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Analysis of cyclic combustion of the coal-water suspension

机译:水煤悬浮液循环燃烧分析

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摘要

Combustion technology of the coal-water suspension creates a number of new possibilities to organize the combustion process fulfilling contemporary requirements, e.g. in the environment protection. Therefore the in-depth analysis is necessary to examine the technical application of coal as a fuel in the form of suspension. The research undertakes the complex investigations of the continuous coal-water suspension as well as cyclic combustion. The cyclic nature of fuel combustion results from the movement of the loose material in the flow contour of the circulating fluidized bed (CFB): combustion chamber, cyclone and downcomer. The experimental results proved that the cyclic change of oxygen concentration around fuel, led to the vital change of both combustion mechanisms and combustion kinetics. The mathematical model of the process of fuel combustion has been presented. Its original concept is based on the allowance for cyclic changes of concentrations of oxygen around the fuel. It enables the prognosis for change of the surface and the centre temperatures as well as mass loss of the fuel during combustion in air, in the fluidized bed and during the cyclic combustion.
机译:水煤悬浮液的燃烧技术为组织满足现代要求的燃烧过程创造了许多新的可能性,例如:在环境保护方面。因此,有必要进行深入分析,以研究以悬浮形式存在的煤炭作为燃料的技术应用。该研究对连续的水-水悬浮液以及循环燃烧进行了复杂的研究。燃料燃烧的循环特性是由于疏松物料在循环流化床(CFB)的流动轮廓中的运动而产生的:燃烧室,旋风分离器和降液管。实验结果证明,燃料周围氧气浓度的周期性变化,导致了燃烧机理和燃烧动力学的重要变化。提出了燃料燃烧过程的数学模型。它的原始概念基于允许燃料周围氧气浓度循环变化的余量。它可以预测在空气中,流化床中以及循环燃烧期间表面和中心温度的变化以及燃料的质量损失。

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