CFD analysis of air flows and temperatures based on radiant heating in industrial environments

E. Aralov, B. M. Kumitsky
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Abstract

Objective. The study aims to investigate the complex interaction between radiant heating and airflow in industrial environments.The aim is to understand the dynamics of temperature, with particular attention to optimizing energy efficiency and comfort in industrial premises heated by a dual-zone dark gas radiant heater. Method. Using Computational Fluid Dynamics (CFD) and Ansis simulation software, the study developed a model that represents typical industrial conditions. This method included the determination and verification of temperature gradients and air velocity parameters, as well as careful mapping of the complexities of the industrial heating process. Result. The analysis provides detailed graphical representations of temperature and air velocity at individual points, revealing the effect of radiant heating on airflow patterns. Particular attention has been paid to how the temperature profiles interact with a dual-zone heating system, revealing important data that helps understand thermal dynamics in industrial environments. Conclusion. The findings demonstrate the potential for significant progress in energy savings and improved worker comfort in industrial environments using radiant heating. The integrated research approach fills a critical gap in existing research, highlighting the need and potential for further exploration of sustainable heating technologies in challenging industrial environments.
基于工业环境辐射供暖的气流和温度 CFD 分析
研究目的本研究旨在调查工业环境中辐射供暖与气流之间复杂的相互作用。目的是了解温度的动态变化,尤其关注如何优化使用双区暗气体辐射加热器供暖的工业场所的能效和舒适度。方法。该研究使用计算流体动力学(CFD)和 Ansis 仿真软件,开发了一个代表典型工业条件的模型。该方法包括确定和验证温度梯度和气流速度参数,以及仔细绘制工业加热过程的复杂图。结果。分析提供了各点温度和气流速度的详细图示,揭示了辐射加热对气流模式的影响。还特别关注了温度曲线如何与双区加热系统相互作用,揭示了有助于理解工业环境中热动态的重要数据。结论研究结果表明,在使用辐射供暖的工业环境中,节能和改善工人舒适度方面有可能取得重大进展。综合研究方法填补了现有研究中的一个重要空白,强调了在具有挑战性的工业环境中进一步探索可持续加热技术的必要性和潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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