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Single horizontal wellbore gravity drainage assisted steam f looding process and apparatus

机译:单井眼重力引流辅助注水工艺及装置

摘要

Disclosed is a gravity-drainage assisted steam flooding process for the recovery of all from thin viscous heavy oil reservoirs using a single horizontal wellbore. Steam is injected through a fully or partially insulated tubing to exit at or near the toe of a long horizontal well penetrating a viscous oil reservoir. Initially, low (10-30%) quality steam is circulated along the well to condition the wellbore and increase the heated radius to about 1 or 2 meters. Oil and reservoir fluids immediately adjacent to the wellbore are produced through the annular space between the insulated tubing string and a slotted liner that surrounds it. After the period of low quality steam circulation, the production outlet is shut in or constrained and steam injection is continued to initiate an active steam chamber zone along a portion of the wellbore. Subsequently, fluid withdrawal is resumed at the production outlet, while the annular liquid level in the vertical section is controlled to maintain a nearly constant pressure at the production outlet. The injection of a higher (50-70% or more) quality steam is continued at a rate similar to or higher than the initial rate to cause the expansion and propagation of the active steam heated volume vertically towards the top of the formation, longitudinally along the horizontal well from the toe towards its heel, and laterally away from the well towards the inter-well boundary with the next row of horizontal well. As steam flows into the reservoir under both gravitational counter current flow and pressure drive, the oil, steam condensate and reservoir fluids heated both conductively and convectively drain towards the slotted liner annulus of the horizontal wellbore and is then pumped to the surface.
机译:公开了一种重力排水辅助蒸汽驱方法,其使用单个水平井眼从稀稠稠油储层中回收全部油。通过完全或部分绝缘的管道注入蒸汽,以在渗透粘性油藏的长水平井的脚趾处或其附近排出。最初,低质量(10%至30%)的蒸汽沿着井循环,以调节井眼并将加热半径增加到大约1或2米。通过绝缘油管柱和围绕它的开槽衬管之间的环形空间产生了紧邻井眼的油和储层流体。在低质量的蒸汽循环期之后,关闭或限制生产出口,并继续注入蒸汽,以沿井眼的一部分启动主动蒸汽室区域。随后,在生产出口处恢复流体抽出,同时控制竖直部分中的环形液位以在生产出口处保持几乎恒定的压力。继续以接近或高于初始速率的速率注入更高质量(50-70%或更高)的蒸汽,以使有效蒸汽加热体积沿地层纵向纵向朝地层顶部膨胀和传播。从脚趾到其脚跟的水平井,并从井的侧面向井间边界横向延伸,与下一排水平井保持一致。当蒸汽在重力逆流和压力驱动下流入储层时,油,蒸汽凝结水和储层流体被传导性和对流性地加热并排向水平井筒的开槽衬里环空,然后被泵送到地表。

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