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On-line Runaway Detection in Batch Reactors Using Chaos Theory Techniques

机译:使用混沌理论技术的间歇反应器在线失控检测

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In this work nonlinear time-series analysis using delay coordinate embedding was applied to simulated temperature data from isoperibolic batch reactors to develop an early-warning detection system of the runaway. In the first part of this study an earlywarning detection criterion, that is, when the divergence of the system becomes positive on a segment of the reaction path, was developed and compared with previous criteria. This criterion has the property of being preserved under phase-space reconstruction and, hence, it is possible to calculate it when only temperature date are available, This reconstructed divergence is compared with the theoretically calculated divergence using temperature and conversion data. The comparison demonstrates the validity of such an approach finding a new path, lying between the simple use of measured variables and the complex model-based reconstruction techniques, to assess in advance hazardous situations in chemical reactors.
机译:在这项工作中,将使用延迟坐标嵌入的非线性时间序列分析应用于来自等代谢批量反应器的模拟温度数据,以开发失控预警系统。在本研究的第一部分中,开发了预警检测标准,即当系统的差异在反应路径的某一段上变为正值时,将其与以前的标准进行比较。该标准具有在相空间重构下保留的特性,因此,当只有温度数据可用时,可以进行计算。将该重构的散度与使用温度和转换数据的理论计算的散度进行比较。比较结果证明了这种方法的有效性,该方法在简单地使用测量变量和基于复杂模型的重建技术之间寻找新路径,以预先评估化学反应器中的危险情况。

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