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A Critical Review of Sand Control Evaluation Testing for SAGD Applications

机译:SAGD应用砂控制评估检测的关键综述

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This paper presents a critical review of current evaluation techniques for the selection and design of sand control devices (SCD) for Steam Assisted Gravity Drainage (SAGD) wells. With the industry moving towards exploiting more difficult reservoirs, there is a need to review the current testing methods and assess their adequacy for sand control evaluation for different operational and geological conditions. In addition to a critical review of existing sand control testing approaches for SAGD, the paper also discusses the testing parameters in previous studies to evaluate their representativeness of the field conditions in terms of interstitial seepage and viscous forces, and flow geometry. Moreover, the paper reviews the analysis and results of sand control testing in the literature and assesses the sand control design criteria in terms of the level of acceptable sand production and plugging. Furthermore, the review evaluates the suitability of the sample size, sand preparation techniques, representation of the SCD in the testing, and experimental procedures. The review shows variations in the existing sand control testing in SAGD, in terms of not only approach, sand control representation, and sample size, but also regarding operational test conditions, such as flow rates and pressures. Ideally, large-scale pre-packed tests that include the effects of temperature and radial flow geometry would more closely emulate the actual conditions of SAGD wells than most existing tests allow. High temperatures may affect sanding and plugging through changes in wettability, permeabilities, and mineral alterations. Further, the varying velocity profile in radial flow towards the SCD influences the fines migration pattern differently from the linear-flow conditions in the existing Sand Retention Tests (SRT). However, large-scale radial-flow tests are constrained by cost and complexity. Most SRT experiments have employed high flow rates, exceeding the equivalent field rates. Utilizing realistic rates for the tests and appropriately capturing the actual fluids ratios, water cuts and steam breakthrough scenarios can improve the quality of testing data. Accordingly, existing SRT experiments can be designed to incorporate, if not all, but some of the relevant physics in SAGD by employing representative viscosities, flow rates, fluid properties and ratios, stress conditions and obtain suitable live and post-mortem measurements.This critical review compiles various aspects of current sand retention tests and evaluates their applicability to SAGD well conditions. It serves as a starting point for future research by providing an overview of existing testing methods, highlighting the strengths and opportunities for improvements.
机译:本文介绍了对蒸汽辅助重力排水(SAGD)井的蒸汽控制装置(SCD)选择和设计的当前评估技术的关键综述。随着行业走向利用更困难的水库,需要审查当前的测试方法,并评估其对不同操作和地质条件的砂控制评估的充分性。除了对SAGD的现有沙子控制测试方法的关键评论之外,本文还讨论了先前研究中的测试参数,以评估其在间隙渗流和粘性力方面的现场条件的代表性,以及流动几何形状。此外,本文介绍了在文献中的砂控制测试的分析和结果,并根据可接受的砂生产水平评估了沙控制设计标准。此外,审查评估了样品尺寸,砂制备技术,SCD在测试中的表示和实验程序的适用性。该审查显示了SAGD中现有的沙子控制测试的变化,而不是仅接近砂控制表示和样本大小,而且还可以关于操作试验条件,例如流速和压力。理想情况下,包括温度和径向流动几何形状的效果的大规模预包装测试将比大多数现有的测试更加紧密地模拟SAGD井的实际条件。高温可能会影响磨砂和堵塞通过润湿性,渗透率和矿物改变的变化。此外,径向流动朝向SCD的变化速度曲线影响了鳍片迁移模式与现有的砂保留测试(SRT)中的线性流动条件不同。然而,大规模的径向流动测试受到成本和复杂性的限制。大多数SRT实验都采用了高流速,超过了等效的场速率。利用测试的现实速率并适当地捕获实际的流体比率,水切口和蒸汽突破场景可以提高测试数据的质量。因此,现有的SRT实验可以设计成通过采用代表性粘度,流速,流体性质和比率,压力条件和获得合适的Live和验尸测量来纳入所有相关的SRT实验。审查编译当前沙子保留测试的各个方面,并评估其对SAGD井条件的适用性。它是通过提供现有的测试方法的概述,作为未来研究的起点,突出了改进的优势和机会。

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