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Application of different k-ε turbulence models on combustion process modelling in small-scale pellet stoves for household heating

机译:不同k-ε湍流模型在小型采暖家用颗粒炉燃烧过程建模中的应用

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Constant demand for development and construction improvement of small scale pellet stoves and boilers (nominal power up to 50 kW(th)) for household heating leads to conclusion that appropriate upgrading should be done on that field. Optimisation of stove construction should be performed based on results of experimental tests, as well as results of numerical analysis and mathematical modelling of combustion process. This is compulsory, because stove construction shall comply with demands for energy and environmental characteristics defined in appropriate quality standards Besides, stove should operate with pellets of different quality, produced from various biomass raw materials. Considering that numerical analysis is less time consuming process than experimental tests, nowadays it is more often used for development and improvement of combustion appliance construction. As the turbulence modelling is one of the key parts in the eligible numerical analysis, the aim of the research presented in this paper is to define the influence of different k-epsilon turbulence models and their application on defined CFD mathematical model of combustion process in small-scale pellet stove for household heating.
机译:对用于家庭供暖的小型颗粒炉灶和锅炉(标称功率最高为50 kW(th))的开发和建设改进的持续需求导致得出结论,应在该领域进行适当的升级。炉灶结构的优化应基于实验测试的结果以及燃烧过程的数值分析和数学建模的结果。这是强制性的,因为炉子的结构应符合适当质量标准中规定的能源和环境特征要求。此外,炉子应使用由各种生物质原料制成的不同质量的颗粒进行操作。考虑到数值分析比实验测试耗时少,因此如今它更常用于燃烧设备结构的开发和改进。由于湍流建模是合格数值分析的关键部分之一,因此本文的研究目的是确定不同的kε湍流模型的影响及其在燃烧过程中定义的CFD数学模型中的应用。大型颗粒炉,用于家庭取暖。

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