Numerical simulation of gravel packing

P. Winterfeld, D. Schroeder
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引用次数: 4

Abstract

To obtain maximum productivity from unconsolidated formations where sand control is required, it is important to understand the mechanics of gravel packing. This paper describes a finite-element, numerical simulator that can predict gravel placement in the perforations and annulus of a wellbore. The equations for the simulator include mass and momentum conservation. Wellbore geometry, physical properties, and fluid and gravel-pack properties are simulator input. Experiments in a 100-ft full-scale wellbore model for three gravel-packing configurations have been successfully simulated. These configurations are a circulating pack with a washpipe, a squeeze pack, and a circulating/squeeze pack with a washpipe and a lower telltale screen. The low cost, speed, and extrapolation capabilities of the numerical simulator will greatly enhance our ability to predict gravel placement in a wellbore.
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砾石充填的数值模拟
为了在需要防砂的松散地层中获得最大的产能,了解砾石充填的机理非常重要。本文介绍了一种有限元数值模拟器,可以预测井筒射孔和环空中的砾石位置。模拟器的方程包括质量守恒和动量守恒。井筒几何形状、物理性质、流体和砾石充填性质都是模拟器的输入。在一个100英尺的全尺寸井筒模型中,成功地模拟了三种砾石充填结构。这些配置包括带有冲洗管的循环包装、带有冲洗管的挤压包装和带有冲洗管和较低显示屏幕的循环/挤压包装。数值模拟器的低成本、快速和外推能力将大大提高我们预测井筒中砾石放置的能力。
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