Computational and Experimental Study of Local Characteristics of the Fluidization Process of Fuel Pellets

Q3 Energy
A. E. Karmanov, A. Mitrofanov, E. V. Prikhodko, S. Vasilevich, N. Shpeynova
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引用次数: 0

Abstract

. Currently, there is a tendency to diversify the generation of heat and electricity and to improve solid fuel technologies. These trends actualize the search for mathematical tools for describing and predicting the operation of apparatuses with a fluidized bed of dispersed fuel materials. However, since the mechanics of heterogeneous media (and dispersed media in particular) is to a certain extent in its infancy in relation to the mathematical foundations of modeling, it is often difficult to predict the operation of equipment. In particular, the poor quality of mathematical basis does not allow predicting the fields of concentrations and velocities of the phases of the fluidized bed, although this knowledge serves as the fundamental basis for calculating heat and mass transfer and chemical processes. In the present work, a computational and experimental study of the local hydromechanical characteristics of a monodisperse fluidized bed has been carried out. The mathematical apparatus of the theory of Markov chains was used as a basis for modeling. The tasks were solved in a one-dimensional formulation, which implied the division of the bed in height into cells of small but finite sizes. Fluidized bed phase distributions were described by state vectors whose evolution was controlled by transition probability matrices. The elements of these matrices were matched to the physical parameters of the processes. The model was verified by comparing the calculated predictions with the data of a full-scale experiment conducted as part of the study, aimed at measuring the local velocities of the gas phase inside the fluidized bed. The experimental data with a good accuracy for engineering calculations were described by the proposed model, which makes it possible to consider it as a reliable scientific basis for the computer method for calculating installations using the fluidization technique.
燃料颗粒流化过程局部特征的计算和实验研究
.目前,热能和电力生产呈现多样化趋势,固体燃料技术也在不断改进。这些趋势促使人们寻找数学工具来描述和预测带有分散燃料材料流化床的设备的运行。然而,由于异质介质(尤其是分散介质)的力学在一定程度上还处于建模数学基础的初级阶段,因此通常很难预测设备的运行情况。特别是,数学基础质量差,无法预测流化床各相的浓度和速度场,尽管这些知识是计算传热、传质和化学过程的基本依据。本研究对单分散流化床的局部水力学特性进行了计算和实验研究。马尔科夫链理论的数学装置被用作建模的基础。任务以一维形式求解,这意味着将流化床的高度划分为尺寸较小但有限的单元。流化床相分布由状态矢量描述,其演变由过渡概率矩阵控制。这些矩阵的元素与过程的物理参数相匹配。通过将计算预测结果与作为研究一部分进行的全尺寸实验数据进行比较,对模型进行了验证,该实验旨在测量流化床内气相的局部速度。所提出的模型描述的实验数据具有很高的工程计算精度,因此可以将其视为使用流化技术计算装置的计算机方法的可靠科学依据。
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来源期刊
CiteScore
1.60
自引率
0.00%
发文量
32
审稿时长
8 weeks
期刊介绍: The most important objectives of the journal are the generalization of scientific and practical achievements in the field of power engineering, increase scientific and practical skills as researchers and industry representatives. Scientific concept publications include the publication of a modern national and international research and achievements in areas such as general energetic, electricity, thermal energy, construction, environmental issues energy, energy economy, etc. The journal publishes the results of basic research and the advanced achievements of practices aimed at improving the efficiency of the functioning of the energy sector, reduction of losses in electricity and heat networks, improving the reliability of electrical protection systems, the stability of the energetic complex, literature reviews on a wide range of energy issues.
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