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Reservoir characterization in under-balanced drilling with nonlinear Moving Horizon Estimation with manual and automatic control conditions

机译:具有手动和自动控制条件的非线性移动地平线估计的平衡钻井储层特征

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摘要

This paper discusses the state estimation of the Under-Balanced Drilling (UBD) system in the presence of parametric uncertainties. During this process, the production indices of oil and gas from the reservoir into the well in the manual and automatic control conditions are estimated by employing the nonlinear Moving Horizon Estimation (MHE) based on a low-order lumped (LOL) model. The LOL model has a low computational load and is suitable for reservoir characterization during UBD operations. The estimation algorithms are tested by using a difficult scenario which is created by the OLGA multiphase flow simulator. The simulation results indicate that the nonlinear MHE has a high performance and can identify the production indices of gas and oil. Moreover, the method has the capability to diagnose the rapid variation of the production constant in different conditions, such as working with a manual or automatic controller. The results of the scenario with the swift change in the production index of gas demonstrate that the nonlinear MHE has a higher performance than the Unscented Kalman Filter (UKF). The effect of uncertainties and errors in the reservoir and well parameters on the nonlinear MHE is evaluated. It is revealed that the presence of parametric uncertainty in the rdeservoir pore pressure can significantly affect the estimators' performance.
机译:本文讨论了在参数不确定因素存在下均衡钻井(UBD)系统的状态估计。在此过程中,通过基于低级总数(LOL)模型的非线性移动地平线估计(MHE),估计来自储存器中的油气和气体的生产指数进入手动和自动控制条件。 LOL模型具有低计算负载,适用于UBD操作期间的储层表征。通过使用由OLGA多相流动模拟器创建的困难场景来测试估计算法。仿真结果表明,非线性MHE具有高性能,可以识别天然气和油的生产指标。此外,该方法具有诊断不同条件下生产恒定的快速变化的能力,例如使用手动或自动控制器。随着气体生产指数的迅速变化的情况的结果表明,非线性MHE具有比未加注的卡尔曼滤光器(UKF)的性能更高。评估了储层中的不确定性和误差的影响和非线性MHE上的井参数。据透露,rdeservoir孔隙压力中参数不确定性的存在可以显着影响估计的性能。

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