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Reaction temperature estimation in Shell coal gasification process

机译:壳煤气化过程中的反应温度估计

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The reaction temperature plays an important role in the Shell coal gasification process (SCGP). Research on the estimation of the reaction temperature is investigated, and a modeling method, which integrates mechanism analysis and data analytics, is adopted in this work. The SCGP is briefly introduced, and a typical fault closely related to the reaction temperature is analyzed. Mechanistic models of main building blocks are developed, and state-space models are established. The Kalman Filter algorithm is applied to estimate the reaction temperature. An industrial case study is performed to validate the effectiveness of the proposed method. The estimated reaction temperature has a reasonable range, and it is validated by CO2 concentration. By monitoring the estimated reaction temperature, operators can observe the changes in operating conditions much earlier. The failure-free time length can be increased, and more economic benefits can be achieved.
机译:反应温度在壳煤气化过程(SCGP)中起重要作用。研究了对反应温度估计的研究,并在这项工作中采用了集成机制分析和数据分析的建模方法。简要介绍了SCGP,分析了与反应温度密切相关的典型故障。开发了主构块的机械模型,建立了状态空间模型。 Kalman滤波器算法用于估计反应温度。进行工业案例研究以验证所提出的方法的有效性。估计的反应温度具有合理的范围,并且通过CO验证 2 专注。通过监测估计的反应温度,运营商可以更早地观察操作条件的变化。可以增加故障的时间长度,并且可以实现更多的经济效益。

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