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Three-dimensional simulation of microwave heating coal sample with varying parameters

机译:变参数微波加热煤样品的三维模拟

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摘要

This paper aims to predict the heating behaviors of coal sample by COMSOL Multiphysics software based on the finite element method. The effects of microwave frequency, microwave power and sample position on temperature profiles and electric field distributions are examined. The effect of microwave frequency on temperature is obvious. The maximum and minimum temperatures of the coal sample change with frequency in different laws respectively. There is just one optimal heating frequency to achieve the maximum or minimum value of temperature. The effect of microwave power on temperature is found evidently, too. The lower power microwave-treatment requires more energy than microwave-treatment with a higher power when the heating temperature is greater than 200 degrees C. And there is an optimal temperature between 100 degrees C and 200 degrees C, which energy input is equal to each other under different power inputs. The effect of sample position on the temperature is also remarkable. The maximum and minimum temperatures of the coal sample change with position in different laws respectively. The results can serve as references for the study on heating coal sample by microwave heating system. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文旨在基于有限元方法,通过COMSOL Multiphysics软件预测煤样品的加热行为。考察了微波频率,微波功率和样品位置对温度分布和电场分布的影响。微波频率对温度的影响是明显的。煤样品的最高和最低温度分别随频率以不同的规律变化。只有一个最佳加热频率才能达到最大或最小温度值。微波功率对温度的影响也很明显。当加热温度高于200摄氏度时,低功率微波处理比高功率微波处理需要更多的能量。并且在100摄氏度至200摄氏度之间存在一个最佳温度,该能量输入等于其他在不同的电源输入下。样品位置对温度的影响也很明显。煤样品的最高和最低温度分别随不同定律的位置而变化。研究结果可为微波加热系统对煤样进行加热研究提供参考。 (C)2015 Elsevier Ltd.保留所有权利。

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