首页> 外文期刊>Oil Shale >STUDY ON THE QUANTITATIVE MODEL OF THE ELASTIC MODULUS OF OIL SHALE DURING PYROLYSIS - A CASE STUDY OF FUSHUN OIL SHALE
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STUDY ON THE QUANTITATIVE MODEL OF THE ELASTIC MODULUS OF OIL SHALE DURING PYROLYSIS - A CASE STUDY OF FUSHUN OIL SHALE

机译:热解过程中油页岩弹性模量的定量模型研究 - 以抚顺油页岩为例

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摘要

The decrease of the elastic modulus of oil shale during pyrolysis was mainly caused by pyrolysis of kerogen and the deterioration of the oil shale skeleton at high temperature. Combining the thermal curve of oil shale and the change mechanism of the elastic modulus of oil shale, a quantitative model of the elastic modulus of oil shale during pyrolysis was established. The simulation results were in good agreement with the experimental data and showed that with increasing temperature, the rate and extent of decay of the elastic modulus of oil shale were gradually increased. The attenuation ratios of elastic modulus at 500 degrees C, 400 degrees C and 300 degrees C were approximately 68.04%, 56.42% and 48.66%, respectively.
机译:热解期间油页岩弹性模量的降低主要是通过Kerogen热解引起的,在高温下油页岩骨架的劣化引起。 结合油页岩的热曲线和油页岩弹性模量的变化机理,建立了热解期间油页岩弹性模量的定量模型。 仿真结果与实验数据吻合良好,并表明随着温度的升高,油页岩弹性模量的衰减速度和程度逐渐增加。 弹性模量为500℃,400℃和300℃的弹性模量的衰减比分别为约68.04%,56.42%和48.66%。

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