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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Inversion of downhole electrical measurements for proppant mapping using very fast simulated annealing
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Inversion of downhole electrical measurements for proppant mapping using very fast simulated annealing

机译:使用非常快速模拟退火的支撑剂映射的井下电测量的反演

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Proppant mapping is critical for optimizing fracture treatment design and improving wells' productivity. An electrode-based resistivity tool concept was developed earlier for proppant mapping in cased-hole wells. An array of insulating gaps is installed and cemented in place as a permanent part of the casing string. The electrical measurements are performed by imposing a voltage across each insulating gap, one at a time, before and after hydraulic fracture operations. The voltages across other insulating gaps near the transmitter gap are recorded. The method relies on direct excitation of the casing, which is expected to overcome the severe limitations of induction tools in cased-hole wells. A forward model based on a finite volume method has been developed to simulate the tool's response to one or multiple fractures. To enable the implementation of such a practical system in multistage fractured horizontal wells, a fast and robust inversion approach is required. To that end, we have developed a divide-and-conquer approach based on a global optimization algorithm very fast simulated annealing (VFSA). Specifically, the original inverse problem is divided into subproblems and each subproblem can be solved separately using VFSA. The results indicate that our approach can invert the data and output widths and radii of multiple fractures without requiring a large number of forward simulations. The robustness of the inverse solver is also tested by adding Gaussian noise to the synthetic data. We tested example cases that demonstrate that when up to 5% noise is introduced, VFSA still provides very accurate inversion results with moderate uncertainties. Inversion results with some more realistic conditions, e.g., tilted fractures, complex fractures, and so on, are also presented.
机译:Proppant Mapping对于优化骨折处理设计和提高井的生产力至关重要。在套管孔井中的支撑剂映射之前开发了基于电极基电阻率工具概念。作为套管串的永久部分安装和粘合绝缘间隙阵列。通过在液压断裂操作之前和之后施加在每个绝缘间隙两端的电压来执行电测量。记录在发射器间隙附近的其他绝缘间隙上的电压。该方法依赖于壳体的直接激发,这预计将克服套管孔井中的感应工具的严重限制。已经开发了一种基于有限体积方法的前向模型来模拟工具对一个或多个裂缝的响应。为了实现在多级裂缝水平井中实现这种实用系统,需要快速且坚固的反转方法。为此,我们开发了一种基于全局优化算法非常快速模拟退火(VFSA)的划分和征服方法。具体地,原始逆问题被分成子问题,并且可以使用VFSA单独解决每个子问题。结果表明,我们的方法可以在不需要大量正向模拟的情况下反转多个裂缝的数据和输出宽度和半径。还通过向合成数据添加高斯噪声来测试逆求解器的稳健性。我们测试了示例案例,表明介绍了高达5%的噪声时,VFSA仍然提供非常准确的反演,具有中等的不确定性。还呈现了一些更现实的条件,例如倾斜骨折,复杂骨折等的反演结果。

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