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A mathematical model and semi-analytical solution for transient pressure of vertical fracture with varying conductivity in three crossflow rectangular layers

机译:三个横流矩形层中电导率变化的垂直裂缝瞬态压力的数学模型和半解析解

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摘要

This paper first describes a mathematical model of a vertical fracture with constant conductivity in three crossflow rectangular layers. Then, three forms of vertical fracture (linear, logarithmic, and exponential variations) with varying conductivity are introduced to this mathematical model. A novel mathematical model and its semi-analytical solution of a vertical fracture with varying conductivity intercepting a three-separate-layered crossflow reservoir is developed and executed. Results show that the transient pressures are divided into three stages: the linear-flow phase, the medium unsteady-flow stage, and the later pseudo-steady-flow phase. The parameters of the fracture, reservoir, and the multi-permeability medium directly influence the direction, transition, and shape of the transient pressure. Meanwhile, the fracture conductivity is higher near the well bottom and is smaller at the tip of the fracture for the varying conductivity. Therefore, there are many more differences between varying conductivity and constant conductivity. Varying conductivity can correctly reflect the flow characteristics of a vertical fractured well during well-test analysis.
机译:本文首先描述了三个横流矩形层中具有恒定电导率的垂直裂缝的数学模型。然后,将具有不同电导率的三种形式的垂直裂缝(线性,对数和指数变化)引入该数学模型。开发并执行了一种新的数学模型及其电导率变化拦截三层错流储层的垂直裂缝的半解析解。结果表明,瞬态压力可分为三个阶段:线性流动阶段,介质非稳态流动阶段和后期伪稳态流动阶段。裂缝,储层和多渗透介质的参数直接影响瞬态压力的方向,过渡和形状。同时,由于电导率的变化,裂缝的电导率在井底附近较高,而在裂缝的尖端较小。因此,变化的电导率和恒定的电导率之间还有许多不同之处。在试井分析过程中,变化的电导率可以正确反映垂直裂缝井的流动特性。

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