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Acquisition of Downhole Pressures without Downhole Gauges in the Gulf of Thailand via the Self-Powered Intelligent Data Retriever

机译:通过自动智能数据猎犬获取泰国海湾的井下压力的井下压力

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Bottomhole pressure is one of the most important sources of data used to determine reservoir characteristics.By analyzing the manner in which bottomhole pressures change with time and flow rate,properties can be derived such as permeability,skin,boundaries,and reservoir pressure,which can enable the evaluation of hydrocarbon reserves and make economically feasible decisions.Downhole pressure data in production wells are most commonly acquired by running downhole pressure gauges on slickline into the wellbore.However,in offshore wells in remote locations,there can be major deterrents to capturing bottomhole pressures using slickline.Examples of these limitations include equipment and manpower availability,crane functionality,and offshore accommodations.Furthermore,there can be physical limitations to data acquisition from the presence of sour gas,high bottomhole temperatures,high wellbore deviation,or mechanical obstructions that can prevent the use of downhole gauges in the well.This paper presents an innovative method for acquiring the needed bottomhole pressures in production wells when traditionally used methods may present challenges.An operator in the Gulf of Thailand wanted to obtain downhole pressures on their production wells but did not wish to run slickline and downhole gauges because of the concerns specified above.A new selfpowered intelligent data-retriever system was suggested to the operator as it offered a method that could derive accurate bottomhole pressures without running downhole gauges.The new system consists of a high accuracy,high resolution pressure gauge and a companion bottomhole pressure conversion algorithm.The pressure gauge is installed on the wellhead and captures high-frequency surface-pressure data.The conversion algorithm uses the surface pressure data,along with wellbore information,and fluid properties to calculate downhole pressures.The results of a series of tests with the self-powered intelligent data-retriever system demonstrated that the system can provide accurate bottomhole pressure results in production wells.These facts will be verified by the test results as well as the case history,both of which will be presented in this paper.This technology was designed to reduce the cost of capturing downhole pressure data,lessen many of the logistical concerns that could occur when using traditional systems,eliminate the risks of a downhole gauge getting stuck in the wellbore,and acquire necessary data when downhole environments are corrosive.
机译:井底压力是用于确定储层特性的最重要数据来源之一。通过分析底孔压力随时间和流速变化的方式,可以推导出诸如渗透性,皮肤,边界和储层压力的性质能够评估碳氢化合物储备,并在经济上进行经济上可行的决定。生产井中的压力数据最常见地通过在Slickline上运行井下压力表进入Wellbore。然而,在远程位置的海上井中,可以有主要的威慑物捕获底部使用SLICKLINE.examples的压力包括设备和人力可用性,起重机功能和近海住宿。繁殖,从存在酸气体,高井底温度,高井眼偏差或机械障碍物的情况下,可以存在物理局限性。可以防止在井中使用井下计。这p当传统使用的方法可能存在挑战时,APER提供了一种创新的生产井中所需的底孔压力。在泰国海湾的操作员希望获得其生产井上的井下压力,但由于不希望运行SLICKLINE和井下计上面规定的问题。建议对操作员提出了新的自动驱动智能数据检索系统,因为它提供了一种可以得出精确的底孔压力而不运行井下计的方法。新系统包括高精度,高分辨率压力表和伴侣井底压力转换算法。压力表安装在井口上并捕获高频表面压力数据。转换算法使用表面压力数据,以及井筒信息和流体性质来计算井下压力。一系列结果用自动智能数据检索系统演示的测试该系统可以提供准确的井底压力导致生产井。这些事实将通过测试结果以及案例历史进行验证,这两篇文章都将介绍。本文旨在降低捕获成本井下压力数据,减少了使用传统系统时可能发生的许多后勤问题,消除了井下计量陷入井筒中的井下规格的风险,并在井下环境腐蚀时获取必要的数据。

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