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首页> 外文期刊>Fractals: An interdisciplinary journal on the complex geometry of nature >STUDY ON THE FEATURE OF ELECTROMAGNETIC RADIATION UNDER COAL OXIDATION AND TEMPERATURE RISE BASED ON MULTIFRACTAL THEORY
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STUDY ON THE FEATURE OF ELECTROMAGNETIC RADIATION UNDER COAL OXIDATION AND TEMPERATURE RISE BASED ON MULTIFRACTAL THEORY

机译:基于多分术理论的煤氧化与温度升高的电磁辐射特征研究

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摘要

During coal oxidation and temperature rise, a significantly large amount of electromagnetic radiation (EMR) signals are generated as a result of thermal deformation and thermal cracking. The generation of EMR signal is the comprehensive embodiment of the physical and chemical changes in coal during its oxidation and subsequent heating. Therefore, the generated signals contain complex and rich messages that can reflect the changes in the internal structure of coal. In this work, the characteristics of EMR signal were analyzed by multifractal theory. Multifractal analysis was used to deconstruct EMR signals. Our preliminary study indicated that the multifractal spectrum of the EMR signal had a feature of small probability event. Further analysis demonstrated that the characteristic parameters of EMR signal are quite different at the later heating stage from those at the early heating stage. At the initial stage of coal spontaneous combustion, the multifractal spectrum of the signal is wider, but when coal combustion is reached, the scale range of EMR signal increases significantly, and its structure changes at different temperature ranges. The research results presented provide a basis for monitoring and presenting an early warning of coal spontaneous combustion risk.
机译:在煤氧化和升温期间,由于热变形和热裂化产生显着大量的电磁辐射(EMR)信号。 EMR信号的产生是其氧化过程中煤的物理和化学变化的综合实施例和随后的加热。因此,所产生的信号包含复杂和丰富的消息,可以反映煤的内部结构的变化。在这项工作中,通过多法术理论分析了EMR信号的特性。多重分析用于解构EMR信号。我们的初步研究表明,EMR信号的多重分谱具有小概率事件的特征。进一步的分析证明,在早期加热阶段的后来的加热阶段,EMR信号的特征参数在较高的加热阶段非常不同。在煤炭自燃的初始阶段,信号的多重分谱宽度宽,但达到煤燃烧时,EMR信号的比例范围显着增加,并且其结构在不同的温度范围内变化。提出的研究结果为监测和提出了煤炭自燃风险的预警提供了基础。

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