

Introduction. The study of heat exchange in cooled combustion chambers and the influence of various factors on its intensity is a complex and relevant task. The analysis of theoretical and experimental data on heat exchange in combustion chambers of various plants has proven that current methods fail to take into account features of heat exchange in furnaces, having small geometric dimensions and, therefore, they cannot be used for their thermal calculation. Materials and methods. The author presents the experiments and the results of their generalization performed using the criterial equation. Generalization results are of great importance for analyzing heat transfer processes and the thermal analysis of cooled combustion chambers of small capacity heat generators. The contribution of radiative and convective components to complex heat exchange processes in combustion chambers of low-capacity boilers is evaluated using this generalized dependence. The author has identified qualitative and quantitative dependence of integral radiative and convective heat exchange on the main factors of operation of small combustion chambers. Results. The author has obtained generalizing criterial dependence that makes it possible to evaluate the contribution of radiative and convective components to complex heat exchange in combustion chambers of low-capacity boilers. Conclusions. The generalized criterial dependence, obtained by the author, can be used to identify the qualitative and quantitative dependence of integral radiative and convective heat transfer on the main geometric, physical and performance factors of operation of small capacity furnace chambers. The assessment of reliability of the experimental data, obtained by the author, has shown that the value of the limiting mean square error of determining the value of integral heat transfer Kh.t will be 3.24 %. For all experiments, the deviation of the calculated data from the experimental results with a 95 % probability does not go beyond the confidence interval of ±9.52 %.
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小功率热发生器冷却燃烧室的热交换
介绍。研究冷却燃烧室的换热及各种因素对其强度的影响是一项复杂而相关的任务。通过对各种电厂燃烧室换热的理论和实验数据的分析,证明了现有的方法没有考虑到炉内换热的特点,其几何尺寸较小,因此不能用于其热计算。材料和方法。作者给出了用判据方程进行的实验和推广的结果。推广结果对小容量热发生器的传热过程分析和冷却燃烧室的热分析具有重要意义。利用这一广义依赖关系,对低容量锅炉燃烧室中辐射和对流分量对复杂换热过程的贡献进行了评估。作者确定了小燃烧室运行主要因素对整体辐射换热和对流换热的定性和定量依赖关系。结果。作者得到了一种广义的准则依赖性,使评估辐射和对流分量对小容量锅炉燃烧室复杂换热的贡献成为可能。结论。作者所得到的广义判据依赖关系,可用于确定小容量炉室运行的主要几何、物理和性能因素对整体辐射传热和对流传热的定性和定量依赖关系。作者对实验数据的可靠性评估表明,确定积分换热值的极限均方误差Kh的值。是3.24%。对于所有实验,计算数据与实验结果的偏差以95%的概率不超过±9.52%的置信区间。
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9
审稿时长
12 weeks
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