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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Inverse method for simultaneously estimating multi-parameters of heat flux and of temperature-dependent thermal conductivities inside melting furnaces
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Inverse method for simultaneously estimating multi-parameters of heat flux and of temperature-dependent thermal conductivities inside melting furnaces

机译:同时估计热通量的多参数和熔炉内的温度依赖热导体的反向方法

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摘要

The purpose of this study is to predict the time-varying protective bank that coats the internal surface of the refractory brick walls of a melting furnace. An inverse heat transfer procedure is presented for predicting simultaneously operating and thermal parameters of a melting furnace. These parameters are the external heat transfer coefficient, the thermal conductivity of the phase change material (PCM) and the time-varying heat load of the furnace. Once these parameters are estimated, the time-varying protective PCM bank can be predicted. The melting and solidification of the PCM is modeled with the enthalpy method. The inverse problem is handled with the Levenberg-Marquardt Method (LMM) combined to the Broyden method (BM). The models are validated and the effect of the position of the temperature sensor embedded in the furnace wall, of the data capture frequency and of the measurement noise, is investigated. A statistical analysis for the parameter estimation is also carried out. Analysis of the results yielded recommendations concerning the location of the embedded sensor and the data capture frequency.
机译:本研究的目的是预测涂覆熔化炉的耐火砖壁的内表面的时变保护库。呈现反传热过程,用于预测熔化炉的同时操作和热参数。这些参数是外部传热系数,相变材料的导热率(PCM)和炉子的时变热负荷。一旦估计这些参数,就可以预测时变保护PCM银行。 PCM的熔融和凝固是用焓法建模的。逆问题与levenberg-marquardt方法(lmm)组合到Broyden方法(BM)处理。研究了模型,并研究了嵌入在炉壁中的温度传感器的位置的效果,数据捕获频率和测量噪声的效果。还执行了参数估计的统计分析。结果分析结果,提出了关于嵌入式传感器的位置和数据捕获频率的建议。

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