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首页> 外文期刊>Journal of Petroleum Science & Engineering >Estimating the reaction parameters of oil shale pyrolysis and oil shale grade using temperature transient analysis and inverse modeling
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Estimating the reaction parameters of oil shale pyrolysis and oil shale grade using temperature transient analysis and inverse modeling

机译:使用温度瞬态分析和反向建模估算油页岩热解和油页面级的反应参数

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Grade of oil shale and reaction parameters of in-situ pyrolysis must be identified for the prediction of productivity before actual heating and production. Identification of oil shale grade and reaction parameters depends on laboratory experiments on core samples. However, laboratory-determined parameters can be different from those representing in-situ reservoir conditions. In this study, we use inverse modeling to determine oil shale grade and reaction parameters. The inversions are based on a forward model that simulates heat injection into a well. Temperature at the heating well is affected by a thermal skin effect as a result of a decrease of composite thermal conductivity around the heater due to the decomposition-induced porosity increase. Synthetic observations of heater temperature are generated from a forward simulation. Temperature difference and its derivative are used in synthetic inversions to estimate oil shale grade and parameters of active decomposition reactions with an error below 1%. The proposed methodology of inverse modeling is expected to successfully estimate the oil shale grade and reaction parameters without core sampling and subsequent surface experiments.
机译:在实际加热和生产之前,必须识别出原位热解的油页岩和反应参数的原位热解的预测。油页岩级和反应参数的鉴定取决于核心样品的实验室实验。然而,实验室确定的参数可以与代表原位储层条件的参数不同。在这项研究中,我们使用逆建模来确定油页岩级和反应参数。反转基于向前模型的前向模型,该模型将热注入到井中。由于分解诱导的孔隙率增加,加热阱在加热阱处的温度受到热皮肤效应的影响。从前向仿真产生加热器温度的合成观察。温差及其衍生物用于合成逆转,以估计油页岩级和活性分解反应的参数,误差低于1%。预计逆建模的拟议方法论是成功估计油页岩级和反应参数而无需核心采样和随后的表面实验。

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