Multi-Stage Hydraulic Fracturing Completion Design Based on Ball-and-Sleeve Method

Njeudjang Kasi, A. Zanga, N. Saeed, T. Ndougsa-Mbarga, P. Njandjock Nouck
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引用次数: 0

Abstract

This paper proposes a completion that can allow fracturing four zones in a single trip in the well called “Y” (for confidential reasons) of the field named “X” (for confidential reasons). The steps to design a well completion for multiple fracturing are first to select the best completion method then the required equipment and the materials that it is made of. After that, the completion schematic must be drawn by using Power Draw in this case, and the summary installation procedures explained. The data used to design the completion are the well trajectory, the reservoir data (including temperature, pressure and fluid properties), the production and injection strategy. The results suggest that multi-stage hydraulic fracturing can be done in a single trip by using the ball-and-sleeve method. Metallurgy and hydrogenated nitrile are sealing elementary constituent of chromium which are essential materials found in alloy with 13% of chromium.
基于球套法的多级水力压裂完井设计
本文提出了一种完井方法,可以在名为“X”(出于保密原因)的油田中名为“Y”(出于机密原因)的井中一次压裂四个区域。设计多次压裂完井的步骤首先是选择最佳完井方法,然后是所需的设备和材料。之后,在这种情况下,必须使用Power Draw绘制完工示意图,并解释安装程序摘要。用于设计完井的数据包括井轨迹、储层数据(包括温度、压力和流体特性)、生产和注入策略。结果表明,采用球套法可以在一次起下钻中完成多级水力压裂。冶金和氢化腈是铬的主要密封成分,铬是含13%铬的合金中的基本材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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