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Graph-based structural controllability and observability of steam assisted gravity drainage pressure chamber: A data driven approach

机译:蒸汽辅助重力排水压力室的基于图的结构可控性和可观察性:一种数据驱动方法

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Distributed parameter processes are challenging when it comes to modeling and control. Steam assisted gravity drainage (SAGD), used for in-situ extraction and recovery of oil sands bitumen, is a large scale distributed parameter process. The analysis of control relevant properties like controllability and observability enables to address the problem of control of steam chamber growth and sensor placement. We present a data driven and computationally affordable technique to assess the controllability and observability of the SAGD steam chamber dynamics in a structural perspective by exploiting the underlying interaction amongst different regions of the reservoir. A reservoir simulator is used to gather the data, and density-based clustering combined with Granger causality is used to develop a directed graph through which the structural controllability and observability of the SAGD process is characterized. This paper presents a detailed procedure and results for the sensor and actuator locations for partial and full controllability and observability to validate the discussed approach using the data acquired from the CMG-STARS simulator.
机译:在建模和控制方面,分布式参数过程具有挑战性。蒸汽辅助重力排水(SAGD)用于原位提取和回收油砂沥青,是一种大规模的分布式参数过程。对控制相关属性(如可控性和可观察性)的分析可以解决对蒸汽室生长和传感器放置的控制问题。我们提出了一种数据驱动和计算可承受的技术,通过利用储层不同区域之间的潜在相互作用,从结构的角度评估SAGD蒸汽室动力学的可控性和可观测性。使用油藏模拟器来收集数据,并使用基于密度的聚类和Granger因果关系来开发有向图,通过该图来表征SAGD过程的结构可控性和可观察性。本文介绍了传感器和执行器位置的详细过程和结果,以实现部分和全部可控制性和可观察性,从而使用从CMG-STARS模拟器获取的数据来验证所讨论的方法。

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