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Measurement of Thermophysical Properties of Loose Coal Based on Multi-dimensional Constant Temperature Boundary Unsteady Heat Transfer Model

机译:基于多维恒温边界不稳定传热模型的松散煤热物理性能测量

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摘要

Based on the unsteady state heat transfer model, production solution method is proposed to calculate the thermal diffusivity and thermal conductivity of loose coal. By constructing the heat transfer model of the infinite large plate and the infinitely long cylinder, the temperature rise formula of the production solution method is established. The measured temperature rise is then used by the MATLAB programming software to inversely calculate the thermophysical parameters of the loose coal. During the experiment, a constant temperature boundary was constructed using an incubator and a high thermal conductivity copper cylindrical case. The experiment selected anthracite, bituminous coal in Panyi Mine, and bituminous coal in Lizuo Mine for thermophysical property measurement. The results show that the relative deviation between each measurement result and related literature is within 5 %, and each sample is tested three times. The deviations are less than 5 %, which verify the stability of the test method. Finally, the experimental model was established in the ANSYS FLUENT simulation software, and the thermophysical parameters of the measured coal samples were substituted into the model for simulation calculation. It was found that the simulation temperature rise was consistent with the measured temperature rise.
机译:基于不稳定的状态传热模型,提出了生产解决方案方法来计算松散煤的热扩散和导热率。通过构建无限大板的传热模型和无限的长圆柱形,建立了生产溶液方法的温度升高配方。然后使用MATLAB编程软件使用测量的温度升高,以反向计算松散煤的热物理参数。在实验期间,使用培养箱和高导热铜圆柱形壳构建恒温边界。该实验选择了潘彦矿的无烟煤,沥青煤,Lizuo矿山烟煤进行了热物理性质测量。结果表明,每个测量结果和相关文献之间的相对偏差在5%范围内,每个样品测试三次。偏差小于5%,验证了测试方法的稳定性。最后,在ANSYS流畅的仿真软件中建立了实验模型,测量的煤样的热理参数被取代为模拟计算模型。发现模拟温度升高与测量的温度升高一致。

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