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Optimizing the particle size distribution of drill-in fluids based on fractal characteristics of porous media and solid particles

机译:基于多孔介质和固体颗粒的分形特征,优化钻孔流体粒度分布

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摘要

Drill-in fluid loss will lead to severe formation damage, and the particle size distribution (PSD) of lost circulation material is one of the most essential factors to control the drill-in fluid loss and protect the formation. In this paper, a fractal model for optimal solid PSD in drill-in fluids is developed for porous reservoir protection. The proposed model presents the following features: It demands particle size should be determined based on the "d(90) Rule", it requires the average capillary pressure curve to characterize the whole porous reservoir, and it allows for the microstructure characteristics of porous media and solid particles. The core dynamic damage experiments to verify this fractal model are carried out. Experimental results indicate that the loss of drill-in fluids designed by the proposed fractal model can be controlled within 10 min, and the permeability recovery rate after dynamic damage is above 90%, which means that formation damage is mitigated and well-controlled by the proposed fractal model. It is preliminarily proved that the proposed fractal model is of great validity and more suitable for formation damage control.
机译:钻孔流体损失将导致严重的形成损伤,并且丢失循环材料的粒度分布(PSD)是控制钻孔流体损失并保护地层的最重要因素之一。本文开发了一种用于多孔储层保护钻流体最佳固体PSD的分形模型。所提出的模型提出以下特征:需要基于“D(90)规则”来确定粒度,需要平均毛细管压力曲线来表征整个多孔储层,允许多孔介质的微观结构特性和固体颗粒。进行核心动态损坏实验,以验证这种分形模型。实验结果表明,由所提出的分形模型设计的钻孔流体丧失可以在10分钟内控制,动态损伤后的渗透率回收率高于90%,这意味着构建损坏被减轻和受良好的控制提出的分形模型。初步证明了所提出的分形模型具有很大的有效性,更适合形成损伤控制。

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