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首页> 外文期刊>Journal of natural gas science and engineering >Effect of cyclic hot/cold shock treatment on the permeability characteristics of bituminous coal under different temperature gradients
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Effect of cyclic hot/cold shock treatment on the permeability characteristics of bituminous coal under different temperature gradients

机译:循环热/冷休克处理对不同温度梯度下沥青煤的渗透特性的影响

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摘要

This study aimed to investigate the influence of cyclic hot/cold shock on the change in the permeability of coal sample under different temperature gradients. The low permeability of Chinese coal seams has always hindered the exploitation and use of coalbed methane resources. In the present study, bituminous coal produced from the Xutuan Mine was selected as the test coal sample. The hot/cold shock experiments of single, multiple cycles treatment under the same temperature gradient, different temperature gradients were carried out by heating of samples in a drying oven, followed by a low-temperature treatment using liquid nitrogen. The fixed-point photography and nitrogen percolation tests were carried out on the coal samples at various stages of exposure. The results showed that the cracking effect of coal was proportional to the number and the temperature gradient of the cycle hot/cold shock treatment. After two treatments, the maximum increment of the permeability of coal samples reached 1129.79%. The permeability increment of coal sample with heating temperature of 100 degrees C is 2.89-6.44 times that of coal sample with 20 degrees C. This paper used a quadratic function to fit and discuss the seepage results of coal samples. The influence of hot/cold shock treatment on the Klinkenberg effect of nitrogen flow in coal was also analyzed.
机译:本研究旨在调查循环热/冷冲击对不同温度梯度下煤样渗透性变化的影响。中国煤层的低渗透性一直阻碍了煤层气资源的开采和使用。在本研究中,选择由Xutuan矿厂生产的烟煤作为试验煤样品。通过在相同的温度梯度下,通过在干燥烘箱中加热样品进行单一,多个循环处理的热/冷休克实验,然后进行不同的温度梯度,然后使用液氮进行低温处理。在暴露的各个阶段进行固定点摄影和氮渗透试验。结果表明,煤的开裂效果与循环热/冷休克治疗的数量和温度梯度成比例。经过两次处理后,煤样的渗透率的最大增量达到1129.79%。煤样具有100℃的煤样的渗透率增量为20摄氏度的煤样的2.89-6.44倍。本文采用二次功能来适应和讨论煤样的渗流结果。还分析了热/冷休克治疗对煤中氮流量的影响的影响。

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