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首页> 外文期刊>Thermal science >Numerical analysis of the flue gas-coal particles mixture flow in burner's distribution channels with regulation shutters at the TPP Nikola Tesla - A1 utility boiler
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Numerical analysis of the flue gas-coal particles mixture flow in burner's distribution channels with regulation shutters at the TPP Nikola Tesla - A1 utility boiler

机译:TPP尼古拉·特斯拉-A1电站锅炉带调节百叶窗的燃烧器分配通道中烟气-煤颗粒混合物流动的数值分析

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Pulverized coal particles concentration distribution across the burner's distribution channels, especially where plasma torches are installed, is one of the key issues for efficient implementation of plasma system for liquid fuel free combustion support at the pulverized coal fired boilers. The possibility of pulverized coal particles concentration increase at the lower burner channels of TPP Nikola Tesla - A1 boiler using regulation shutters is analyzed experimentally and numerically. Subject of present work is two-phase flue gas-particles mixture flow in burner's distribution channels with regulation shutters installed at the TPP Nikola Tesla - A1 boiler. Aim of this work is to optimize position of implemented system of shutters to achieve desired concentration and velocity distribution in channels with plasma torches, using numerical modelling. Experimental investigation was performed for the verification of proposed mathematical model for the prediction of the analyzed two-phase flow. Based on verified model, numerical parametric analysis was done. Obtained results of gas phase velocity field, coal particles concentration field, velocity and concentration profiles clearly show the dependence between shutters position and the coal particles mass flow rate and concentration distribution at the outlet cross-section of the burner's distribution channels. According to the numerical optimization results suitable modification of the shutter system is proposed.
机译:整个燃烧器分配通道中的煤粉颗粒浓度分布,特别是在安装了等离子炬的地方,是在煤粉锅炉中高效实施等离子系统以实现无液体燃料燃烧支持的关键问题之一。实验和数值分析了使用调节百叶窗在TPP Nikola Tesla-A1锅炉下部燃烧器通道处煤粉浓度增加的可能性。目前的工作主题是在TPP尼古拉·特斯拉-A1锅炉上安装调节百叶窗的两相烟道气颗粒混合物在燃烧器的分配通道中流动。这项工作的目的是使用数值模型来优化已实现的百叶窗系统的位置,以在具有等离子炬的通道中实现所需的浓度和速度分布。进行了实验研究,以验证所提出的数学模型,以预测所分析的两相流。在验证模型的基础上,进行了数值参数分析。气相速度场,煤颗粒浓度场,速度和浓度分布图的获得结果清楚地显示了百叶窗位置与燃烧器分配通道出口横截面上的煤颗粒质量流量和浓度分布之间的关系。根据数值优化结果,提出了对百叶窗系统的适当修改。

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